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Tensile and Tensile-Mode Fatigue Testing of Microscale Specimens in Constant Humidity Environment

机译:恒湿环境下微尺度试样的拉伸和拉伸模式疲劳测试

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摘要

A tensile and tensile-mode-fatigue tester has been developed for testing microscale specimens in high humidity environments in order to investigate the fracture mechanisms of microelectromechanical materials. A humidity control system was installed on a tensile-mode fatigue tester equipped with an electrostatic force grip. A specimen and a griping device were inserted into a small chamber and the humidity was controlled by air flow from a temperature and humidity chamber. The humidity stability was within +/- 2%RH for humidities in the range 25-90%RH for eight hours of testing. Fatigue tests were performed on single-crystal silicon (SCS) specimens in constant humidity environments and laboratory air for up to 10(6) cycles. The gauge length, width, and thickness of the SCS specimens were 100 or 500 mu m, 13.0 mu m, and 3.3 mu m, respectively. The average tensile strength was 3.68 GPa in laboratory air; this value decreased in high humidity environments. Fatigue failure was observed during cyclic loading at stresses lower than the average strength. A reduction in the fatigue strength was observed at high relative humidities. Different fracture origins and fracture behaviors were observed in tensile tests and fatigue tests, which indicates that the water vapor in air affects the fatigue properties of SCS specimens.
机译:为了研究微机电材料的断裂机理,已经开发了一种拉伸和拉伸模式疲劳测试仪,用于在高湿度环境中测试微型样品。将湿度控制系统安装在配备有静电力夹具的拉伸模式疲劳测试仪上。将样品和抓握装置插入小腔室中,并通过来自温湿度腔室的气流控制湿度。对于八个小时的测试,湿度稳定性在25-90%RH范围内,湿度稳定性在+/- 2%RH之内。在恒湿环境和实验室空气中对单晶硅(SCS)标本进行了疲劳测试,测试周期长达10(6)个。 SCS标本的标距长度,宽度和厚度分别为100或500微米,13.0微米和3.3微米。实验室空气中的平均抗拉强度为3.68 GPa;在高湿度环境下该值降低。在低于平均强度的应力下的循环载荷过程中观察到疲劳破坏。在高相对湿度下观察到疲劳强度降低。在拉伸试验和疲劳试验中观察到不同的断裂起源和断裂行为,这表明空气中的水蒸气会影响SCS试样的疲劳性能。

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