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Alloy Design for Enhancing the Fracture Resistance of Heat Treated High Pressure Die-Castings

机译:增强热处理高压压铸件抗断裂性的合金设计

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Recently, heat treatment technologies have been developed by the CSIRO Light Metals Flagship in Australia that allow the 0.2% proof stress of conventional aluminum alloy high pressure diecastings (HPDC's) to be more than doubled without encountering problems with blistering or dimensional instability [1,2]. A range of other properties may also be improved such as fatigue resistance, thermal conductivity and fracture resistance. However, the current commercial HPDC Al-Si-Cu alloys have not been developed to exploit heat treatment or to optimize these specific mechanical properties, and one potential limitation of heat treating HPDC's is that fracture resistance may be reduced as strength is increased. The current paper presents the outcomes of a program aimed at developing highly castable, secondary Al-Si-Cu HPDC alloys which display significantly enhanced ductility and fracture resistance in both the as-cast and heat treated conditions. Kahn-type tear tests were conducted to compare the fracture resistance of the conventional A380 alloy with a selection of the newly developed compositions. A comparison has also been made with the current permanent mold cast aluminium alloys and it is shown that the new HPDC compositions typically display higher levels of both tensile properties and fracture resistance.
机译:最近,澳大利亚CSIRO轻金属旗舰公司开发了热处理技术,该技术可使传统铝合金高压压铸件(HPDC)的0.2%屈服极限应力增加一倍以上,而不会遇到起泡或尺寸不稳定性的问题[1,2] ]。其他性能的范围也可以得到改善,例如抗疲劳性,导热性和抗断裂性。然而,当前的商业HPDC Al-Si-Cu合金尚未开发用于利用热处理或优化这些特定的机械性能,并且热处理HPDC的潜在限制之一是随着强度的增加抗断裂性可能降低。本论文介绍了旨在开发高度可铸造的二次Al-Si-Cu HPDC合金的计划的成果,该合金在铸态和热处理条件下均具有显着增强的延展性和抗断裂性。进行了卡恩(Kahn)型撕裂试验,以比较常规A380合金的抗断裂性和选择的新开发成分。还与当前的永久铸模铝合金进行了比较,结果表明,新的HPDC组合物通常显示出更高水平的拉伸性能和抗断裂性。

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