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首页> 外文期刊>Journal of Materials Processing Technology >Effect of super vacuum assisted high pressure die casting on the repeatability of mechanical properties of Al-Si-Mg-Mn die-cast alloys
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Effect of super vacuum assisted high pressure die casting on the repeatability of mechanical properties of Al-Si-Mg-Mn die-cast alloys

机译:超真空辅助高压压铸对Al-Si-Mg-Mn压铸合金机械性能重复性的影响

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摘要

Two-stage super vacuum (19 mbar) assisted high pressure die casting (HPDC) was achieved by evacuating from the die cavity and the shot sleeve simultaneously. The effect of super vacuum assisted HPDC on the repeatability of the tensile properties of Al-Si-Mg-Mn die-cast alloy was investigated in comparison with conventional HPDC. The quantitative Weibull analysis confirmed that super vacuum assisted HPDC improved the repeatability of the tensile properties of the alloy. The data and deviation analysis verified that super vacuum assisted HPDC considerably decreased the fluctuations of the ductility of the alloy by 71% in as-cast state and 84% after solution and ageing treatment The results also showed that super vacuum assisted HPDC improved the ultimate tensile strength and ductility of the as-cast alloy by 5.6% and 43%, respectively, and increased the ductility of the alloy by 21% after solution and ageing treatment. The significant improvements of ductility and the repeatability of tensile properties were originated from the decrease of porosity volume fraction and porosity size in the alloy processed by super vacuum assisted HPDC. The reduction of defect size can improve the stress distribution and retard the crack initiation in castings. Therefore, the tensile strength and ductility were enhanced in the die-cast alloy processed by super vacuum assisted HPDC.
机译:通过同时从模腔和喷射套筒抽空来实现两级超真空(19毫巴)辅助高压压铸(HPDC)。研究了超级真空辅助HPDC对常规HPDC的比较研究了对Al-Si-Mg-Mn压铸合金的拉伸性能的可重复性的影响。定量Weibull分析证实,超级真空辅助HPDC改善了合金的拉伸性能的可重复性。数据和偏差分析证明了超级真空辅助HPDC显着降低了合金的延展性的波动在溶液和老化处理后的84%,结果还显示出超级真空辅助HPDC改善了最终的拉伸溶液和延展合金的强度和延展性分别为5.6%和43%,并在溶液和老化处理后增加了21%的合金的延展性。延展性的显着改善和拉伸性能的可重复性起源于通过超真空辅助HPDC加工的合金中的孔隙体积分数和孔隙率尺寸的降低。缺陷尺寸的降低可以改善应力分布并延迟铸件中的裂纹引发。因此,通过超真空辅助HPDC处理的压铸合金中增强了拉伸强度和延展性。

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