铝合金成形过程中的行为

P. J. Ramulu
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引用次数: 3

摘要

工业革命的方向是减轻汽车和航空航天飞行器的重量和燃油效率,主要关注的是用轻质金属代替重金属而不影响很大的强度。因此,铝合金是这些工业的主要贡献者。此外,根据主要合金元素,铝合金主要分为1xxx、2xxx、3xxx、4xxx、5xxx、6xxx、7xxx和8xxx。其中,2xxx、5xxx、6xxx、7xxx在上述行业中应用最为广泛。对于任何工程可变形部件的制造,成形特性都是必须的。在不同的工艺条件(冷、暖、热条件)和工艺参数下,通过拉深、拉伸、增量成形、弯曲、水力成形等不同工艺对铝合金的成形行为进行了评价。每种工艺都有自己的工艺可行性,以评估产品的成形性而不产生任何成形缺陷。本章通过实验和模拟工作,讨论了几个重要的工艺过程及其参数对铝合金的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aluminum Alloys Behavior during Forming
Industrial revolution toward weight reduction and fuel efficiency of the automotive and aerospace vehicles is the major concern to replace heavy metals with light weight metals without affecting much strength. For this, aluminum alloys are the major contributors to those industries. Moreover, aluminum alloys are majorly categorized as 1xxx, 2xxx, 3xxx, 4xxx, 5xxx, 6xxx, 7xxx, and 8xxx based on major alloying elements. Among all, 2xxx, 5xxx, 6xxx, and 7xxx are having majority of applications in the abovementioned industries. For manufacturing any engineering deformable components, forming characteristics are must. Forming behavior of aluminum alloys has been evaluated through different processes including deep drawing, stretching, incremental forming, bending, hydro forming etc., under different process conditions (cold, warm, and hot conditions) and process parameters. Each process has its own process feasibility to evaluate the formability without any forming defects in products. The present chapter discusses a few important processes and their parameter effect on the aluminum alloys through the experimenta-tions and simulation works.
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