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  • Non - contact Video Extensometer
    System composition: It consists of a system measurement head (1 industrial camera, lens, LED light source with adjustable direction handle), camera synchronous control trigger control box, system calibration board, system movable support frame, dynamic acquisition and analysis software, load and pressure control communication interface, and computer system (user - matched), etc.
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    2022-07-30
  • WTDIC-Micro Three-Dimensional Microscopic Strain Measurement System
    Introduction to WTDIC-Micro Three-Dimensional Microscopic Strain Measurement System
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    2022-07-30
  • Application of Heating/Cooling In-situ Tensile Testing System in Mechanical Property Testing of Flexible Materials
    PI film (polyimide film) refers to a class of polymers containing imide rings (-CO-N-CO-) in the main chain. It is one of the organic polymer materials with the best comprehensive performance. Its high temperature resistance can reach above 400°C, and the long-term service temperature range is -200 ~ 300°C.
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    2022-07-30
  • Variable Temperature Mechanical, Optical, and Electrical Testing for Flexible Electronic Devices
    Researchers from the BEBC Research Institute of Bionics Engineering and Biomechanics at Xi'an Jiaotong University published a review article titled "The New Generation of Soft and Wearable Electronics for Health Monitoring in Varying Environment: From Normal to Extreme Conditions". The article briefly describes the three environmental challenges (Figure 1) faced by flexible electronic devices during long-term monitoring, namely mechanical force, temperature, and humidity, and summarizes the research achievements in ensuring the functional realization of flexible electronic devices under multiple changing environmental factors through material innovation and structural design at home and abroad in recent years.
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    2022-07-20
  • Dielectric Charging and Discharging Testing Technology Exchange - 01
    Currently, for the research on the energy density of dielectric energy storage materials, the conventional method is to calculate the energy density of materials under high voltage through hysteresis loops. During testing, the charge of the sample is returned to the high - voltage source instead of being released to the load. The energy storage density measured by hysteresis loops is generally higher than the actual energy density released by the sample, which makes it impossible to correctly evaluate the normal discharging performance of dielectric materials. Therefore, the most direct and reliable method is to obtain the capacitance discharging curve of the sample.
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    2022-07-20

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