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Forty Years since the Invention of SUPRAL Alloys and Look Where We are Now

机译:自普拉尔合金发明以来的四十年,看看我们现在的位置

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Prior to 1969 the pioneering work carried out by Backofen and Fields in the USA and Johnson and Hundy in the UK demonstrated the 'promise' of Superplastic Forming. Using fine grained dual phase alloys, typically of eutectic or eutectoid compositions, they produced some of the very first superplastically formed prototype components. Although not always 'practical', these dual phase alloys were stable when heated and if appropriately processed often proved to be very superplastic. At that time 'dilute' alloys, including the majority of commercial aluminum alloys, having only a small volume fraction of alloying additions, were thought not to be capable of superplastic behavior due to their propensity to grain coarsen when heated. Breakthrough came in 1969 when at the research labs of Tube Investments, Hinxton Hall Nr Cambridge UK; the first 'SUPRAL' type dilute superplastic aluminum alloys were created. This paper describes the events and 'science' that led up to this development and the remarkable technology that has emerged since the authors began their superplasticity careers more than forty years ago. The future direction that this intriguing technology is likely to take is also explored.
机译:在1969年之前,由美国和英国约翰逊和骗局开展的开创性工作和英国的骗局展示了过度塑性成型的“承诺”。使用通常的颗粒双相合金,通常是共晶或共聚组合物,它们产生了一些非常高的卓越形成的原型组分。虽然并不总是“实用”,但是当加热时,这些双相合金是稳定的,并且如果经常被证明是非常过度的。此时,“稀释”合金,包括大多数商业铝合金,只有小体积的合金化添加剂,被认为不能在加热时颗粒粗糙的倾斜,因此不能能够进行超塑性行为。突破于1969年在Tubling Lable of Hinxton Hall NR Cambridge UK的研究实验室开始;第一个“超级”型稀塑料铝合金研制。本文介绍了这些事件和“科学”,这些发展和“自从作者开始超过四十年前的超塑性职业以来出现的显着技术”。还探讨了这种有趣技术可能采取的未来方向。

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