The Thermal Conductivity of Building Materials Apparatus ThermoFlux - 7039 is a steady-state hot plate experimental unit for determining the thermal conductivity and thermal resistance of non-metallic building materials including polystyrene, PMMA, cork, plaster, Armaflex, grey cardboard, PS, and POM. Specimens measuring 300 × 300 mm and up to 50 mm thick are clamped between a 500 W electric heater plate and a water-cooled cold plate, with electronic controllers maintaining stable temperature boundary conditions. A heat flux sensor plate with digital readout measures heat flux density up to 5000 W/m², supported by four independent temperature channels each ranging from −100°C to 400°C. Series specimen configurations of up to 50 mm combined thickness can be evaluated, making this unit suitable for composite building material analysis. Optional ThermoFlux - 7039SW DAQ software, develope…

Thermal Conductivity of Building Materials Apparatus ThermoFlux - 7039, Technical Specifications
| Parameter | Details |
|---|---|
| Model | ThermoFlux - 7039 |
| Method | Hot plate technique (steady-state heat conduction) |
| Specimen Size (L × W) | 300 × 300 mm |
| Specimen Thickness | Up to 50 mm |
| Series Specimen Configuration | Up to 50 mm combined thickness |
| Specimen Materials | Armaflex, grey cardboard, PMMA, polystyrene, PS, POM, cork, plaster |
| Heat Flux Density Range | Up to 5000 W/m² |
| Temperature Measurement Range | 4× sensors, −100°C to 400°C each |
| Temperature Limitation | 60°C |
Technical Data
Electric Heater Mat
| Parameter | Value |
|---|---|
| Power | 500 W |
| Maximum Temperature | 200°C |
| Temperature Limitation | 60°C |
Measuring Ranges
| Parameter | Range |
|---|---|
| Temperature | 4× channels, −100°C to 400°C |
| Heat Flux Density | 5000 W/m² |
Specimen Dimensions
| Parameter | Value |
|---|---|
| Size (L × W) | 300 × 300 mm |
| Maximum Thickness | Up to 50 mm |
| Materials Supplied | Armaflex, grey cardboard, PMMA, polystyrene, PS, POM, cork, plaster |
Key Features
Experiments
Construction and Design
The Thermal Conductivity of Building Materials Apparatus ThermoFlux - 7039 is constructed around a hot plate–cold plate assembly with a precision clamping mechanism. The hot plate incorporates a 500 W electric heater mat rated to a maximum of 200°C, with temperature limitation set at 60°C; electronic controllers regulate both the heater plate and the water-cooled cold plate to ensure stable, repeatable boundary conditions. The clamping device applies controlled, reproducible pressure to specimen sheets placed between the two plates, ensuring consistent thermal conductivitymeasurement across all test runs. A heat flux sensor plate with digital readout is integrated into the assembly, measuring heat flux density up to 5000 W/m². Temperature monitoring across the system is provided by three sensors on the hot plate, three sensors on the cooling water circuit, and dedicated sensors at the cooling water inlet and outlet, giving four independent measurement channels each covering −100°C to 400°C. The unit accepts flat specimen sheets of 300 × 300 mm in plan and up to 50 mm in thickness, individually or stacked in series.
Software
ThermoFlux - 7039 (Optional)
Scope of Delivery
Q1: What test method does the ThermoFlux - 7039 use to measure thermal conductivity?
The ThermoFlux - 7039 uses the hot plate technique for steady-state heat conduction measurement. Specimen sheets are placed between a heater plate and a water-cooled plate, and the heat flux through the specimen is measured directly using a dedicated heat flux sensor plate.
Q2: What specimen materials are compatible with the ThermoFlux - 7039?
The apparatus accepts non-metallic specimens of Armaflex, grey cardboard, PMMA, polystyrene, PS, POM, cork, and plaster, each in sheet form measuring 300 × 300 mm and up to 50 mm in thickness.
Q3: Can multiple specimens be tested simultaneously?
Yes. Multiple specimens can be placed in series between the hot and cold plates, up to a combined specimen thickness of 50 mm, enabling thermal conductivity determination of composite or layered material assemblies.
Q4: How is temperature controlled during experiments?
Electronic controllers independently regulate the heater plate and water-cooled plate temperatures. Three sensors monitor the hot plate, three sensors monitor the cooling water circuit, and dedicated sensors are placed at the cooling water inlet and outlet. All four temperature measurement channels cover −100°C to 400°C.
Q5: Is the data acquisition software included as standard?
No. The ThermoFlux - 7039SW DAQ software is an optional accessory. It is developed in the National Instruments™ LabVIEW™ environment and runs on any Windows™ operating system. When the software option is selected, a set of electronic sensors is included with the unit.