🔎 ISO 9001:2015 & CE Certified Lab Equipment Manufacturer — Get CIF Quote in 24 Hours → WhatsApp Now
ISO 9001:2015 Certified CE Marked Equipment Exporting Since 1993 60+ Countries Served Quote in 24 Hours

Thermal Conductivity Apparatus | ThermoFlux-25

 

The Thermal Conductivity Apparatus ThermoFlux-25 is a laboratory instrument for determining the thermal conductivity of five materials: Bakelite, wood, aluminium, Sheetrock, and Masonite. This thermal conductivity apparatus clamps each 100 x 100 mm, 5 mm thick sample between a 2-litre stainless steel steam chamber and a steel ice mold, establishing a 100°C temperature differential. The rate of ice melt, collected in a 500 ml glass beaker, provides a direct measure of heat transfer through each material. A measuring scale (0 to 100 N, 0.1 N resolution), stand with insulating pads, and two steel ice molds are included. Optional LABVIEW DAQ software and a small steam generator are available as accessories.

The Thermal Conductivity Apparatus ThermoFlux-25 is a laboratory instrument for measuring heat flow across a consistent 100°C temperature differential through five common building and insulation materials. This thermal conductivity apparatus uses a steam chamber as the hot reservoir and a block of ice as the cold sink, with the rate of ice melt into water serving as the quantifiable measure of heat transfer through each test sample. Students determine thermal conductivity values for Bakelite, wood, aluminium, Sheetrock, and Masonite using identical sample geometry across all tests.


Product Overview

The ThermoFlux-25 operates on a straightforward principle: a test sample is clamped between a steam chamber on one side and a block of ice on the other. The steam chamber maintains a constant temperature, creating a 100°C differential across the sample. Heat flows from the steam, through the test material, and into the ice. The rate of ice melting, collected as water into a glass beaker, provides a direct, measurable indicator of the thermal conductivity of each material.

Five sample materials are supplied: Bakelite, wood, aluminium, Sheetrock, and Masonite. Each sample is 100 x 100 mm in face dimension and 5 mm thick. Wood, Masonite, and Sheetrock samples are covered with a thin aluminium sheet for waterproofing, ensuring effective thermal contact during experiments. The steam reservoir is fabricated from stainless steel with a 2-litre capacity and is positioned high above the lab table to eliminate risk of heat damage to the work surface. Meltwater flows directly into the measuring beaker, keeping the lab table free of spillage.

Two steel ice molds, each with a capacity of 300 to 400 ml, are supplied for preparing ice blocks. A glass beaker of 500 ml capacity collects meltwater for measurement. A measuring scale with a range of 0 to 100 N and a resolution of 0.1 N is included. The complete assembly is mounted on a stand with insulating pads.

An optional small steam generator (ThermoFlux-25) is recommended for operation. Optional DAQ software developed in the National Instruments LABVIEW environment is also available, compatible with any Windows operating system. Electronic sensors are included when the software option is selected.

Thermal Conductivity Apparatus ThermoFlux-25 — Technical Specifications

Parameter Value
Model ThermoFlux-25
Test Sample Materials Bakelite, wood, aluminium, Sheetrock, Masonite
Sample Face Dimension (W x H) 100 x 100 mm
Sample Thickness 5 mm
Temperature Differential 100°C (steam chamber to ice)
Steam Reservoir Material Stainless steel
Steam Reservoir Capacity 2 litres
Ice Mold Material Steel
Ice Mold Quantity 2
Ice Mold Capacity 300 to 400 ml each
Beaker Material Glass
Beaker Capacity 500 ml
Measuring Scale Range 0 to 100 N
Measuring Scale Resolution 0.1 N
Sample Waterproofing Thin aluminium sheet on wood, Masonite, and Sheetrock samples
Hot Reservoir Position Elevated above lab table
Meltwater Collection Flows directly into measuring beaker
Optional Accessory Small Steam Generator ThermoFlux-25
Optional Software National Instruments LABVIEW, Windows compatible
Scope of Delivery 1 stand with insulating pads, 2 ice molds, 1 set of samples, 1 plastic tubing, 1 instruction manual

Technical Data

Test Samples

Parameter Value
Materials Bakelite, wood, aluminium, Sheetrock, Masonite
Face Dimension (W x H) 100 x 100 mm
Thickness 5 mm
Waterproofing Thin aluminium sheet on wood, Masonite, and Sheetrock

Steam Reservoir

Parameter Value
Material Stainless steel
Capacity 2 litres
Position Elevated above lab table
Temperature Differential Provided 100°C

Ice Molds

Parameter Value
Material Steel
Quantity 2
Capacity per Mold 300 to 400 ml

Beaker

Parameter Value
Material Glass
Capacity 500 ml
Purpose Meltwater collection and measurement

