Drayton Pacs

Drayton Pacs



ผู้เชี่ยวชาญทางด้านเครื่องมือทดสอบน้ำมันชุบแข็ง (Quenching Oil Analyzer) สำหรับงานทางด้านโลหะและการขึ้นรูป เหมาะสำหรับศึกษาคุณภาพของน้ำมันชุบแข็ง มีให้เลือก 2 แบบได้แก่ เครื่องมือทดสอบน้ำมันชุบแข็งแบบทดสอบนอกสถานที่ (Portable Quenchometer) และแบบตั้งพื้นสำหรับการทดสอบในห้องปฏิบัติการ (Automatic Quenchometer)


Portable Version
เครื่องมือทดสอบน้ำมันชุบแข็งแบบทดสอบนอกสถานที่
(Portable Quenchometer – QuenchMaster)  

  • อ้างอิงวิธีทดสอบมาตรฐานตาม ISO 9950, ASTM D6200, ASTM D6549, AFNOR NFT-60178
  • รายงานค่า Cooling Rate ค่าอุณหภูมิ เวลา และอัตราการเย็นตัวเป็นตัวเลขดิจิตอลและในรูปแบบกราฟ
  • เหมาะสำหรับทดสอบนอกสถานที่พร้อมกระเป๋าพกพาสะดวก

Laboratory Version
เครื่องมือทดสอบน้ำมันชุบแข็งสำหรับห้องปฏิบัติการ

(Laboratorye Quenchometer – QuenchMaster)


  • การทำงานเป็นแบบอัตโนมัติ ควบคุมการทำงานผ่านโปรแกรมทางคอมพิวเตอร์
  • ศึกษาคุณภาพของน้ำมันชุบแข็ง (Quenching Oil) ได้ทั้งแบบ Static และ Agitated
  • อ้างอิงวิธีทดสอบมาตรฐานตาม ISO 9950, ASTM D6200, ASTM D6549, AFNOR NFT-60178
  • รายงานค่า Cooling Rate ค่าอุณหภูมิ เวลา และอัตราการเย็นตัวเป็นตัวเลขดิจิตอลและในรูปแบบกราฟ
  • จำลองสภาวะการชุบแข็งแบบ Agitated โดยสามารถกำหนด flow rate ในการไหลได้

Agitation Unit
เครื่องจำลองการชุบแข็งแบบควบคุมอัตราการไหลน้ำมัน (Agitation Unit)

  • จำลองสภาวะการชุบแข็งแบบ Agitated โดยสามารถกำหนด flow rate ในการไหลได้

Ducom

Ducom



เป็นบริษัทชั้นนำในการผลิตเครื่องทดสอบคุณสมบัติน้ำมันหล่อลื่น เครื่องทดสอบการสึกหรอของชิ้นส่วนเครื่องจักรกลโลหะ เครื่องทดสอบคุณสมบัติเชิงกลของเครื่องจักร เครื่องมือทดสอบคุณสมบัติของตลับลูกปืน เป็นต้น

Ducom Instruments was founded in 1978, and has grown to be an internationally leading manufacturer of test instruments for mechanical characterization of materials. Our range of products and services broadly comprise of:

  • Lubricant Testers
  • Tribometers
  • Mechanical Testers
  • Bearing Testers
  • Surface Metrology
  • Contract Testing

Over the years, more than 1500 laboratories across the world have chosen test instruments by Ducom for their research, development and quality testing. With the widest range of tribology testing instruments, including some of the most technologically advanced instruments in the industry, our products can help you study most situations where understanding wear, friction and lubrication behavior is important.

เครื่องมือทดสอบคุณสมบัติน้ำมันหล่อลื่น (LUBRICANT TESTERS)

Four Ball TesterASTM D2783, D2596, D2266, D4172, D5183
     

The Ducom’s Four Ball Tester TR 30 family is designed to determine wear preventive (WP), extreme pressure (EP), frictional fatigue and shear stability behavior of oils and greases.
Compliance with ASTM D2783, D2596, D2266, D4172, D5183, CEC L-45-T93 (optional), DIN 51359-6 (optional), IP 239 and IP 300 (optional).A rotating steel ball is pressed against three steel balls firmly held together and immersed in lubricant. Test load, duration, temperature and rotational speed are set in accordance with standard test schedule.
-WP tests: average scar diameter of the stationary ball is reported.
-EP tests: the load is increased after every run of the spindle until the contact fails.
-Rolling contact fatigue failure is indicated by increase of vibration.
-Shear stability is determined with a tapered rolling bearing.
main characteristics

  • Measurement of actual load, rotational speed and temperature
  • Frictional force is recorded live during the test
  • Coefficient of friction is displayed online
  • Scar diameter can be measured with an optical microscope
  • An image acquisition system acquires the image of the scar on the PC

 Timken OK Load Tester ASTM D2509 & 2782
The Ducom Timken OK Load Tester uses a steel bearing race pressed against a steel block creating a line contact, recreating many real life tribological contacts. Grease is poured into the contact area and the load is increased until the lubricant film is broken.

Application
Evaluation of extreme pressure properties and COF of lubricants

Standards
ASTM D2608, D2782, IP326, IP 240

Test Variables

  • Load
  • Feed rate

Pin on Vee Block TesterASTM D2625, D2670, D3233, D5620
 

Application
Extreme pressure and Wear Preventive performance evaluation of Lubricating Oils, Grease and Solid Lubricants.

Standards

ASTM D5620, D2625, D2670, D3233, IP241

Test parameters

  • Load
  • Rotational speed
  • Temperature
  • Test duration
  • Frıctıonal Torque

Reichert Tester

 

For evaluation of (WP) and (EP) properties of lubricants and additives. Quick method to detect the formation of lubricating film between two test surface. A drop in noise level (screeching) to identify when a lubricating film is successfully formed.

