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Influence of Strain Rate on Mechanical Behaviours of Gradient-Structured Copper

机译:应变率对梯度结构铜机械行为的影响

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The mechanical properties of gradient-structured (GS) pure Cu processed by surface mechanical attrition treatment (SMAT) were investigated by tensile tests at different strain rates in the range of 5 x 10(-4) s(-1) to 5 x 10(-2) s(-1) at room temperature. The yield strength (YS), ultimate tensile strength (UTS) and ductility (uniform elongation, UE) of the gradient-structured Cu are simultaneously increased with increasing strain rate, especially for the sample processed by longer SIAM-treating time, while the coarse-grained (CU) Cu showed no obvious strain rate effect on strength and ductility. In addition, the strain rate sensitivity (m) and hetero-deformation induced (HDI) stress of the gradient-structured samples also increased with increasing strain rate. The increase in strength is mainly attributed to the gradient-structured layers and HDI stress strengthening. On the other hand, the increase in ductility can be attributed to an increase in strain rate sensitivity (m) and the strain hardening induced by the accumulation of a large number of geometrically necessary dislocations (GNDs) caused by a large stress gradient (HDI hardening).
机译:通过不同应变速率的拉伸试验在5×10( - 4)℃至5×10的范围内研究通过表面机械研磨处理(SMAT)加工的梯度结构(GS)纯Cu的机械性能。 (-2)S(-1)室温。梯度结构Cu的屈服强度(ys),最终拉伸强度(UTS)和延展性(均匀伸长,UE)随着应变速率的增加而同时增加,特别是对于通过更长的暹罗治疗时间处理的样品,而粗糙-GRORATE(Cu)Cu对强度和延展性没有明显的应变率影响。此外,梯度结构样品的应变率敏感性(M)和杂变诱导的(HDI)应力随着应变率的增加也增加。强度的增加主要归因于梯度结构层和HDI应力强化。另一方面,延展性的增加可以归因于应变速率敏感性(m)的增加和由由大应力梯度(HDI硬化的大量几何必要脱位(GND)的积累产生的累积诱导的应变硬化诱导)。

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