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Superplastic Forming 40 Years and Still Growing

机译:超塑成型40年并仍在增长

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摘要

In late 1964 Backofen, Turner & Avery, at MIT, published a paper in which they described the "extraordinary formability" exhibited when fine-grain zinc-aluminum eutectoid (Zn 22 Al) was subjected to bulge testing under appropriate conditions. They concluded their research findings with the following insightful comment "even more appealing is the thought of applying to superplastic metals forming techniques borrowed from polymer and glass processing." Since then their insightful thought has become a substantial reality with thousands of tons of metallic sheet materials now being superplastically formed each year. This paper reviews the significant advances that have taken place over the past 40 years including alloy developments, improved forming techniques and equipment, and an ever increasing number of commercial applications. Current and likely future trends are discussed including; applications in the aerospace and automotive markets, faster-forming techniques to improve productivity, the increasing importance of computer modeling and simulation in tool design and process optimization and new alloy developments including superplastic magnesium alloys.
机译:1964年下半年,麻省理工学院的Backofen,Turner&Avery发表了一篇论文,其中描述了当在适当的条件下对细晶粒的锌铝共析物(Zn 22 Al)进行凸起测试时所表现出的“非凡的可成型性”。他们以以下有深刻见解的评论总结了他们的研究结果:“更有吸引力的是将这种思想应用于从聚合物和玻璃加工中借用的超塑性金属成形技术。”从那时起,他们的有见地的想法已经成为现实,现在每年超塑成型数千吨的金属片材。本文回顾了过去40年中取得的重大进步,包括合金的发展,改进的成形技术和设备以及数量不断增加的商业应用。讨论了当前和未来的趋势,包括:在航空航天和汽车市场中的应用,更快成型的技术以提高生产率,计算机建模和仿真在工具设计和工艺优化中的重要性日益提高以及包括超塑性镁合金在内的新合金的开发。

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