Significant utilization to evaluate and rank of products
– Very useful for additive depletion studies and lubricant selection for metallurgy
– Effective tool to determine lubricant quality while in use in machinery
– This tester is capable of testing both lubricating oils and greases
– Ducom incorporates instrumentation to monitor and log noise level


Low Temperature Torque TesterASTM D1478
 
 

Application
To detect the tendency of various greases to resistance to the rotation of bearing at negative degrees Celsius. Mainly for aerospace applications and equipment in sub zero environment.
– On line measurements of torque and temperature
– Liquid Nitrogen to cool sample to test temperature
– PID controlled test temperature
– Software to record and display on PC

Standards                 Test Variables
ASTM D 1478               Load
Torque
Temperature


High Temperature Grease TesterASTM D3336

 

Purpose
Evaluation of lubricants at high speeds, high temperatures and low loads

Standards
ASTM D 3336

Test Variables
Load
Temperature
Test Duration


Shear Stability TesterASTM D6278, IP234
Application
To evaluate the shear stability of polymer- containing oils in terms of the permanent viscosity loss when a sample is mechanically stressed.
Method of Testing
The test fluid is mechanically stressed by pumping through a diesel injector nozzle and a diesel Injection fuel pump.
Samples are taken after the fluid has completed a predetermined number of passes.
Viscosities of the original sample and of samples taken during the test are determined.
The extent of oil degradation due to shear forces can be calculated.
Standard
ASTM D 6278, IP 234

เครื่องทดสอบการสึกหรอของชิ้นส่วนเครื่องจักรโลหะ (TRIBOMETERS)

Abrasion Tester (Dry and  Slurry)ASTM G65, G105, B611
The Ducom Abrasion Tester is very versatile, offering a wide operating range with excellent control over test parameters.

Test Standards

ASTM G65 – Standard Test Method for Measuring Abrasion Using the Dry Sand/Rubber Wheel Apparatus

ASTM G105 – Standard Test Method for Conducting Wet Sand/Rubber Wheel Abrasion Tests

ASTM B611 – Standard Test Method for Determining the High Stress Abrasion Resistance of Hard Material


Rotary Tribometer – Pin/Ball on DiskASTM G99

Description

The Ducom Rotary Tribometer comprises of a precision controlled drive that controls disc rotation. The counter specimen – which may be a ball, pin or any other custom geometry – is held firmly in a friction/loading arm. A known load is applied upon the counter specimen to achieve the desired contact stress.
The Rotary Tribometer is a fully computer controlled test system. Operator may choose and set the desired test parameters from the Ducom TriboAcquire control and data acquisition system. The test parameters are displayed and output is recorded.

Applications

  • Evaluation of wear resistance of bio-materials
  • Wear and Friction properties of thin films and coatings .
  • Tribological tests on polymers, soft materials and coatings in lubricated, lubricated and corrosive conditions.
  • Determination of working load limit of soft coatings like PTFE and other polymers.
  • Product development and quality control of surface engineered products

Test Standards: ASTM G99


Linear Reciprocating Tribometer (LRT)-HFRR ASTM D6079, G133, CEC F-60-A-96
DUCOM LINEAR RECIPROCATING TRIBOMETER SET UP FOR LUBRICANT ADDITIVE TESTING Materials and lubricants are often subjected to repeated back and forth (reciprocating) movement, in many real applications, from automotive to biotribological environments.

High variety of sample geometries available in order to study:

  • Point contact / Line contact / Area contact

Test Standards: ASTM D6079, G133, CEC F-60-A-96


Gas Jet Erosion TesterASTM G76

Principle of operation

The Ducom Air Jet Erosion Tester is designed to impinge test samples with controlled flux of erodent. The test system is versatile and allows users to control impingement velocity , impingement angle, erodent flux and temperature. The result of the test is reported as the loss of weight of the sample. It may be converted to volume loss for comparative ranking of materials.

Features

  • Erodent flux rate control
  • High temperature test options
  • Double disc velocity meter
  • Easy changing of samples
  • Easy replacement of nozzles
  • Easy machine operation

Test Standards: ASTM G76


Slurry Jet Erosion Tester

Introduction

A rectangular sample under evaluation is made to rotate in a slurry cup. The sample is weighed before and after the test to determine loss of mass due to slurry erosion. Volume loss is computed for comparison, due to difference in densities of materials. Index of erosion is reported as loss of volume.
The test rig permits running up to 6 test samples at the same time and same speed. Slurry cups are immersed in water bath to maintain slurry temperature. Test duration can be preset with timer.

Features

  • Preset revolution count / duration of test.
  • Heating/cooling fluid circulation jacket.
  • Up to six different samples tested together.

Slurry Pot Erosion Tester

Introduction

A rectangular sample under evaluation is made to rotate in a slurry cup. The sample is weighed before and after the test to determine loss of mass due to slurry erosion. Volume loss is computed for comparison, due to difference in densities of materials. Index of erosion is reported as loss of volume.
The test rig permits running up to 6 test samples at the same time and same speed. Slurry cups are immersed in water bath to maintain slurry temperature. Test duration can be preset with timer.

Features

  • Preset revolution count / duration of test.
  • Heating/cooling fluid circulation jacket.
  • Up to six different samples tested together.

Roller on Roller Tribometer
The Roller on Roller Tribometer is intended for friction and wear evaluations of materials and lubricants that operating under roll and slide conditions as seen in gears, rail roads and other such applications. With two servo con-trolled drives, this system is capable of performing tribological tests in pure sliding to rolling contact tests.

  • Users can define the percentage of slip and roll
  • Precise control over speeds and directions
  • Fully automatic computer controlled
  • Continuously variable speed
  • Options for automated loading and temperature control

Multi Mode TribometerADVANCED MULTI CAPABILITY TRIBOMETERASTM G99,G133, G77, D3702, D5183, D2266, D4172, DIN50324
By choosing appropriate configurations, some or many of the following test standards may be possible on your Ducom Multi Mode Tribometer.

