首页> 外文会议>Symposium on Ultrafine Grained Materials Ⅱ, Feb 17-21, 2002, Seattle, Washington >ENHANCED FORMABILITY OF SUPERPLASTIC AlMgZr ALLOYS MADE BY PARTICULATE ROUTES
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ENHANCED FORMABILITY OF SUPERPLASTIC AlMgZr ALLOYS MADE BY PARTICULATE ROUTES

机译:颗粒路线制造的超塑性AlMgZr合金的增强成形性

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The technique of centrifugal atomisation has been used to produce a number of AlMgZr alloy particulates with Zr contents up to 1%. These have been converted into sheet by extrusion, rolling and heat treatment and their superplastic properties determined. It has been found that control of the solidification conditions during atomisation is crucial in order to maximise Zr solid solubility and achieve a fine dispersion of Al_3Zr precipitates. Superplastic behaviour is enhanced at higher Zr contents, and by thermo-mechanical processing to achieve ductilities in excess of 600% at strain rates of 0.01 s~(-1). Alloy conditioning was found to have a significant effect on the Al_3Zr precipitate size, with coarser precipitates relating to premature failure during testing. This paper describes the atomisation process and identifies the key parameters that must be controlled for its successful operation. A summary of the superplastic performance of the product will be included.
机译:离心雾化技术已用于生产许多Zr含量高达1%的AlMgZr合金颗粒。这些已通过挤压,轧制和热处理转化为片材,并确定了它们的超塑性。已经发现,在雾化过程中控制固化条件对于最大化Zr固溶度并实现Al_3Zr沉淀物的精细分散至关重要。在较高的Zr含量下,通过热机械加工,在0.01 s〜(-1)的应变速率下,延展性超过600%,超塑性行为得以增强。发现合金调理对Al_3Zr沉淀物的尺寸有重大影响,而较粗的沉淀物与测试过程中的过早失效有关。本文介绍了雾化过程并确定了成功运行必须控制的关键参数。包括产品超塑性性能的摘要。

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