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The different effects of twin boundary and grain boundary on reducing tension-compression yield asymmetry of Mg alloys

机译:晶界和晶界对降低镁合金拉压屈服不对称性的不同影响

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In the present study, a coarse grained AZ31 plate was refined by twin boundaries (TBs) and grain boundaries (GBs), respectively. A comparative study about the different effects of grain refinements by GBs and by TBs on tension-compression yield asymmetry was performed. Our results show that both the refinements by GBs and by TBs increase the tensile and compressive yield strengths, but to a different degree. TBs are more effective to harden twinning, but yield a lower strengthening against prismatic slip, and a much lower tension-compression yield asymmetry is thus obtained. Both the differences in boundary coherence and misorientation between GBs and TBs affect the hardening. The misorientation of TBs provides a lower geometric compatibility factor (a higher hardening) for both prismatic slip and twinning than that of GBs, which in detail is the result of the much higher angle between c-axes of the two sides of TBs (about 86°) than GBs (0-50°). It is found that, for hardening of prismatic slip, boundary coherence plays a more important role than misorientation. With regard to twinning, the different misorientation of TBs from GBs mainly accounts for their different hardening effects.
机译:在本研究中,分别通过双晶界(TBs)和晶界(GBs)细化了AZ31粗晶粒板。进行了GBs和TBs晶粒细化对张力-压缩屈服不对称性不同影响的比较研究。我们的结果表明,GBs和TBs的细化都增加了拉伸和压缩屈服强度,但程度不同。 TBs可以更有效地硬化孪晶,但对棱柱形滑移的增强作用较小,因此可以获得较低的拉伸压缩屈服不对称性。 GB和TB之间边界连贯性和取向错误的差异都会影响硬化。 TB的取向不正确,棱柱形滑移和孪晶的几何相容性因子都比GB的低,这是TB两侧的C轴之间的角度大得多的结果(约86) °)比GB(0-50°)高。已经发现,对于棱柱形滑动的硬化,边界相干性比取向错误更重要。关于孪生,TB与GB的取向不同主要是由于它们的硬化作用不同。

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