  • ASTM G99 – Standard Test Method for Wear Testing with a Pin-on-Disk Apparatus
  • ASTM G133 – Standard Test Method for Linearly Reciprocating Ball-on-Flat Sliding Wear
  • ASTM G77 – Standard Test Method for Ranking Resistance of Materials to Sliding Wear Using Block-on-Ring Wear Test
  • ASTM D3702 – Standard Test Method for Wear Rate and Coefficient of Friction of Materials in Self-Lubricated Rubbing Contact Using a Thrust Washer Testing Machine
  • ASTM D5183 – Standard Test Method for Determination of the Coefficient of Friction of Lubricants Using the Four-Ball Wear Test Machine
  • ASTM D2266 – Standard Test Method for Wear Preventive Characteristics of Lubricating Grease (Four-Ball Method)
  • ASTM D4172 – Standard Test Method for Wear Preventive Characteristics of Lubricating Fluid (Four-Ball Method)
  • DIN 50324 – Tribologie; Prüfung von Reibung und Verschleiß; Modellversuche bei Festkörpergleitreibung (Kugel-Scheibe-Prüfsystem) / Tribology; testing of friction and wear model test for sliding friction of solids (ball-on-disc system)
NEW │ Hot Forming TribometerRAPID ELEVATED TEMPERATURE TESTING
Process of hot forming is performed under severe conditions of pressure and temperature at tool contact. Surface of tool in contact with job suffers wear due to flow of hot metal. Estimation of tool life requires friction and wear data under realistic conditions.
High Temperature Tribometer is such an apparatus for physical analysis of sliding contacts and expansion of test strip under wide range of conditions.

  • Metal Forming, High Speed Rolling and Drawing
  • Metal Working
  • Additive development

คุณสมบัติเชิงกลของเครื่องจักร (MECHANICAL TESTERS)

Automated Indentation Tester
Change in mechanical properties of materials during service reveals health and integrity of components. In case of critical component in service, it is not always possible to extract standard test specimen for laboratory test. In this situation, in-situ nondestructive testing on in service components is required and the Automated Indentation Tester is the instrument of choice in such cases.

  • Ball Indentation (BI) test is in situ method of determination of aging related changes in material properties of components.
  • Advanced design with software based operation, data acquisition and analysis
  • Adaptors for field testing of pipes and bench testing of small samples.
  • Ball impression is less than a mm in diameter, hence nearly a nondestructive test.
  • Ideally suited for weld zone and HAZ as testing is localized.
  • Strain or Stress controlled loading and unloading curve.
  • Correction factor for indentation area to account pile-up/sink-in.
  • One-click surface integrity assessment for time saving and comfort.

Rotating Beam Tester (High Cycle Fatigue) – DIN 50113
 

Introduction
The purpose is to carry out rotating bar bending fatigue tests without deliberately introducing stress concentration in accordance with DIN 50113.
Description
A test piece mounted as a cantilever with single point loading is made to rotate and thus subjected to a bending moment. The force giving rise to the bending moment do not rotate.

Test Standards: DIN 50113


UPDATED | Scratch Tester (V2.1)IMPROVED DESIGN AND EXTENDED CAPABILITIES (V2.1)

Introduction

There is a growing trend towards the use of modified surfaces for improved performance and life of components. Modifications are invariably in the form of coatings on base material. They are deposited by electroplating, vapor phase deposition, diffusion, thermal spray or welding. Coatings need to be characterized for parameters like scratch resistance, critical load, adhesion and nature of damage under high stress. The Scratch Tester by Ducom facilitates these measurements over a wide range of parameters.


เครื่องมือทดสอบคุณสมบัติของตลับลูกปืน (BEARING TESTERS)

Journal Bearing Tester (Basic)
 

Introduction
The Ducom Journal Bearing Tester (Basic) is designed to demonstrate and study pressure distribution behavior of lubricants in journal bearings.
Description
The system consists of a vertically mounted journal driven by a variable speed motor. The load is applied radially to the bearing with a loaded lever. Journal bearing assembly is immersed in lubricant. An electronic sensor measures the oil film pressure. The angular position of the pressure senor with respect to the load line is varied and pressure is recorded.
Pressure is plotted as a function of angular position of Cartesian or polar form to demonstrate the pressure distribution. Test variables are journal speed, radial load and lubricant viscosity.


Journal Bearing Tester (Advanced)
 

Introduction
To study the hydrodynamic pressure distribution and heat dissipation during journal bearing lubrication .


ECH

ECH

ผู้ผลิตเครื่องทดสอบปริมาณน้ำในน้ำมันโดยวิธีการไตเตรตแบบอัตโนมัติ โดยหลักการ Coulometric Karl Fischer Titration สามารถทดสอบกับตัวอย่างของแข็ง เม็ดพลาสติก สารเคมี ตัวทำละลายไฮโดรคาร์บอน น้ำมันหล่อลื่น น้ำมันเชื้อเพลิง น้ำมันดีเซล น้ำมันเตา น้ำมันที่ระเหยยาก เป็นต้น เครื่องหาปริมาณน้ำดังกล่าวมีจุดเด่นในการทดสอบนอกสถานที่โดยไม่ต้องใช้ไฟบ้าน และสามารถใช้ได้กับแบตเตอรี่สำรองที่อยู่ในเครื่องได้โดยตรง ทำให้สามารถทดสอบได้ทุกที่ ตามความต้องการของผู้ใช้งาน นอกจากนี้ยังมีเครื่องทดสอบค่า Hydrogen Sulfide ทั้งแบบตั้งโต๊ะและแบบติดตั้งในส่วนการผลิต เครื่องวัดค่าแอมโมเนียในก๊าซ (NH3 in Gases) เครื่องวัด Total Dissolved Gas in Oil และเครื่อง Gas Chromatography แบบทดสอบนอกสถานที่

Karl Fischer Titrators - Overview

Aquamax KF Plus

 

Aquamax KF Plus
in-lab ppm water determination in liquid samples

 

 

 

Aquamax KF Portable

 

Aquamax KF Portable
on-site ppm water determination in liquid samples

 

 

 

Aquamax KF PRO LPG

 

Aquamax KF PRO LPG
Water determination in gases according to standard ASTM D 7995 - 19

 

 

 

Aquamax KF PRO Oil

 

Aquamax KF PRO Oil 
Water determination in oil samples according to standard ASTM D 6304

 

 

 

Basic Module

 

AQUA 40.00 Basic Module
Water content of liquid samples and gases

 

 

 

AQUA 40.00 Vario

 

