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Development of Novel Squeeze Cast High Tensile Strength Al-Si-Cu-Ni-Sr Alloys

机译:新型挤压铸造高拉伸强度Al-Si-Cu-Ni-Sr合金的发展

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The Taguchi method, as a design of experiment (DOE) technique, was used to develop squeeze cast high strength aluminum alloys containing elements of Si, Cu, Ni and Sr. The designed aluminum-based experimental alloys possess four factors: Si, Cu, Ni and Sr contents with three different levels of weight percentages (Si: 6, 9, 12%, Cu: 3, 5, 7%, Sr: 0.01, 0.02, 0.03% and Ni: 0.5, 1, 1.5%). Tensile properties including ultimate tensile strength, yield strength and elongation at failure were selected as three individual responses to evaluate the engineering performance of the designed alloys. An analysis of the mean of signal-to-noise (S/N) ratio implies that the tensile properties of the tested aluminum alloys are influenced significantly by the levels of the alloying elements in the Taguchi orthogonal array. The optimized major element content for the as-cast high strength aluminum alloy are 9% Si, 7% Cu, 0.03% Sr and 1.0% Ni. The percentage contribution of each factor is determined by the analysis of variance (ANOVA). The results indicate that the contents of Si and Ni are the most significant two factors influencing the tensile properties of the experimented alloys.
机译:TAGUCHI方法作为实验(DOE)技术的设计,用于开发含有Si,Cu,Ni和Sr的元素的挤压铸造高强度铝合金。设计的基于铝的实验合金具有四个因素:Si,Cu, Ni和Sr含量具有三种不同的重量百分比(Si:6,9,12%,Cu:3,5,7%,Sr:0.01,0.02,0.03%和Ni:0.5,1,1.5%)。选择包括极限拉伸强度,屈服强度和故障伸长率的拉伸性能,选择了三种单独的反应,以评估设计合金的工程性能。对信号 - 噪声(S / N)比的平均值的分析意味着测试的铝合金的拉伸性能通过Taguchi正交阵列中的合金元素的水平显着影响。用于铸造高强度铝合金的优化主要元素含量为9%Si,7%Cu,0.03%Sr和1.0%Ni。通过对方差(ANOVA)的分析来确定每个因素的百分比贡献。结果表明,Si和Ni的含量是影响实验合金的拉伸性质的最重要的两个因素。

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