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STRAIN-RATE DEPENDENCE OF TENSILE DUCTILITY OF CRYOMILLED 5083 AL ALLOYS

机译:低温5083 Al合金拉伸塑性的应变率依赖性。

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摘要

The mechanical properties of nanostructured or ultrafine-grained (UFG) materials have engendered increased interest for the past two decades. Inspection of numerous published studies reveals that there is a strong effect of strain rate on the mechanical properties of nanostructured or UFG materials. In many cases, it is found that the tensile ductility increases with increasing strain rate and the strain rate sensitivity exponent is larger than that in their counterpart coarse-grained materials. In the present study, the mechanical properties and microstructural characterization of several bimodal nanostructured 5083 Al alloys processed from cryomilled nanostructured powders are investigated. It is noted that there are higher values of ultimate tensile strength and ductility at slower strain rates in the cryomilled 5083 Al alloys. The relationships among mechanical properties at different strain rates, microstructural characteristics and deformation mechanisms of these materials are thus explored in the present study.
机译:在过去的二十年中,纳米结构或超细颗粒(UFG)材料的机械性能引起了人们的关注。对大量已发表研究的检查表明,应变速率对纳米结构或UFG材料的机械性能有很大影响。在许多情况下,发现拉伸延性随应变率的增加而增加,并且应变率敏感性指数大于相应的粗粒材料。在本研究中,研究了几种由低温研磨的纳米结构粉末加工而成的双峰纳米结构5083 Al合金的力学性能和微观结构特征。值得注意的是,在低温铣削的5083铝合金中,在较低的应变速率下,极限抗拉强度和延展性值更高。因此,本研究探讨了不同应变速率下的力学性能,这些材料的微观结构特征和变形机理之间的关系。

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