AQUA 40.00 Vario
Water content of solids, pasty samples, oils, suitable also for hygroscopic samples, for larger sample volumes (0.5 up to 100 mL), as manual version or with autosampler, for vial sizes 2 R up to 50 R (heating temperature up to 300 °C)

 

 

 

AQUA 40.00 with HT 1300

 

AQUA 40.00 with HT 1300
High Temperature Oven Module for water determination in solid, pasty and liquid samples at heating temperatures up to 1300 °C

 

 

 

OnlineH2O

 

OnlineH2O
Online determination of water content in oils

Volumetric titrators - Overview

Alkalinity Titrator

 

Alkalinity Titrator
Determination of carbonate and bicarbonate hardness of water

 

 

 

Bromine Titrator

 

Bromine Titrator
Determination of Bromine Index or Bromine Number of hydrocarbons according to standards
- ASTM D 1159
- ASTM D 2710
- ASTM D 5776

 

 

 

 Volumetric KF Titrator

 

KF Titrator
Volumetric water determination in liquids

 

 

 

Sulfur Titrator

 

Sulfur Titrator
Determination of hydrogen sulfide and mercaptan sulfur in hydrocarbons and oils according to standards

- ISO 3012
- ASTM D 3227
- UOP 163
- UOP 212

 

 

 

TAN/TBN Titrator

 

TAN/TBN Titrator
Determination of  total acid or base number of oils and fats according to standards
- IEC 62021-1
- ISO 3771
- ASTM D 664
- ASTM D 2896
- ASTM D 4739

H2S, Sulphide Determination - Overview

H2S Analyzer Lab

 

H2S ANALYZER Lab
Determination of hydrogen sulphide in liquids and gases - laboratory version, automatable with autosampler for liquids

 

 

 

H2S Analyzer Cubi

 

H2S ANALYZER Cubi
Determination of hydrogen sulphide in liquids and gases - compact version for laboratory use or on-site measurements

 

 

 

Headspace Module for H2S Analyzer Lab or Cubi

 

Headspace Module
Module to extend the H2S ANALYZER Lab or Cubi for analysis of solid samples

 

 

 

OnlineH2S for gases

 

OnlineH2S for gases
Continuous quantitative determination of hydrogen sulphide (H2S) in gas mixtures

 

 

 

S-Online

 

S-Online
Online determination of sulphides/H2S in wastewater even below the odor threshold

OnlineNH3 - Ammonia in gases

OnlineNH3

 

 

Analyzer for online determination
of NHin gases

 

 

 

 

 

 

 

 

The OnlineNH3 is used for the continuous quantitative determination of ammonia gas (NH3) in gas mixtures.

The system is designed with an integrated dilution step for measurement of very high concentrations (100 - 20000 ppm). Also very low contents in the range of odour treshold (0.1 - 100 ppm) can be measured.

Gas analytics - Overview

MobilGC 2

 

MobilGC 2
Portable gas chromatograph in a robust case
with internal gas supply for use on-site and
in-lab

 

 

 

MobilGC for LPG

 

MobilGC for LPG
Analysis of liquefied and compressed gases
according to Standards ASTM D 2163
and D 2598

 

 

 

MobilGC for cooling gases

 

MobilGC for cooling gases
Portable and robust gas analyzer for mobile
use in a harbour situation

 

 

 

GasExtractor

 

GasExtractor for gas in oil analysis
Completely automated system that extracts gases from oils and other highly viscous liquids by vacuum

 

 

 

Fermentation test system GärOnA

 

Fermentation test system GärOnA
Automated lab fermentation system with
online gas analysis

Phytolabelbox

PhytolabelBox

Device version

Device version for particularly high
plants

 

Beleuchtungsmodul für PhytolabelBox

Illumination Module for
PhytolabelBox

 

PhytolabelBox in the greenhouse

PhytolabelBox in the greenhouse

  • Cultivation of plants in controlled atmosphere
  • Regulation of oxygen (O2) and carbondioxid concentrations (CO2)
  • Labeling of plants by introduced 13CO2
  • Additional control of  air pressure, humidity and temperature
  • Available as fitting version for the application in incubators

The PhytolabelBox is developed for controlled plant breeding. Constant conditions inside the cultivation box are achieved by automatic control of the composition and property of the atmospheric gases. Therefore, the phytolabelbox is suitable for test series about plant growing and metabolism.

The PhytolabelBox is equipped with different gas connections for synthetic air (20 % O2 / 80 % N2) or, if requested, a separate supply for oxygen and nitrogen, and carbon dioxide. Furthermore, it comes with a fused drain for exhaust air. The humidity is kept at the desired level by an effective Peltier cooling unit. A slight overpressure of 10 mbar against the ambient pressure can be set.

 

When running long-term experiments, the plants can be supplied individually with water and nutrients via additional supply lines.

Moreover, the PhytolabelBox can be used in incubators at temperatures between 10 °C and 40 °C and in the ambient pressure range of 955 hPa to 1061 hPa. The gas supply, the measuring and control unit as well as the computer are located outside of the incubator.

The Illumination Module extends the possibilities of the PhytolabelBox. The luminous colour and illumination intensity are adjustable. Various climatic conditions can be simulated.

 

 

GloveBox - Working under exclusion of air


GloveBox for working under exclusion of air

GloveBox for working under exclusion of air

 


The 
SnLayer - Thickness of tin layers

SnLayer - Analyzer for thickness of tin layersSnLayer - Analyzer for thickness
of tin layers

 

The thickness of the non-alloyed and alloyed tin layer on thin copper wires can be measured with high accuracy in a short duration by the electrochemical Analyzer SnLayer.

The coulometric determination of the thickness of the tin layer at the copper wires based on a newly developed procedure: the technique of voltammetry with a multiple potential-ramp.

The total amount of tin as well as the non-alloyed and the alloyed tin-part is detectable in only one measurement.

