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A compact bending device for in-situ three-point bending tests under laser scanning confocal microscope

机译:紧凑的弯曲装置,用于激光扫描共聚焦显微镜下的原位三点弯曲测试

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摘要

In-situ testing methods are used to investigate the real-time changing process of materials under different mechanical tests. This paper describes a miniature in-situ three-point bending device, which is compatible with the laser scanning confocal microscope. This device integrates a servo motor, a two-stage worm gears reducer with large reduction ratio and two small lead ball screws. It can realize quasi-static loading mode with a wide rate range from 0.1 A mu m/s to 0.1 mm/s. The microstructure of the specimen can be observed dynamically during the three-point bending test combined with the force-deflection curve. A calibration method was introduced to calibrate the flexibility of the developed device. The bending experiments were carried out for several different materials with known elastic modulus to verify the feasibility of the calibration method. Finally, the in-situ three-point bending test of red copper was performed to verify the function of the device.
机译:原位测试方法用于调查不同机械测试下材料的实时变化过程。本文介绍了一种微型原位三点弯曲装置,该装置可与激光扫描共聚焦显微镜兼容。该装置集成了伺服电机,具有大减速比的两级蜗轮减速器和两个小导螺杆。它可以实现准静态加载模式,速率范围从0.1 Aμm / s到0.1 mm / s。在三点弯曲试验中结合力-挠度曲线可以动态地观察到试样的微观结构。引入了一种校准方法来校准所开发设备的灵活性。对几种具有已知弹性模量的不同材料进行了弯曲实验,以验证校准方法的可行性。最后,进行了红铜的原位三点弯曲测试,以验证该设备的功能。

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