Assessment of circumferential cracks in hypereutectic Al-Si clutch housings

M. Haghshenas , J. Jamali
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引用次数: 22

Abstract

As in situ natural composites with silicon phase acting as the reinforcing phase, Al-Si alloys are among most commonly used aluminum alloys in automotive applications (i.e. engine component). Silicon contributes to the strength of Al-Si alloys through load transfer from the Al matrix to the hard (rigid) Si phase in the microstructure (load-carrying capacity). Casting parameters (i.e. solidification rate, elemental segregation, secondary dendrite spacing…) as well as the size and distribution of the microstructural constituents in Al-Si alloys (i.e. morphology of Si particles, intermetallic compounds, secondary dendrite spacing) contribute directly to the mechanical response and failure (or fracture) behavior of the alloy within the service. In hyper-eutectic Al-Si alloys (i.e. B390.0), distribution of coarse pre-eutectic Si particle mainly contribute to stress concentration, crack initiation and propagation during the actual service condition. In the present paper, the parameters contribution to the formation of the circumferential cracks in clutch housings made of die cast hyper-eutectics B390.0 Al-Si alloys are assessed through optical microscopy and scanning electron microscopy. Casting variable, cooling rate, their effect on the cracks as well some of the possible causes are also discussed in detail.

过共晶Al-Si离合器壳体周向裂纹的评定
铝硅合金是一种以硅相作为增强相的原位天然复合材料,是汽车(即发动机部件)中最常用的铝合金之一。硅通过载荷从Al基体转移到微观结构中的硬(刚性)Si相(承载能力)来提高Al-Si合金的强度。铸造参数(即凝固速率、元素偏析、二次枝晶间距……)以及Al-Si合金中微观组织成分的尺寸和分布(即Si颗粒的形貌、金属间化合物、二次枝晶间距)直接影响合金在使用中的机械响应和失效(或断裂)行为。在过共晶Al-Si合金(即B390.0)中,粗的预共晶Si颗粒的分布是实际使用过程中应力集中、裂纹萌生和扩展的主要原因。本文通过光学显微镜和扫描电镜研究了压铸过共晶B390.0铝硅合金离合器轴套周向裂纹形成的影响因素。还详细讨论了铸造变量、冷却速率及其对裂纹产生的影响以及可能的原因。
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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