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Effect of grain refining,mould material and pouring temperature on the microstructural characteristics ofAA6063 aluminumalloy feedstocks produced using low superheat casting

机译:晶粒细化,铸模材料和浇铸温度对低过热度铸造AA6063铝合金原料组织性能的影响

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In the present investigation, feedstocks ofAA6063wrought aluminumalloy, with a thixotropicmicrostructure, were prepared using lowsuperheat casting (LSC). The effects of pouring temperature, mould material and the grain refining using Al-5%Ti-1%B master alloy on the microstructural characteristics of AA6063 wrought Al alloy were studied. An optimization of the aforementioned parameterswas carried out using TaguchiÂ??s approach. Moreover, the analysis of variance (ANOVA) statistical approach was carried out to clarify the level of significance of the parameters and their optimum combination. The results revealed that the grain refining has the greatest influence on both the average grain size and shape factor of the primary á-Al grains. Feedstocks poured using the grain refiner exhibited lower size and higher shape factor of á-Al grains than those poured without grain refining. Increasing the pouring temperature slightly increases the average size while reduces the average shape factor of the primary á-Al grains. Feedstocks poured in the copper mould exhibited the lowest average size and highest average shape factor of primary á-Al when compared with feedstocks poured in low carbon steel and stainless steel moulds. The optimum microstructural characteristics suitable for thixoforming was exhibited for grain refinedAA6063 feedstocks poured in the copper mould at 665oC.
机译:在本研究中,使用低过热度铸造(LSC)制备了具有触变微结构的AA6063变形铝合金原料。研究了Al-5%Ti-1%B中间合金的浇铸温度,铸型材料和晶粒细化对AA6063可锻铝合金组织性能的影响。使用Taguchi的方法对上述参数进行了优化。此外,进行了方差分析(ANOVA)统计方法来阐明参数的重要性水平及其最佳组合。结果表明,晶粒细化对原始Al-Al晶粒的平均晶粒尺寸和形状因子的影响最大。与不细化晶粒的原料相比,使用晶粒细化剂灌注的原料显示出更低的尺寸和更高的α-Al晶粒形状因子。升高浇铸温度会略微增加平均尺寸,同时会减小初生Al-Al晶粒的平均形状系数。与倒入低碳钢和不锈钢模具中的原料相比,倒入铜模具中的原料显示出最低的Al-Al平均尺寸和最高的平均形状系数。对于在665oC下倒入铜模具中的晶粒细化的AA6063原料,显示出适合于触变性的最佳显微组织特性。

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