Measuring Scale

Parameter Value
Range 0 to 100 N
Resolution 0.1 N

Key Features

  • Test Materials: Five samples supplied: Bakelite, wood, aluminium, Sheetrock, and Masonite
  • Sample Geometry: 100 x 100 mm face, 5 mm thickness, identical across all materials
  • Temperature Differential: 100°C, maintained by steam chamber against ice block
  • Thermal Conductivity Apparatus Measurement Method: Rate of ice melt collected in 500 ml glass beaker as quantitative heat transfer indicator
  • Steam Reservoir: 2-litre stainless steel, elevated above lab table to prevent heat damage
  • Ice Molds: 2 steel molds, 300 to 400 ml each
  • Measuring Scale: 0 to 100 N range, 0.1 N resolution
  • Sample Waterproofing: Wood, Masonite, and Sheetrock covered with thin aluminium sheet for effective thermal contact
  • Meltwater Management: Water flows directly into beaker, no spillage on lab table
  • Stand: Included with insulating pads
  • Optional Steam Generator: Small steam generator ThermoFlux-25 recommended
  • Optional Software: National Instruments LABVIEW DAQ software, Windows compatible, electronic sensors included when selected

Experiments

  • Observe and measure heat flow across a consistent 100°C temperature differential
  • Determine the thermal conductivity of Bakelite, wood, aluminium, Sheetrock, and Masonite

Construction and Design

The Thermal Conductivity Apparatus ThermoFlux-25 is assembled on a stand fitted with insulating pads to isolate the unit from the lab table. The stainless steel steam reservoir, with a 2-litre capacity, is mounted in an elevated position above the lab table to prevent any risk of heat damage to the work surface. A plastic tube connects the steam reservoir to the test section. The test sample is clamped securely between the steam chamber face and the ice block. Each sample measures 100 x 100 mm and is 5 mm thick. Wood, Masonite, and Sheetrock samples are covered with a thin aluminium sheet to provide waterproofing and ensure effective thermal contact at both interfaces.

This thermal conductivity apparatus establishes a 100°C temperature differential across the sample. Heat flows from the steam chamber, through the sample, and into the ice block. The ice melts at a rate proportional to the thermal conductivity of the material under test. Meltwater drains directly into a 500 ml glass beaker below, eliminating spillage on the lab surface. Two steel ice molds, each 300 to 400 ml, are supplied for preparing standardised ice blocks. A measuring scale (0 to 100 N, 0.1 N resolution) is included for the experimental procedure.


Software

ThermoFlux-25 DAQ Software (Optional)

Optional DAQ software for this thermal conductivity apparatus is developed in the National Instruments LABVIEW environment. It measures and calculates experimental results automatically. A set of electronic sensors is included when the software option is selected. The software is compatible with any Windows operating system.


Scope of Delivery

  • 1 stand with insulating pads
  • 2 ice molds
  • 1 set of samples
  • 1 plastic tubing to connect steam generator
  • 1 instruction manual

Optional Accessories

  • Small Steam Generator ThermoFlux-24 (recommended for operation)
  • DAQ software (National Instruments LABVIEW, Windows compatible), including electronic sensors

Q1: Which materials are included as test samples in the ThermoFlux-25?
Five samples are supplied: Bakelite, wood, aluminium, Sheetrock, and Masonite. Each sample measures 100 x 100 mm in face dimension and 5 mm in thickness. Wood, Masonite, and Sheetrock are covered with a thin aluminium sheet for waterproofing and effective thermal contact.

Q2: How is the temperature differential maintained during the experiment?
The steam chamber on one side of the sample maintains a constant steam temperature. The ice block on the opposite side provides the cold sink. This arrangement establishes a consistent 100°C differential across the test sample for the duration of the experiment.

Q3: How is heat transfer quantified in this thermal conductivity apparatus?
As heat flows through the sample and melts the ice, the resulting water is collected in a 500 ml glass beaker. The volume or mass of meltwater over a measured time period serves as the quantifiable indicator of heat transfer rate and thermal conductivity.

Q4: Is a steam generator required to operate the ThermoFlux-25?
A small steam generator (ThermoFlux-24) is recommended as an optional accessory. It supplies steam to the stainless steel reservoir for consistent hot-side temperature during experiments.

Q5: Is data acquisition software available for the ThermoFlux-25?
Yes. Optional LABVIEW-based DAQ software is available, developed in the National Instruments environment and compatible with any Windows operating system. A set of electronic sensors is included when this option is selected.

Explore Related Equipment

Discover more mechanical engineering lab equipment including testing systems, experimental setups, and training models designed for academic and industrial applications.

Testimonials

Scientico India delivered CE-certified laboratory equipment for our engineering programme on schedule. Documentation was complete and instruments were well calibrated.

Need Assistance? We're Here to Help!

Connect with our team for product specifications, pricing, and customized solutions for your institution or project.

Make An Enquiry