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Comparison of mechanical properties of die cast aluminium alloys: cold v. hot chamber die casting and high v. low speed filling die casting

机译:压铸铝合金的机械性能比较:冷v。热室压铸和高v。低速填充压铸

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In this paper, the mechanical properties of die cast aluminium alloys made by various die casting technologies were examined. To create high quality aluminium alloy die castings, two die casting processing technologies were employed. These were (a) ultra slow speed filling cold chamber die casting and (b) high speed hot chamber die casting. Significant improvements of the fatigue and mechanical properties were obtained for both die casting systems compared to the normal high speed cold chamber die casting technique. By comparing ultra slow die casting with hot chamber die casting, it was found that the fatigue and mechanical strengths from hot chamber die casting were higher than those for ultra slow filling die casting. The differences in material strength were attributed directly to the material properties, e.g. microstructural morphology and internal defects. Spherical fine dendritic cells in the hot chamber die casting sample gave rise to high fatigue crack growth resistance; the low crack growth resistance for cold chamber die cast aluminium is mostly due to the growth of aluminium rich a phase and the presence of eutectic silicon fibres. The fatigue strength was also related to the number of internal defects, e.g. the lower the defect rate on the fracture surface, the higher the fatigue resistance and mechanical strength. The characteristics of the principal internal defect were different depending on the die casting technology: this showed fine porosity for hot chamber die casting but solidification shrinkage and the scattered chill structure for slow and high speed cold chamber die castings. The reasons for the change of material strength were therefore influenced by the die casting process.
机译:本文研究了通过各种压铸技术制造的压铸铝合金的机械性能。为了制造高质量的铝合金压铸件,采用了两种压铸加工技术。这些是(a)超慢速填充冷室压铸和(b)高速热室压铸。与正常的高速冷室压铸技术相比,两种压铸系统均获得了疲劳和机械性能的显着改善。通过将超慢速压铸件与热室压铸件进行比较,发现热室压铸件的疲劳强度和机械强度高于超慢速填充压铸件的疲劳强度和机械强度。材料强度的差异直接归因于材料特性,例如显微组织形态和内部缺陷。热室压铸样品中的球形细枝状晶胞产生了较高的抗疲劳裂纹扩展能力。冷室压铸铝的低裂纹扩展阻力主要是由于富铝a相的生长以及共晶硅纤维的存在。疲劳强度还与内部缺陷的数量有关。断裂表面的缺陷率越低,抗疲劳性和机械强度越高。内部主要缺陷的特征因压铸技术而异:热室压铸件显示出良好的孔隙率,而慢速和高速冷室压铸件显示出凝固收缩和分散的冷硬结构。因此,材料强度变化的原因受到压铸工艺的影响。

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