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首页> 外文期刊>Journal of Materials Processing Technology >Influence of slow-shot speed on PSPs and porosity of AlSi17Cu2.5 alloy during high pressure die casting
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Influence of slow-shot speed on PSPs and porosity of AlSi17Cu2.5 alloy during high pressure die casting

机译:高压压铸期间慢射速度对Alsi17Cu2.5合金PSP和孔隙率的影响

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摘要

The influence of slow-shot speed on primary silicon particles (PSPs) and porosity of AlSi17Cu2.5 alloy in high pressure die casting (HPDC) was investigated. Both PSPs and porosity were identified in the microstructure. It was found that variation of the slow-shot speed could generate significant influence on both volume fraction and distribution of the PSPs and porosity. The area fraction of PSPs reached a maximum of (similar to)0.19% when the slow-shot speed was 0.05 m/s. An increase of the slow-shot speed could reduce the PSPs content and increase the microstructure heterogeneity, e.g., multiple PSPs-rich and PSPs-free ring-shape regions formed. Detailed feature of the PSPs in casting was highly dependent on the PSPs formed in the shot sleeve. Affected by solidification shrinkage, the volume fraction of the porosity increased exponentially from the surface to the center of the sample. However, the precipitation of PSPs released large amount of latent heat and promoted local feeding of the melt. The porosity decreased abruptly at the PSPs-free region and reached a local minimum at a particular distance from the surface.
机译:研究了研究高压压铸(HPDC)中初级硅颗粒(PSP)对初级硅颗粒(PSP)和孔隙率的影响。在微观结构中鉴定了PSP和孔隙率。发现慢速射频的变化可能会对PSP和孔隙率的体积分数和分布产生显着影响。当慢速速度为0.05米/秒时,PSP的面积分数最多达到(类似)0.19%。慢射速的增加可以降低PSP含量并增加微观结构异质性,例如,形成多个PSP的无富含PSPS的无圈形状区域。铸造中PSP的详细特征高度依赖于拍摄套筒中形成的PSP。受凝固收缩的影响,孔隙率的体积分数从表面到样品的中心呈指数增加。然而,PSP的沉淀释放了大量的潜热并促进了熔体的局部饲料。孔隙率在无巴的区域突然下降,并且在距表面的特定距离处达到局部最小值。

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