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Method of producing superplastic alloys and superplastic alloys produced by the method

机译:生产超塑合金的方法以及用该方法生产的超塑合金

摘要

A method for producing new superplastic alloys by inducing in an alloy the formation of precipitates having a sufficient size and homogeneous distribution that a sufficiently refined grain structure to produce superplasticity is obtained after subsequent PSN processing. An age-hardenable alloy having at least one dispersoid phase is selected for processing. The alloy is solution heat-treated and cooled to form a supersaturated solid solution. The alloy is plastically deformed sufficiently to form a high-energy defect structure useful for the subsequent heterogeneous nucleation of precipitates. The alloy is then aged, preferably by a multi-stage low and high temperature process, and precipitates are formed at the defect sites. The alloy then is subjected to a PSN process comprising plastically deforming the alloy to provide sufficient strain energy in the alloy to ensure recrystallization, and statically recrystallizing the alloy. A grain structure exhibiting new, fine, equiaxed and uniform grains is produced in the alloy. An exemplary 6xxx alloy of the type capable of being produced by the present invention, and which is useful for aerospace, automotive and other applications, is disclosed and claimed. The process is also suitable for processing any age-hardenable aluminum or other alloy.
机译:一种通过在合金中诱导形成具有足够尺寸和均匀分布的沉淀物的新超塑性合金的方法,以在随后的PSN处理后获得足够细化的晶粒结构以产生超塑性。选择具有至少一个弥散相的时效硬化合金进行加工。对该合金进行固溶处理并冷却以形成过饱和固溶体。合金发生充分的塑性变形,以形成可用于随后的析出物异相形核的高能缺陷结构。然后优选通过多阶段的低温和高温工艺对合金进行时效处理,并在缺陷部位形成沉淀。然后对合金进行PSN工艺,该工艺包括使合金塑性变形以在合金中提供足够的应变能以确保重结晶,以及使合金静态重结晶。在合金中产生了具有新的,细的,等轴的和均匀的晶粒的晶粒结构。公开了并要求保护一种示例性的6xxx合金,该合金能够通过本发明生产,并且可用于航空航天,汽车和其他应用。该工艺也适用于处理任何可时效硬化的铝或其他合金。

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