Sampling Kits

Mobile Gas Sampling Kit

 

Mobile Gas Sampling Kit - Easy gas sampling everywhere

 

 

 

Manual Oil Sampling Kit

 

Manual Oil Sampling Kit - Contamination-free taking of oil samples

Eralytics

Eralytics

ผู้นำทางด้านเครื่องมือทดสอบค่าความดันไอ (Vapor Pressure Measurement / Automatic Vapor Pressure Analyzer) ของน้ำมันปิโตรเลียม น้ำมันดิบ ตัวทำละลายไฮโดรคาร์บอน ก๊าซปิโตรเลียมเหลว ก๊าซหุงต้ม ทั้งแบบตั้งโต๊ะและแบบ Online เครื่องทดสอบน้ำมันในน้ำ ปริมาณไฮโดรคาร์บอนในน้ำ (Oil & Grease Tester, Oil in Water, Total Hydrocarbon in Water Tester) เครื่องวิเคราะห์องค์ประกอบน้ำมันเบนซิน แก๊สโซฮอล์ น้ำมันดีเซล ไบโอดีเซล น้ำมันเครื่องบิน เครื่องวัดค่าออกเทน ค่าซีเทน โดยใช้หลักการ FTIR เครื่องวิเคราะห์องค์ประกอบน้ำมันหล่อลื่นใช้แล้ว Oxidation, Nitration, Soot และ Additives เป็นต้น และเครื่องวัดค่าจุดวาบไฟแบบใช้ตัวอย่างน้อยสำหรับน้ำมันดีเซล น้ำมันก๊าด ตัวทำละลาย สี ยาฆ่าแมลง หัวน้ำหอม เป็นต้น

 

FTIR FUEL ANALYZER  
ERASPEC - Spectral Fuel Analysis in Seconds

  • เครื่องวัดค่าออกเทนและองค์ประกอบน้ำมันเบนซิน
  • เครื่องวัดค่าซีเทนและองค์ประกอบน้ำมันดีเซล
  • เครื่องวัดค่าองค์ประกอบน้ำมันเครื่องบิน

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OIL CONDITION MONITORING
ERASPEC OIL - The Latest Trend in Oil Condition Monitoring

  • เครื่องวัดค่าองค์ประกอบน้ำมันหล่อลื่น oxidation, sulfation, nitration, soot, anti oxidant additives ด้วยหลักการ FTIR

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FLASH POINT TESTERS
ERAFLASH - The Safe Side of Flash Point Testing
เครื่องวัดค่าจุดวาบไฟแบบใช้ตัวอย่างน้อยสำหรับน้ำมันดีเซล ตัวทำละลาย สี ยาฆ่าแมลง หัวน้ำหอม เป็นต้น
ERAFLASH Models

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VAPOR PRESSURE TESTERS
ERAVAP - Vapor Pressure Testing at its Best

เครื่องวัดค่าความดันไอน้ำมันเบนซิน ตัวทำละลายไฮโดรคาร์บอนแบบอัตโนมัติ
ERAVAP Models

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ERAVAP

High precision model for fuels, solvents, dead crudes and LPG up to 1000 kPa

เครื่องวัดค่าความดันไอน้ำมันเบนซิน ตัวทำละลายไฮโดรคาร์บอนแบบอัตโนมัติ

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ERAVAP CRUDE
ERAVAP extended for live crude oil testing

เครื่องวัดค่าความดันไอน้ำมันดิบแบบอัตโนมัติ

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ERAVAP LPG
Extended range model:
0 to 2000kPa (290psi)

เครื่องวัดค่าความดันไอปิโตรเลียมเหลวแบบอัตโนมัติ

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ERAVAP ONLINE
Online vapor pressure testing for increased profitability and maximum safety

เครื่องวัดค่าความดันไอน้ำมันเบนซิน ตัวทำละลายไฮโดรคาร์บอนแบบ Online

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OIL-IN-WATER TESTERS
CFC-free measurement of oil-in-water

เครื่องวัดค่าปริมาณน้ำมันในน้ำความแม่นยำสูงโดยใช้สารสกัดราคาถูก วัดได้ทั้งแบบ TOG และ TPH
ERACHECK Models

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TRUSTED SOLUTIONS. RE-IMAGINED.

Reliable high performance instruments for petroleum testing engineered and manufactured by eralytics combine precision, speed, versatility and the ease of use in a well-balanced relation. Their development and output represent more than 20 years of close co-operation with international customers and partners, and the observance of their core requirements.

VAPOR PRESSURE TESTERS

ERAVAP - Vapor Pressure Testing at its Best

ERAVAP Models

·         ERAVAP

·         ERAVAP FOR CRUDE OIL

·         ERAVAP FOR LPG

·         ERAVAP ONLINE

 

FLASH POINT TESTERS

ERAFLASH - The Safe Side of Flash Point Testing

ERAFLASH Models

·         ERAFLASH

·         ERAFLASH LT

 

FLASH POINT AUTOSAMPLER

Unattended flash point testing of up to 10 samples

ERAJET FAME

FAME in Jet Fuel Testing: Fast, Precise, Portable

FTIR FUEL ANALYZER  

ERASPEC - Spectral Fuel Analysis in Seconds

OIL CONDITION MONITORING

ERASPEC OIL - The Latest Trend in Oil Condition Monitoring

OIL-IN-WATER TESTERS

CFC-Free Oil-in-Water Testing

ERACHECK Models

·         ERACHECK ECO

·         ERACHECK PRO

 

Compact Portable Stand-Alone Analyzers

All eralytics laboratory instruments are compact stand-alone analyzers with a built-in industrial PC. Their lightweight but rugged metal housing and the integrated carrying handle make them ideally suited for mobile applications. Their small footprint makes them the best choice for use in the lab, in mobile laboratories or in the field.

They can be operated from 85 – 264 Volts or with an available adapter even run from vehicle batteries.

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Multilingual Touchscreen Interface

As a globally recognized brand in petroleum testing equipment eralytics soon realized that it is essential to offer graphical user interfaces in local languages to make our instruments easy to operate. Therefore our software can be fully translated to any language.

Currently we offer English, German, Italian, French, Russian, Chinese and many other languages. Ask your local representative if your language is available already.

