Columnar-to-Equiaxed Transition in Metal-Matrix Composites Reinforced with Silicon Carbide Particles

A. Ares, C. Schvezov
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引用次数: 5

Abstract

The present work is focused on the study of the effect of directional heat extraction on the silicon-carbide (SiC) distribution in zinc-aluminum matrix composites (MMCs) and on the columnar-to-equiaxed (CET) position in directionally solidified samples. To this end, a ZA-27 alloy matrix was reinforced with ceramic particles of SiC and vertically directionally solidified. The cooling rates, temperature gradients, and interphase velocities were then measured, and their influence on the solidification microstructure of the MMCs was analyzed. The recalescence detected and measured during the equiaxed transition was of the order of 3.5°C to 1.1°C. The values of the temperature gradients reached a minimum during the CET and were even negative in most cases (between −3.89 K and 0.06 K). The interphase velocities varied between 0.07 mm/s and 0.44 mm/s at the transition. Also, the presence of ceramic particles in ZA-27 alloys affected the thermodynamic local conditions and the kinetics of nucleation, producing a finer microstructure.
碳化硅增强金属基复合材料的柱状向等轴转变
本文主要研究了定向热萃取对锌铝基复合材料(MMCs)中碳化硅(SiC)分布和定向凝固样品中柱-等轴(CET)位置的影响。为此,在ZA-27合金基体中加入SiC陶瓷颗粒并进行纵向固化。然后测量了冷却速率、温度梯度和界面速度,并分析了它们对mmc凝固组织的影响。在等轴转变过程中检测和测量到的复光在3.5°C到1.1°C之间。温度梯度值在CET期间达到最小值,在大多数情况下甚至为负(在- 3.89 K和0.06 K之间)。相变时相间速度在0.07 ~ 0.44 mm/s之间变化。此外,陶瓷颗粒的存在影响了ZA-27合金的局部热力学条件和成核动力学,产生了更精细的微观组织。
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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