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首页> 外文期刊>Key Engineering Materials >Acoustic Emission Behavior during Fatigue Crack Propagation in 304 stainless steel
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Acoustic Emission Behavior during Fatigue Crack Propagation in 304 stainless steel

机译:304不锈钢疲劳裂纹扩展过程中的声发射行为

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This study investigated acoustic emission behavior during fatigue crack growth test under constant and variable amplitude loading in 304 stainless steel. To describe the acoustic emission behavior, counts rate(dη/dn) was related with stress intensity factor range (SIFR, ΔK) in log-log plot. As a result of test, the relationship was represented a curve, which forms rise and fall behavior in counts rate as the SIFR increases. AE response to a single overload was sudden drop and slow recovery in counts rate, which was similar to crack growth retardation behavior. Under block loading, counts rate of each loading block was same as that of constant amplitude loading. Overall experimental results indicated that stress intensity factor controls the counts rate (dη/dn) as well as crack growth rate (da/dn) regardless of load range or crack length.
机译:本研究调查了在恒定和可变振幅载荷下304不锈钢疲劳裂纹扩展测试过程中的声发射行为。为了描述声发射行为,计数率(dη/ dn)与对数对数图中的应力强度因子范围(SIFR,ΔK)相关。作为测试的结果,该关系表示为一条曲线,该曲线随着SIFR的增加而形成计数率的上升和下降行为。 AE对单个过载的响应是突然下降,计数率缓慢恢复,这类似于裂纹扩展延迟行为。在块加载下,每个加载块的计数率与恒定振幅加载相同。整体实验结果表明,应力强度因子控制计数率(dη/ dn)以及裂纹扩展率(da / dn),而与载荷范围或裂纹长度无关。

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