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Experimental study of structural magnesium alloys with high absorption energy under dynamic loading

机译:动态载荷下高吸收能的结构镁合金的实验研究

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Improvement of tensile mechanical properties under dynamic loading is demonstrated for two commercial magnesium alloys. Ductility in magnesium is enhanced by the addition of alloying elements. Further enhancement of ductility can be achieved by the refining grain structures for two commercial magnesium alloys, ZK60 and AZ31. The high ductility of the fine-grained alloy is owing to the absence of macroscopic cracking at mechanical twin boundaries, while the coarsegrained alloy fractured at a smaller strain owing to the stress concentration at twin boundaries. It is noted that the absorption energy per weight in the fine-grained magnesium is twice higher than those of high strength aluminum alloys. It should be expected that the fine-grained alloy exhibits the high speed impact performance during foreign object damage.
机译:对于两种商业镁合金,在动态载荷下拉伸机械性能得到了改善。镁的延展性通过添加合金元素得到增强。通过精制两种市售镁合金ZK60和AZ31的晶粒结构,可以进一步提高延展性。细晶粒合金的高延展性是由于在机械孪晶边界处没有宏观裂纹,而粗晶粒合金由于在孪晶边界处的应力集中而在较小的应变下破裂。注意,细粒镁中每单位重量的吸收能比高强度铝合金高两倍。可以预料,在异物损坏期间,细晶粒合金会表现出高速冲击性能。

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