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7.5mm 15mm Probe TPS 130c Thermal Conductivity Tester

Categories Thermal Conductivity Meter
Brand Name: BAXIT
Model Number: GLO-CT3
Certification: CE,ISO
Place of Origin: China
MOQ: 1 set
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 500 sets per month
Delivery Time: 5-8 work days
Packaging Details: export wooden box
Price: Negotiable
Measuring temperature range: room temperature-130 ° C
Probe diameter: 7.5mm,15mm
Measuring time: 5~160s
Machine power: <500w
Sample temperature rise: <15 ° C
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7.5mm 15mm Probe TPS 130c Thermal Conductivity Tester

operation video


Testing object:

Suitable for metal, ceramic, alloy, ore, polymer, composite, paper, fabric, foam (surface-level insulation, sheet), mineral wool, cement wall, glass reinforced composite board CRC, cement polystyrene board, sandwich Concrete, FRP panel composite panels, paper honeycomb panels, colloids, liquids, powders, granules and paste solids, etc., have a wide range of test objects.

Working principle:

Transient planar heat source technology (TPS) is a new method for measuring thermal conductivity, developed by Professor Silas Gustafsson of the University of Technology, Chalmer, Sweden, based on the hotline method. Its principle of determining the thermal properties of a material is based on the transient temperature response produced by a step- heated disk-shaped heat source in an infinite medium. A flat probe is made of a thermally resistive material, and serves as both a heat source and a temperature sensor. The thermal resistance coefficient of the alloy has a linear relationship with the relationship between temperature and resistance. That is, the heat loss can be known by understanding the change of the resistance, thereby reflecting the thermal conductivity of the sample.The continuous double-spiral structure sheet formed by etching after gold etching has a double-layer insulating protective layer and a thin thickness, which makes the probe have a certain mechanical strength and maintain electrical insulation from the sample. During the test, the probe was placed in the middle of the sample for testing. When the current passes through the probe, a certain temperature rise occurs, and the generated heat is simultaneously diffused to the samples on both sides of the probe. The speed of thermal diffusion depends on the heat transfer characteristics of the material. By recording the temperature and the response time of the probe,The thermal conductivity can be directly obtained from the mathematical model.


Technical parameters:

Test range0.005—300W/(m*K)
Measuring temperature rangeroom temperature - 130 ° C
Probe diameterNo. 1 probe 7.5mm; No. 2 probe 15mm
Accuracy±3%
Repeatability error≤3%
Measurement time5~160 seconds
Power supplyAC 220V
Machine power<500w
Sample temperature rise<15 ° C
Test sample power PNo. 1 probe power 0 < P < 1w; No. 2 probe power 0 < P < 14w
Sample specificationsSingle sample (15*15*3.75mm) measured by the first probe; single sample (30*30*7.5mm) measured by the second probe.
Note: The No. 1 probe measures a thin material with a low thickness. The sample is superimposed if the surface of the sample is smooth and flat and sticky.

methodsTransient plane heat source methodlaser methodhot-wire techniqueguarded plate method
not steady state methodnot steady state methodnot steady state methodsteady state method
measuring physical propertiesThermal conductivity and thermal diffusivity are obtained directly.The thermal diffusivity and specific heat are obtained directly, and the thermal conductivity is calculated by the input sample density value.Thermal conductivity is obtained directlyThermal conductivity is obtained directly
application rangesolid, liquid, powder, paste, colloid, particlesolidSolid, liquidsolid
sample preparationNo special requirements, simple sample preparation.Sample preparation is multifarious.Sample preparation is simple and has specific requirements.Larger sample size.
accuracy of measurement±3%,better±0.5%better±10%better±5%better±3%
physical modelPlanar heat source contact measurement, as long as the finite surface contact is good.The heat source is contactless.The linear heat source must be in good contact with the linear model.Heat source contact type, need good surface contact.

Thermal conductivity range

[w/(m*k)]

0.005-30010-5000.005-100.005-5
measuring time5-160Sfew minutesfew minutesfew hours
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