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A Taguchi optimization of cooling slope casting process parameters for production of semi-solid A356 alloy and A356-5TiB2 in-situ composite feedstock

机译:半固体A356合金生产冷却斜坡铸造工艺参数的Taguchi优化,A356-5Tib2原位复合原料

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The cooling slope technique is the oncoming semi-solid process. The primary objective of this research is to optimize the process parameters of the cooling slope casting process and to generate the semi-solid feedstock suitable for thixoforming process.Taguchi design of experiments methodology has been employed to examine the effects of process parameters mainly the pouring temperature, slope angle and cooling length on the hardness behavior of A356 alloy processed by cooling slope casting route. The optimum parameter combination was obtained by using the analysis of signal-to-noise (S/N) ratio with hardness of semi-solid A356 alloy as the response variable. The level of importance of the parameters on the hardness determined by analysis of variance (ANO VA) resulted in the optimal values of 640 °C pouring temperature, at a slope angle of 60° and 300 mm cooling length for higher hardness of the alloy and composites. The pouring temperature was the most influential parameter on the hardness of the semi-solid feedstock generated by cooling slope casting route.
机译:冷却斜率技术是迎面而来的半固体工艺。这项研究的主要目标是优化冷却斜率铸造过程的工艺参数和产生适合于触变的实验方法学process.Taguchi设计已被用来检查的过程参数的影响主要浇注温度的半固体原料冷却斜率铸造路径加工A356合金硬度行为的倾斜角度和冷却长度。通过使用半固体A356合金硬度的信号对噪声(S / N)比作为响应变量来获得最佳参数组合。通过分析方差分析(ANO VA)确定的硬度的参数的重要性导致640℃的最佳值,以60°和300mm的倾斜角度,冷却长度为合金的更高硬度和复合材料。浇注温度是通过冷却斜率铸造途径产生的半固体原料硬度最有影响力的参数。

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