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Improving the tensile ductility and uniform elongation of high-strength ultrafine-grained Al alloys by lowering the grain boundary misorientation angle

机译:通过降低晶界错位角来提高高强度超细晶粒铝合金的拉伸延展性和均匀伸长率

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摘要

A high-strength, ultrafine-grained Al alloy with a lamellar structure was fabricated via cryomilling and consolidation (hot iso-static pressing), followed by a two-stage thermomechanical processing approach (e.g. high temperature rotary swaging and room temperature high strain rate extrusion). Each lamellar band consisted of multiple ultrafine grains connected by low misorientation angle grain boundaries. This structure allows the dislocations to glide through low misorientation angle grain boundaries and to accumulate within the band, providing a high uniform elongation while retaining high strength.
机译:通过冷冻研磨和固结(热等静压),然后通过两阶段的热机械加工方法(例如高温旋转模锻和室温高应变速率挤压),制造出具有层状结构的高强度超细晶粒铝合金)。每个层状带由通过低取向角晶粒边界连接的多个超细晶粒组成。这种结构可以使位错滑过低取向角的晶界,并在带内聚集,从而在保持高强度的同时提供高均匀伸长率。

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