Non-Heat Treatable Al-Alloys: Development of Intermetallic Particles during Solidification and Homogenization

O. Engler, K. Kuhnke, J. Hasenclever
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引用次数: 1

Abstract

The materials properties of Al-alloys are controlled by the added alloying elements and by the processing conditions through the resulting materials microstructure. An important aspect in the description of the microstructure is the constitution of the material in terms of alloying elements in solid solution and, in turn, volume, size, morphology, and species of second-phase particles. These constitutional characteristics, conveniently summarized as microchemistry, have an impact on physical properties like thermal or electrical conductivity and on mechanical properties including strength and formability of Al-alloys. In the present article, we summarize the phase selection upon solidification and the changes in microchemistry during subsequent homogenization annealing during conventional industrial processing of non-heat-treatable Al wrought alloys.
不可热处理铝合金:凝固和均匀化过程中金属间颗粒的发展
铝合金的材料性能是由合金元素的添加和加工条件通过形成的材料显微组织控制的。微观结构描述的一个重要方面是材料在固溶体中的合金元素构成,以及第二相颗粒的体积、尺寸、形态和种类。这些组成特征,方便地概括为微化学,影响着铝合金的物理性能,如导热性或导电性,以及机械性能,包括强度和成形性。在本文中,我们总结了在常规工业加工中不可热处理铝变形合金凝固时的相选择和随后的均匀退火过程中的微化学变化。
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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