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首页> 外文期刊>Metallurgical and Materials Transactions A >Evolution of surface recrystallization during indirect extrusion of 6xxx aluminum alloys
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Evolution of surface recrystallization during indirect extrusion of 6xxx aluminum alloys

机译:6xxx铝合金间接挤压过程中表面再结晶的演变

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摘要

The fundamentals of coarse grain surface recrystallized structure formation in extrusion of 6xxx aluminum alloys are not yet completely understood. The objective of this article is to understand the metallurgical origins and mechanisms of the formation of the peripheral coarse grain (PCG) structure as the first step to understanding surface behavior of extruded aluminum alloys. Small-scale indirect extrusion tests were performed in which deformation parameters of strain, strain rate, and temperature were closely controlled. The deformed material was characterized via traditional metallography and orientation imaging microscopy (OIM) in order to understand the influence of processing conditions and alloy chemistry on surface grain formation. It was found that decreasing recrystallization-inhibiting elements such as Cr as well as increasing the starting extrusion temperature, extrusion ratio, and ram speed all increased the depth of the PCG. Additionally, a mechanism for favorable coarse grain formation at the surface of the extrudate is proposed based on microstructure development during extrusion.
机译:尚不完全了解6xxx铝合金挤压过程中粗晶粒表面重结晶组织形成的基本原理。本文的目的是了解外围粗糙晶粒(PCG)结构形成的冶金起源和机理,这是理解挤压铝合金表面行为的第一步。进行了小型间接挤压试验,其中应变,应变速率和温度的变形参数受到严格控制。通过传统的金相和取向成像显微镜(OIM)对变形后的材料进行了表征,以了解加工条件和合金化学对表面晶粒形成的影响。已经发现,减少诸如Cr的抑制再结晶的元素以及提高起始挤出温度,挤出比和冲压速度都增加了PCG的深度。另外,基于挤出过程中的微结构发展,提出了在挤出物表面上有利于粗大晶粒形成的机理。

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