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Effect of material properties on liquid metal embrittlement in the Al-Ga system

机译:材料性能对Al-Ga体系液态金属脆化的影响

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There are many examples in which a liquid metal in contact with a polycrystalline solid develops a deep liquid groove at the intersections of the grain boundaries and the solid-liquid interface. In the Al-Ga system, liquid Ga quickly penetrates deep into the solid along grain boundaries resulting in brittle intergranular fracture under even modest stresses, a process known as liquid metal embrittlement. This is a complex phenomenon, involving several different types of simultaneous processes associated with diverse interfacial properties of materials. We have performed molecular dynamics simulations on idealized sets of conditions to emphasize certain effects. We report how Ga propagates into grain boundaries in Al as a function of some important external parameters such as applied stress, temperature, grain boundary type/structure, grain size and liquid properties. Our simulation results are very consistent with both the dislocation-climb model and general trends gleaned from experimental studies in the literature.
机译:有许多例子表明,液态金属与多晶固体接触,在晶界和固液界面的交汇处形成深液槽。在Al-Ga系统中,液态Ga沿着晶界迅速渗透到固体深处,即使在适度的应力下也会导致脆性晶间断裂,这一过程称为液态金属脆化。这是一个复杂的现象,涉及与材料的不同界面特性相关的几种不同类型的同时过程。我们已经在理想化的条件集上进行了分子动力学模拟,以强调某些效应。我们报告了Ga如何作为一些重要的外部参数(如施加的应力,温度,晶界类型/结构,晶粒尺寸和液体性质)的函数在Al中传播到晶界中。我们的仿真结果与位错爬升模型和文献中实验研究收集到的一般趋势非常一致。

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