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首页> 外文期刊>Frattura e Integrita Strutturale >Evaluation of cavitation erosion resistance of Al-Si casting alloys: effect of eutectic and intermetallic phases
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Evaluation of cavitation erosion resistance of Al-Si casting alloys: effect of eutectic and intermetallic phases

机译:Al-Si铸造合金抗气蚀性的评估:共晶和金属间相的影响

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摘要

In the present paper, the influence of eutectic and intermetallic phases on cavitation resistance of Al-Si alloys was studied. In fact, Al-Si alloys are commonly used for the production of components, such as cylinders, pistons, pumps, valves and combustion chambers, which in service may incur in cavitation phenomenon. Samples of AlSi3, AlSi9 and AlSi9CuFe were characterized from the microstructural point of view. Hardness measurements were also performed. Subsequently, cavitation tests were carried out according to ASTM G32 standard and the erosion mechanism was examined by scanning electron microscope. It was found the both eutectic and intermetallic phases enhance cavitation resistance, expressed in terms of mass loss. Particularly, intermetallic particles with complex morphologies provide a positive contribution, exceeding that of other microstructural features, as grain size. The effect of T6 heat treatment was also evaluated. It was confirmed that the precipitation of fine strengthening particles in the Al matrix successfully hinders the movement of dislocations, resulting in a longer incubation stage and a lower mass loss for heat-treated samples in comparison with as-cast ones. Finally, the relationship between cavitation resistance and material hardness was investigated.
机译:本文研究了共晶和金属间相对Al-Si合金抗气蚀性的影响。实际上,Al-Si合金通常用于生产零件,例如气缸,活塞,泵,阀和燃烧室,在使用中可能会产生气蚀现象。从微观结构的角度对AlSi3,AlSi9和AlSi9CuFe的样品进行了表征。还进行了硬度测量。随后,根据ASTM G32标准进行空化测试,并通过扫描电子显微镜检查腐蚀机理。发现共晶相和金属间相均增强了抗气蚀性,以质量损失表示。特别是,具有复杂形貌的金属间颗粒作为晶粒尺寸的贡献超过了其他微结构特征。还评估了T6热处理的效果。可以确定的是,铝基体中细小强化颗粒的沉淀成功地阻止了位错的移动,与铸态样品相比,热处理样品的孵育时间更长,质量损失更低。最后,研究了抗气蚀性与材料硬度之间的关系。

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