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Transient Hot-Wire TWH-L1

The Transient Hot-Wire THW-L1 is widely used for the accurate measurement of thermal conductivity, thermal diffusivity, and specific heat capacity of liquids, pastes, and powders.

Best For Liquids, Pastes, and Powders

ASTM D7896-19       |         -150 °C to 300 °C     |      Up to 35 bar

Standard Test           |        Temperature             |       Pressure

Method                        |         Range                          |        Range

The THW-L1 following ASTM D7896-19, is widely used for the accurate measurement of thermal conductivitythermal diffusivity, and specific heat of liquids
and pastes. This versatility is greatly expanded with the addition of Thermtest’s proprietary Temperature Platform (TP) which is appreciated by academic and commercial users alike.

The Transient Hot-Wire (THW) has been used for the testing of liquids for more than 30 years, making it one of the most published methods for measuring thermal conductivity of liquids available.

Features :

THW-L1 features

The Transient Hot-Wire (THW-L1) Liquid Thermal Conductivity Meter is an advanced measurement system for primary measurements of thermal conductivity, thermal diffusivity, and specific heat instrument for measurement of liquids and pastes in accordance with ASTM D7896-19. The THW-L1 was designed with speed and operational simplicity in mind. With a single measurement of 1 second in duration, small volumes of Liquids, Pastes, and Powders can be accurately and precisely measured for thermal conductivity, thermal diffusivity, and specific heat. The THW-L1 utilizes a non-stationary measurement approach and rapid test times to limit convective effects for samples with a wide range of viscosities. The THW sensor consists of a thin heating wire 40 mm in length and is completely inserted into the sample to be tested. The sensor wire is heated using a constant current source (q) and the temperature rise is recorded by monitoring the change in electrical resistance of the wire. The slope (m) from the plot of temperature rise vs. logarithm of time is used in the calculation of thermal conductivity (λ). For liquid samples of high thermal conductivity, the lower the slope. For liquid samples of low thermal conductivity, the higher the slope.

  • Follows international standard ASTM-D7896-19
  • Automated, powerful & accurate
  • Minimum effects of convection
  • Cell Pressure up to 35 bar
  • Integrated temperature control
  • Unique wire clamping for easy replacement

Specification:

MaterialsLiquids, Pastes, and Powders
Measurement CapabilitiesBulk Properties
Thermal Conductivity0.01 to 2 W/m•K
Additional PropertiesThermal Diffusivity and Specific Heat
Viscosity Range0.001 to 10,000,000 cP
Measurement Time1 second | < 5 seconds
Reproducibility± 1%
Accuracy*± 2%
Temperature Range-150 to 300°C
PressureUp to 35 bar
Smallest Volume20 mL
StandardASTM D7896-19
Transient Hot-Wire Models (Non-portable)
ModelsTHW-L1THW-L1STHW-L1E
MaterialsLiquids, Pastes, and PowdersLiquids, Pastes, and PowdersLiquids, Pastes, and Powders
Measurement CapabilitiesBulk PropertiesBulk PropertiesBulk Properties
Thermal Conductivity0.01 to 2 W/m•K0.01 to 2 W/m•K0.01 to 2 W/m•K
Additional PropertiesThermal Diffusivity and Specific HeatThermal Diffusivity and Specific HeatThermal Diffusivity and Specific Heat
Viscosity Range0.001 to 10,000,000 cP0.001 to 10,000,000 cP0.001 to 10,000,000 cP
Measurement Time1 second | < 5 seconds1 second | < 5 seconds1 second | < 5 seconds
Repeatability± 1%± 1%± 1%
Accuracy*± 2%± 2%± 2%
Temperature Range10 to 200°C-50 to 200°C-150 to 300°C
PressureUp to 20 barUp to 20 barUp to 35 bar
Smallest Volume20 mL20 mL20 mL
StandardASTM D7896-19ASTM D7896-19ASTM D7896-19
External Cooling Apparatus RequiredNoYesYes
Transient Hot-Wire Models (Portable)
ModelsTHW-L2THW-L3THW-S
MaterialsLiquids, Pastes, and PowdersLiquids, Pastes, and PowdersInsulation and Soft Materials
Measurement CapabilitiesBulk PropertiesBulk PropertiesBulk Properties
Thermal Conductivity0.01 to 2 W/m•K0.01 to 1 W/m•K0.01 to 2 W/m•K
Additional PropertiesNoNoNo
Viscosity Range0.001 to 10,000,000 cP0.001 to 10,000,000 cPN/A
Measurement Time1 second | < 5 seconds1 second1 to 5 seconds
Repeatability± 2%± 2%± 2%
Accuracy± 5%± 5%± 5%
Temperature Range-50 to 100°C10 to 40°C10 to 40°C
PressureAmbientAmbientN/A
Smallest Volume15 mL15 mLMin. Sample Size: 50 mm x 10 mm
StandardASTM D7896-19ASTM D7896-19N/A
External Cooling Apparatus RequiredYesYes

N/A

Sample Measurements
the sample
The Sample

The liquid is poured into the sample cell, the required volume is 20 ml. The THW-L1’s ability to limit convection, using short test times, allows accuracy measurements of a large range of samples, widely varying viscosities. The sample cell can then be back filled to pressures up to 35 bar, for testing liquids past their boiling points.

Approximate Time: 1 minute

insert the sample
Insert Sensor

For testing with temperature, the liquid cell is inserted into the integrated temperature platform.

Approximate Time: < 1 minute

Run Experiment
Run Experiment

The THW-L1 Software automatically controls isothermal steps of temperature from -150 to 300°C.

Approximate Time: < 1 minute

Export Results to excel
Exporting Results

Smart THW-L1 Windows Software verifies quality of results and recommends changes if needed. Results report can be generated, saved, and exported to excel. For convenience results may also be emailed.

Approximate Time: 1 minute

Applications

Output results of THW-L1 are thermal conductivity, thermal diffusivity and calculated specific heat. Low back pressure was applied to the fluids, to allow measurements over their boiling point.

Thermal Conductivity of Water
thermal conductivity of water

Deviations from reference values:
Water < 2%

Thermal Conductivity of Heptane
Thermal Conductivity of Heptane

Deviations from reference values:
Heptane < 3%

Thermal Diffusivity of Water
Thermal Diffusivity of Water

Deviations from reference values:
Water < 2%

Thermal Diffusivity of Heptane
Thermal Diffusivity of Heptane

Deviations from reference values:
Heptane < 2%

Calculated Specific Heat Capacity

Deviations from reference values:
Water < 2%
Heptane < 5%

Low back pressure was applied to allow measurements over their boiling point.

Thermal Conductivity of Ethylene Glycol
thermal conductivity of Ethylene Glycol

Deviations from reference values:
Ethylene glycol < 1%

Thermal Diffusivity of Ethylene Glycol
thermal Diffusivity of Ethylene Glycol

Deviations from reference values:
Ethylene glycol < 1%

Calculated Specific Heat Capacity

Deviations from reference values:
Ethylene glycol < 2%

Citation:

Lemmon, E.W., Bell, I.H., Huber, M.L., McLinden, M.O. (2018). NIST Standard Reference Database 23: Reference Fluid Thermodynamic and Transport Properties-REFPROP, Version 10.0. National Institute of Standards and Technology, Standard Reference Data Program, Gaithersburg.

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