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Tensile and fatigue behavior of a Pb-Sn-Sb alloy investigated via small-scale in-situ mechanical testing in SEM

机译:PB-SN-SB合金的拉伸和疲劳行为通过SEM小规模在原位机械测试研究

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Pb-Sn-Sb alloys (E-alloy) are commonly used in subsea power cable sheathing. Due to the relatively low melting temperature, i.e. around 600 K, this type of alloy is prone to experience micro structural time-dependent evolution such as recovery, relaxation, recrystallization and creep deformation even at room temperature, in contrast to other conventional materials for which involve these mechanisms are activated only at high temperatures. To better understand the deformation mechanisms of Pb-Sn-Sb alloys, small-scale in-situ mechanical testing inside a scanning electron microscope (SEM) has been conducted under both monotonic loading and cyclic loading conditions. Thanks to the in-situ imaging technique, the deformation behavior as well as the damage mechanisms were revealed with high resolution. The possible deformation mechanisms, including the creep behavior, has been discussed and the results can provide necessary input to damage calculations and modelling work of the studied alloy system used for cable sheathing.
机译:PB-SN-SB合金(E-合金)通常用于海底电力电缆护套。由于熔融温度较低,即600 k约600 k,这种类型的合金容易发生微结构时间依赖性的进化,例如恢复,弛豫,再结晶和蠕变变形,即使在室温上,与其他常规材料相比涉及这些机制仅在高温下激活。为了更好地理解PB-SN-SB合金的变形机制,在单调载荷和循环负载条件下,扫描电子显微镜(SEM)内的小规模就地机械测试。由于原位成像技术,变形行为以及损坏机制以高分辨率揭示。已经讨论了包括蠕变行为的可能变形机制,并且结果可以提供必要的输入来损坏用于电缆护套的研究合金系统的损伤计算和建模工作。

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