Superplastic Behaviour of Selected Magnesium Alloys

Z. Trojanová, Z. Drozd, P. Lukáč
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引用次数: 5

Abstract

Superplastic materials exhibit anomalous plasticity, achieving strain until several thousand per cent. The phenomenon of plasticity is limited on special microstructure, temperatures and strain rates. Magnesium and magnesium alloys are known as materials with limited plasticity. This is due to their hexagonal structure of these materials. Finding the superplasticity conditions has a crucial importance for applications of magnesium alloys. In this chapter, we will deal with the superplastic behaviour of AZ91, QE22, AE42 and EZ33 magnesium alloys. Materials were prepared by various techniques: thermomechanical treatments, equal channel angular pressing, hot extrusion, rolling, friction stirring and high-pressure torsion. Strain rate sensitivity and elongation to fracture were estimated at various temperatures. Mechanisms of superplastic flow are discussed. Grain boundary sliding and diffusional processes were depicted as the main mechanisms responsible for high plasticity of these alloys. On the other hand, cavitation at elevated temperatures deteriorates the superplastic properties.
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选定镁合金的超塑性行为
超塑性材料表现出异常的塑性,可达到几千%的应变。塑性现象受特殊微观结构、温度和应变速率的限制。镁和镁合金被认为是塑性有限的材料。这是由于这些材料的六边形结构。寻找镁合金的超塑性条件对镁合金的应用具有重要意义。在本章中,我们将讨论AZ91、QE22、AE42和EZ33镁合金的超塑性行为。材料的制备工艺包括:热处理、等径角压、热挤压、轧制、摩擦搅拌和高压扭转。计算了不同温度下的应变率灵敏度和断裂伸长率。讨论了超塑性流动的机理。晶界滑动和扩散过程是这些合金具有高塑性的主要机制。另一方面,高温下的空化会使材料的超塑性性能恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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