All eralytics measuring instruments are equipped with a multilingual, intuitive touchscreen All eralytics measuring instruments are equipped with a multilingual, intuitive touchscreen

 

Comprehensive Input Options

Touchscreen
Our analyzers are all equipped with a 8.4″ full color touchscreen for easiest usage in the lab.

Keyboard and Mouse

It is also possible to connect a keyboard and mouse to our analyzers if this your preferred way of data entry.

Bar Code Scanners
If your samples are identified by a bar code we also support the direct connect of bar code scanners to the instruments. Scanned bar codes are automatically added as sample IDs. For autosampler models the cursor automatically moves to the next sample ID field and activates the scanned position for the next measurement run.

The manual scanner of bar codes in man hand

Data Output Capabilities

Our instruments come with the latest connectivity options. This include a LAN connection, 5 x USB-A, 1 x USB-B,  RS232 connection and Wifi connection via external USB-dongle.

LIMS
Using LAN or RS232 allows to directly hook up our instruments to any Laboratory Information Management System (LIMS). Measurement data can be transfered manually to the LIMS or the analyzer can be configured to automatically output its measurement results to LIMS.

Printers
The same holds true for printing. All instruments can print via the network connection or by a directly connected printer.

Configuration
The outputs can be configured freely by the user. All measurement parameters, such as temperatures or used methods are also available as the measurement results, the operator names and sample IDs. It is just a matter of how you want to configure your output.

Data Storage
All measurement data can be exported to USB sticks in text file format or as Excel readable CSV files. Using an FTP client allows to download any measurement data from a PC. Additionally we offer a windows program to access that data.

ERASpec2

Desktop Software

Our RCS software is capable to connect to an unlimited number of eralytics analzers at the same time. This software not only downloads data from the instruments but it can also upload configuration files for LIMS and printer output from the PC to the analyzer. Additionally it prints results directly on any connected printer. Downloaded data is available even if the instrument isn’t connected anymore.

The optional remote control capability allows to enter all relevant parameters for a measurement on the PC first and start the measurement on the analyzer from the PC afterwards. Especially for the autosampler instruments this increases the comfort of data entry.

Remote Control Software 3.0

Optional 10-Position Autosampler

All eralytics analyzers can be equipped with a 10-position autosampler. For ERAVAPERASPECERASPEC OIL, and ERACHECK this autosampler is directly attached to the instrument maintaining their portability. An upgrade of existing instruments is easily possible.

For our flash point testers this is not possible due to the way the sample is introduced into the measurement chamber. For this measuring case, we have our standalone device, the 10-position flash point autosampler ERAFLASH S10 available.

ERAFLASH S10 10-position autosamplerERASPEC with autosamplereravap_autosampler_thumberaspec Oil with the 10-position autosampler

Filtertechnik

Filtertechnik

Filtertechnik Ltd. เป็นบริษัทผู้ผลิตเครื่องทดสอบ เครื่องนับจำนวนและวัดขนาดอนุภาคของน้ำมัน (Particle Counter) เครื่องวัดระดับความสะอาดของน้ำมัน (ISO Cleanliness Class) ตามมาตรฐาน ISO4406, SAE AS4059 & NAS 1638 เครื่องกรองน้ำมันหล่อลื่น เครื่องศึกษาประสิทธิภาพในการกรองน้ำมัน เครื่องประเมินอายุการใช้งานของน้ำมัน (Oil Life Condition / Oil Condition Monitoring) การใช้งานเหมาะสำหรับการทดสอบน้ำมันหล่อลื่น (New Oil, In-Service Oil, Used Oil) น้ำมันไฮโดรลิก น้ำมันเบรก น้ำมันสังเคราะห์ น้ำมันดีเซล น้ำมันเครื่องบิน น้ำมันเชื้อเพลิง ตัวทำละลาย สารเคมี และของเหลวอื่น ๆ มีให้เลือกทั้งแบบทดสอบนอกสถานที่ (Portable Particle Counter) แบบตั้งโต๊ะสำหรับห้องปฏิบัติการ (Laboratory Particle Counter) และแบบทดสอบต่อเนื่อง (Online Particle Counter) ตัวเครื่องทดสอบแบ่งออกเป็นสองประเภทตามลักษณะของเซ็นเซอร์ที่เลือกใช้ ได้แก่ Laser Particle Counting / หลักการการบังแสงหรือดูเงาการตกกระทบของอนถภาค และ Digital Imaging Particle Counting / หลักการวิเคราะห์ด้วยภาพดิจิตอลที่พัฒนามาเป็นพิเศษสำหรับตัวอย่างที่มีปัญหาการปนของฟองอากาศ ทำให้ไม่สามารถวัดค่าขนาดและนับจำนวนได้ถูกต้อง นอกจากนี้มีระบบจดจำรูปร่างของอนุภาคโลหะที่เกิดจากการสึกหรอระหว่างการใช้งาน เช่น Fatigue Wear, Sliding Wear, Cutting Wear, Fibres เป็นต้น และสามารถต่อเข้ากับเซ็นเซอร์เพื่อวัดปริมาณความชื้นสัมพัทธ์ในหน่วย %RH (ในกรณีที่ใช้วัดน้ำมันหล่อลื่น) และค่าความชื้นในหน่วย PPM (ในกรณ๊ที่วัดน้ำมันดีเซล)

OIL CONDITION MONITORING

Particle Pal range comparison

Particle Pal Range Comparison

Laser particle counters

Laser Particle Counters

Digital imaging Particle Counters

Digital Imaging Particle Counters

Moisture sensors

Moisture Sensors


Particle Pal Range

With 25 years’ worth of expertise and innovation, our multiple award-winning Particle Pal products are modular designs utilising a wide range of sensors to suit individual testing requirements.
Filtertechnik offer two particle counting options: Laser Counters or Digital Imaging, which is a more advanced particle counting technology with a wide range of benefits (see more below).
There are currently 16 product variations, use our selection guide below to refine your search in order to find the best Particle Pal for your application.

