Showing 1–8 of 13 results

Thermal Analysis and Calorimetry

3D Thermal Properties Analyzer

Based on non-contact infrared thermography and 3D heat transfer inverse analysis, the TCA 3DP-160E directly measures in-plane and through-plane thermal conductivity of pouch lithium-ion batteries without sample destruction.   Test Parameters Thermal conductivity   Applications Pouch lithium-ion batteries  

Thermal Analysis and Calorimetry

DIFFERENTIAL SCANNING CALORIMETER DSC-40AE – ZEAL

The DSC-40AE is a high-performance thermal analyzer based on the tower-type heat flux principle, designed to accurately measure heat flow differences between a sample and a reference material under precisely controlled temperature programs. With milligram-scale samples, the instrument provides reliable and accurate analysis of essential thermal properties, including specific heat capacity, glass transition temperature (Tg), melting point, enthalpy of fusion, reaction heat of thermosetting plastics, curing kinetics, and gel conversion rates.

Thermal Analysis and Calorimetry

DIFFERENTIAL SCANNING CALORIMETER DSC-40BE – ZEAL

The DSC-40BE is a conventional Differential Scanning Calorimeter (DSC) based on the heat flux principle, designed for accurate thermal analysis of various materials. The instrument measures the difference in heat flow between a sample and a reference material as a function of temperature or time under controlled heating conditions. With only milligram-level sample quantities required, the DSC-40BE provides comprehensive thermal characterization, including enthalpy, melting point, crystallization temperature, glass transition temperature (Tg), specific heat capacity, purity, oxidation induction time (OIT), thermal stability, and Arrhenius kinetic parameters. The DSC-40BE is suitable for research, quality control, material characterization, and thermal stability studies across a wide range of applications.

Thermal Analysis and Calorimetry

Heat Flow Meter HFM 510AE

The HFM 510AE Heat Flow Meter Thermal Conductivity Tester complies with GB/T 10295-2008, ASTM C518, and ISO 8301. It features high accuracy, high efficiency, and good repeatability, enabling thermal conductivity testing of a wide range of low-thermal-conductivity materials, including expanded polystyrene (EPS), extruded polystyrene (XPS), rigid PU foam, mineral wool, expanded perlite, foam glass, natural fiber materials, cork, wool, aerogel, concrete, gypsum, and more.   Test Parameters Thermal conductivity   Applications Thermal insulation materials | Insulation materials

Thermal Analysis and Calorimetry

Large Battery Adiabatic Calorimeter

BAC-420AE - BAC-420BE - BAC-800AE - BAC-800BE - BAC-1000AE The BAC-420AE is a compact adiabatic calorimeter designed for large battery cells and small modules up to 600 mm in length. With a 420 mm furnace diameter and ±500 A current range, it provides a cost-effective and reliable platform for standard thermal runaway and heat generation studies. Test Parameters Thermal Runaway Onset Temperature, Maximum Rate of Temperature Rise, Adiabatic Temperature Rise, Specific Heat Capacity, etc. Applicable Fields Battery Pack, Battery Cell

The BAC-420BE is optimized for battery thermal testing under ambient and sub-zero conditions. Supporting cell and module formats up to 600 mm, it includes a standard liquid-nitrogen cooling module enabling operation down to -25 °C, making it suitable for cold-climate battery safety evaluation.

Built for the demands of next-generation battery testing, the BAC-1000AE accommodates large-format cells, modules, and partial pack assemblies up to 1,500 mm in length. Its 1,000 mm adiabatic furnace and ±1,000 A current capability provide the capacity needed for module-scale thermal runaway and gas generation testing. By combining controlled thermal conditions with realistic electrical loading, the BAC-1000AE delivers reliable insights into the thermal behavior and safety of high-capacity battery systems.

Designed for efficient testing of large-format battery cells and modules, the BAC-800AE accommodates samples up to 900 mm in length. Equipped with an 800 mm diameter furnace and a ±500 A current range, the system supports reliable thermal runaway studies as well as charge/discharge heat generation measurements, making it a practical solution for laboratory battery safety and thermal analysis.

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