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Technical characteristics of high and low temperature in-situ stretching machine
Date: 2025-12-23Read: 20
  High and low temperature in-situ stretching machineIt is an advanced material testing equipment that integrates high and low temperature environment simulation and in-situ mechanical testing functions. It can conduct tensile tests on materials under preset high and low temperature conditions and observe the microstructure changes of materials in real time during the stress process.
  High and low temperature in-situ stretching machineTechnical characteristics:
Accurate temperature control system: using efficient refrigeration units and heating modules, combined with high-precision temperature sensors, to achieve temperature control accuracy of ± 0.5 ℃ or even higher, ensuring stable testing of the sample at the set temperature.
Rapid temperature rise and fall capability: Advanced intelligent temperature control algorithms enable a temperature rise and fall rate of up to 10 ℃/min, significantly reducing the testing cycle.
High precision measurement system: equipped with high-precision sensors, the force accuracy is better than ± 0.5%, the displacement resolution is 0.001mm or higher, and it can accurately capture the performance changes of materials in temperature environment.
Multi functional testing capability: supports multiple control modes such as constant test force, constant deformation, and constant displacement to meet different testing needs. At the same time, equipment is usually equipped with various testing fixtures, such as tension, compression, bending, shearing, peeling, tearing, etc., to meet the testing needs of different materials.
Modular design: adopting a dual space structure design to achieve seamless switching between tensile and compressive tests; Modular fixtures are adapted to different sample types, improving the flexibility and versatility of the equipment.
Advanced insulation system: The environmental box adopts high-quality stainless steel inner liner and ultra-fine glass wool insulation layer, effectively reducing heat loss and improving energy utilization efficiency.
Comprehensive safety protection: equipped with electronic limit, overload shutdown, over temperature protection, and anti pinch devices and other safety protection measures to ensure safe operation.