Particle Pal Pro: V3

Our Particle Pal Pro range, harnesses advanced digital imaging particle counting technology and offers a broader micron range up to 70 microns. The powerful CMOS camera can recognise the shape of each particle, which then categorises it into either fatigue, sliding or cutting wear to help pinpoint root causes of system failure. Along with ground-breaking air bubble detection/elimination, there is also the ability to handle higher viscosities up to 2,400cSt. Digital Imaging is not affected by oil additives.  Add other sensors such as Water Sensing, Oil Life determination and Viscosity to give incredible insight into the condition of your oil or diesel fuel.

The Pro Range also prides itself on an onboard asset management tool, which is pre-installed on each Pro model as standard. The Asset tool allows users to trend, analyse and interoperate data like never before. Learn all about it in the short video on this page.

Particle Pal Plus: V4

The latest addition to the family: the all-new Particle Pal Plus. The Particle Pal Plus incorporates all the benefits of digital imaging particle counting into a compact case, offering a low-cost alternative to Pro. Full-spectrum ISO counts, bubble elimination plus ISO counts are not being affected by phantom particles/oil additives, which is a known issue with laser technology.

Particle Pal Plus is modular and can be built with an array of different sensors for a deep insight into oil and fuel health. Two pump variations are available, a standard gear pump that can be used on viscosities up to 320cSt or the high viscosity version (HV) up to 2,400cSt.

Digital Imaging Particle Counter

Particle Pal Pro

Particle Pal Pro - Digital Imaging Portable Particle Counter

Particle Pal Pro

Particle Pal Pro + Water Sensor - Digital Imaging Portable Particle Counter

FS9V4

Particle Pal Plus: Digital Imaging Portable Particle Counter

FS9V4-RH

Particle Pal Plus + Water RH%: Digital Imaging Portable Particle Counter

FS9V4-PPM

Particle Pal Plus + Water PPM: Digital Imaging Portable Particle Counter

FS9V4-PPM-DEN

Particle Pal Plus + Water PPM and Density Sensor: Digital Imaging Portable Particle Counter

FS9V4

Particle Pal Plus High Viscosity: Digital Imaging Portable Particle Counter

FS9V4-RH-HV

Particle Pal Plus High Viscosity + Water RH%: Digital Imaging Portable Particle Counter

fs9v4-rh-v-d-hv

Particle Pal Plus High Viscosity: Particulate, Water RH%, Viscosity and Density

Particle Pal Pro

Particle Pal Pro: Life - Digital Imaging Portable Particle Counter: Including water and remaining oil life sensor

Particle Pal Pro

Particle Pal Pro + Viscosity - Digital Imaging Portable Particle Counter

Laser Particle Counters

Particle Pal - Laser Portable Particle Counter

Particle Pal + Water & Density Sensor - Laser Portable Particle Counter

Particle Pal: Life - Laser Portable Particle Counter: Including water and remaining oil life sensor


Understanding Phantom Particle Counts

Understanding Phantom Particle Counts

Filtertechnik have developed a portfolio of products for accurate real-time monitoring of Particulate, Water Content and Remaining Life for Oil and diesel fuels.  We offer 2 particle counting approaches, new Digital Imaging technology and more traditional Laser Particle counters.

S120 Digital Imaging Particle Counter

The S120 Digital Imaging Particle Counter is a huge step forwards in accurate determination of oil and diesel fuel Particle counting using revolutionary new digital imaging and advanced algorithyms to analyse particles on the fly. A wider particulate size categorisation (4, 6, 14, 21, 38, 70 and >100 microns are counted and categorised) as well as shape recognition sorting particles 20 microns and above into; Sliding, Cutting and Fatigue Wear.  An additional major feature is bubble recognition and elimination from ISO counts. 


Filtertechnik have conducted extensive testing of both Digital Imaging and Laser counting when Siloxane based anti-foaming additives are present in mineral oil, especially polydimethylsiloxane, a common additive to hydraulic oils. This additive causes 
phantom particle counts with laser counters but not with digital imaging. For more information on this phenomenon please click here.

Particle Pal Pro

Particle Pal Pro
Utilising Digital Imaging

S120 - Digital Imaging Particle Counter

S120 Digital Imaging Particle Counter
Get a deeper insight into oil health

The revolutionary new Digital Imaging particle counting technique gives unprecedented insight into the type and quantity of contamination in any given oil or diesel fuel sample. ISO/NAS/SAE counts as well as a broader micron range, shape recognition, bubble elimination and the ability to handle higher viscosities.

This breakthrough technology uses advanced algorithms to calculate the size and shape of particulate on images taken at between 2 & 4 frames/second. The technology also gives root cause shape recognition to the particulate in live systems or bottle samples of any oil. Special algorithms and AI analyse images on the fly with a resolution of 2 microns up to several hundred microns.  High-resolution images are saved for further analysis and reporting such as the one above.

Particles are counted and categorised into Fatigue, Sliding or Cutting Wear. Air Bubbles and Water Droplets are counted and then eliminated from the counts making this suitable for live testing or permanent installation on systems where air is present such as large gearboxes.  In addition, anti-foaming additives such as polydimethylsiloxane are not counted as particles by digital imaging, this is a major advantage over Laser Particle counters which see's the micelle-like formations created by this additive as contamination, these are phantom particles, often resulting in particle counts being raised by 2 to 3 ISO codes, especially the 4 and 6 micron channels. Filtertechnik supply the S120 counter as a stand-alone particle counter for integration into live systems for 24/7 monitoring. Alternatively, we have developed a range of portable oil analysis cases designed to give on the spot oil analysis and a deep understanding of the type and quantity of contamination in any given oil sample. Built-in software takes readings from the new digital imaging technology and presents Engineers with an easy to understand analysis including images of contamination in the oil sample.

 

MOISTURE SENSORS

Water monitor sensor

RH Water monitor sensor and display

WMS500 Water monitor - PPM

Water Measurement Sensor WMS500 for Genuine PPM

Filtertechnik offer two types of water sensors for determining the quantity of water in oils, fuels and biofuels; our RH sensors and our WMS500 PPM sensors

RH Water Monitor: Our RH (Relative Humidity) water monitor gives the percent saturation of a given fluid. 100% saturation is the point at which suspended water becomes harmful free water. These sensors are lower cost and are very useful for hydraulic applications. Outputs are scaled and 4-20mA.

