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Kaiser effects in acoustic emission from composites during thermal cyclic-loading

机译:热循环加载过程中复合材料声发射的Kaiser效应

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摘要

Kaiser effects in acoustic emission (AE) behavior of composite laminates under repetitive thermal cyclic-loads are quantitatively analyzed to identify AE source mechanisms. The repetitive thermal loads brought about a large reduction, i.e. an exponential decrease, in AE total ring-down counts and AE amplitudes. It was thought that generation of most thermo-AE events during the first thermal cycle was not caused by crack propagation, but by secondary micro-fracturing due to abrasive contact between crack surfaces. For subsequent thermal cycles, on the other hand, a small number of weak thermo-AE events were generated due to frictional sliding contact. Such behavior of thermo-AE showed different characteristics according to specimen types and the maximum temperature in the thermal load cycles.
机译:定量分析复合材料层压板在反复热循环载荷下的声发射(AE)行为的Kaiser效应,以识别AE源机理。重复的热负荷导致AE总振降计数和AE振幅大大降低,即呈指数下降。可以认为,在第一个热循环中大多数热-AE事件的产生不是由裂纹扩展引起的,而是由裂纹表面之间的磨料接触引起的二次微裂纹引起的。另一方面,对于随后的热循环,由于摩擦滑动接触,产生了少量的弱热-AE事件。根据样品类型和热负荷循环中的最高温度,热AE的这种行为表现出不同的特性。

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