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首页> 外文期刊>International Journal of Fatigue >Dynamic strain aging effect on the fatigue resistance of type 316L stainless steel
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Dynamic strain aging effect on the fatigue resistance of type 316L stainless steel

机译:动态应变时效对316L不锈钢疲劳强度的影响

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摘要

Mechanism of dynamic strain aging (DSA) and its effect on the high-temperature low-cycle fatigue resistance in type 316L stainless steel were investigated by carrying out low-cycle fatigue tests in a wide temperature range from 20 to 650 deg C with strain rates of 3.2 X 10~(-5)-1 X 10~(-2)/s. The regime of DSA was evaluated using the anomalous features of material behavior associated with DSA. The activation energies for each type of serration were about 0.57-0.74 times those for lattice diffusion indicating that a mechanism other than lattice diffusion is involved. It is reasonably concluded that the pipe diffusion of solute atoms along the dislocation core is responsible for DSA. Dynamic strain aging reduced the fatigue resistance by ways of multiple crack initiation, which comes from the DS A-induced inhomogeneity of deformation, and rapid crack propagation due to the DSA-induced hardening.
机译:通过在20至650℃的宽温度范围内以应变速率进行低周疲劳试验,研究了动态应变时效(DSA)的机理及其对316L不锈钢的高温低周疲劳强度的影响。 3.2 X 10〜(-5)-1 X 10〜(-2)/秒使用与DSA相关的物质行为的异常特征来评估DSA的方案。每种锯齿的活化能约为晶格扩散的活化能的0.57-0.74倍,这表明除了晶格扩散外还涉及其他机理。可以合理地得出结论,溶质原子沿位错核的管道扩散是DSA的原因。动态应变时效通过多次裂纹萌生而降低了抗疲劳性,这是由于DSA引起的变形不均匀以及由于DSA引起的硬化而导致的快速裂纹扩展。

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