WMS500 PPM Sensor: Our Genuine PPM sensors are highly accurate parts per million (PPM) sensors and are particularly useful for transformer oils and diesel fuels or biofuel. The sensors are calibrated to a Karl Fischer device and fully temperature compensated.

To understand the different relationships between %RH and PPM please see below:

Parts per million (ppm):

Our PPM sensor gives a count of the absorbed water up to the saturation point of a given oil or fuel. Beyond the saturation point the sensor 'locks out' as free water will have formed.

Relative humidity:

Relative Humidity or RH is expressed as a percentage. 100% RH equates to the maximum amount a given oil or fuel can hold (absorbed water) before it becomes saturated and free water forms.

To view all our quality control and instrumentation click here

 

UNDERSTANDING PHANTOM PARTICLE COUNTS

The increased use of siloxane based anti-foaming agents is causing issues with laser counter technology.

IMAGINE THIS: You have been filtering 150 litres of hydraulic fluid off-line with staged 5 and 1 micron filter elements at a rate of 25 litres per minute (1,500 litres per hour). You have been using a laser light-blockage method (LBM), automatic particle counter to verify the fluid cleanliness. The starting cleanliness per ISO 4406:2017 was 25/22/15. After eight hours, the cleanliness has only dropped to 22/20/13. You’ve checked that the filter element is not clogged and not in bypass. You even went through the trouble of making sure there was an element actually in the filter. How is this possible? What you’re likely experiencing is a classic case of “phantom” particle counting.

Demystifying phantom particle counts

Phantom particle counting is a documented problem, encountered when using laser-based LBM particle counters to verify the cleanliness of mineral based fluids containing certain insoluble additives. Silicone-based antifoam agents such as polydimethylsiloxane are common additives causing problems. Fluids used in mobile fluid power systems are typically formulated to contain high antifoam concentrations. Research has suggested that through differential surface tension, the silicone-based antifoam additive agents adhere to the inner wall of microscopic, entrained air bubbles, resulting in micelle-like encapsulations of the additive agents that then take on the apparent shape characteristics of a water droplet. The micelle-like antifoam agent encapsulations typically range in 4-10µm in size. Once the encapsulations rise to the fluid surface, the agents quickly pierce the air bubble and return back into the fluid. In a related study on the effects of a variety of nonsolid contaminants and additives on LBM particle-counting accuracy, it was found that a base stock mixture containing 0.02% (by weight) of a silicone antifoam agent increased the particle count by a minimum factor of three. The erroneous particle accounts were particularly evident in the 4µm and 6µm channels of the ISO 4406 cleanliness standard.

Limitations of Laser particle counts

Light blocking method (LBM) Laser particle counters are useful in many applications and the principle of the method is fundamentally simple. Fluid flows through a measurement cell containing a light source on one side and a receiver (photodetector) on the opposite side. The light source becomes partially blocked as particles pass through the measurement cell, creating a light radiation differential (a shadow) – corresponding to the circular cross-sectional size of the passing particles. Because of this fundamental operating principle, LBM particle counters suffer from a key drawback: the inability to discern solid contaminants from other contaminants such as water, air bubbles, phantom particles, and so on. So, how can the phantom particles be overcome using automatic particle-counting technology? There is an alternative solution.

Digital imaging particle counting

Digital imaging particle counting uses size and shape-recognition technology, based on advanced algorithms to distinguish contaminants. For example, a direct imaging particle counter can distinguish contaminants into fatigue, cutting and sliding wear, as well as fibre and air bubble categories based on shape characteristics. It can also recognize water droplets (though water droplets are typically not recorded). The distinction of contaminants allows for more accurate particle counting, by negating nonsolid particles like entrained air bubbles and water droplets.

The S120 digital imaging particle counter can recognise solid particles and summarize them into 4, 6, 14, 21, 38, 70 and >100 micron ranges. It can also recognise shapes and give individual shape recognition counts as sliding, cutting and fatigue wear particles. Bubbles are also recognised and removed from the counts.

Therefore, digital imaging particle counting technology can negate the micelle-like antifoaming additive encapsulations as water droplets – phantom particles – allowing users to understand the condition of their fluids with confidence. Various real-world case studies demonstrate how the Particle Pal Pro a fluid condition monitoring solution with digital imaging particle counting technology, can overcome phantom particle counting.

Laser vs digital imaging particle counter test

In a lab-based test conducted on base oil with no additives, Filtertechnik ran 2 particle counters feeding from the same oil warmed to 40°C. - a laser counter and digital imaging particle counter. Filtertechnik then dosed in exactly 100ppm polydimethylsiloxane anti foaming additive. The results were immediately apparent in the laser counter, affecting the 4 and 6 micron counts by up to 3 ISO codes, the 14 micron count slightly less so, but still an increase of 1 ISO code. The digital imaging counter remained unaffected by the additive.

 

CASE STUDY

An OEM of large off-highway equipment was experiencing continuous particle counter inaccuracies at a verification stage of assembly. The rejections due to fluid condition were mounting, causing delayed shipments and significant related costs. The average holding time delay due to rejection was seven days, which incurred a holding cost of £1,000-a-day per unit. At the consultation phase of the case study, eight units had been delayed.

The diagnosis was in: the existing laser light-blockage-type particle counters were providing inconsistently high and erroneous particle counts. The ISO 4406 cleanliness would frequently measure 23/22/19, despite a strong fluid-maintenance and conditioning regime. Third-party fluid analysis reports and fluid datasheets suggested that the synthetic hydraulic fluid contained a high concentration of a siloxane (silicone derivative) antifoaming additive, known to cause phantom particle measurements in LBM automatic particle counters.

Filtertechnik provided an extensive on-site demonstration that proved the advanced digital imaging technology of the Particle Pal Pro portable fluid contamination monitoring solution, which measured an average ISO fluid cleanliness of 15/14/10. This allowed the customer to successfully process the fluid and pass six units during the first day of demonstration. The two remaining backlogged units passed early on the second day of demonstration. The savings evidenced by the demonstration equated to approximately 35% in cost savings and an 81% reduction in holding time.

For more information on the Particle Pal Pro click here