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Optimization of the low superheat casting process parameters for producing of thixotropic a 356 alloy feedstock

机译:低热浇铸工艺参数的优化生产触变a 356合金原料

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In the present investigation, low superheat casting (LSC) was employed to produce A356 thixoforming feedstock with athixotropic microstructure. Optimization of the LSCprocess parameterswas carried out to obtain suitable thixotropic feedstock for thixoforming process. The TaguchiÂ??s optimization approach has been employed to examine the influence of the LSC process parameters, typically, pouring temperature and mould material on the microstructural characteristics ofA356 alloys, typically, the average size and shape factor of the primary á-Al grains. The level of significance of the parameters and optimum parameter combination were determined using analysis of variance (ANOVA) approach. Correlations for microstructural characteristics as functions of LSC process parameterswere determined. The results revealed that the mould material is the most influential parameter on both the average grain size and shape factor of the primary á-Al grains. The pouring temperature has lower effect on the aforementioned characteristics than the mould material. There is no interaction between the mould material and pouring temperature. The developed empirical model was successfully used to predict the average grain size and shape factor of the A356 alloy ingots produced using LSC. A356 ingot poured at a pouring temperature of 620 oC in the coppermould exhibited the bestmicrostructural characteristics suitable for thixoforming.
机译:在本研究中,采用低过热度铸造(LSC)生产具有触变微结构的A356触变成型原料。进行了LSC工艺参数的优化,以获得合适的触变原料以用于触变成型工艺。 Taguchi的优化方法已用于检查LSC工艺参数(通常为浇铸温度和铸模材料)对A356合金的显微组织特征(通常为初生Al-Al晶粒的平均尺寸和形状因子)的影响。使用方差分析(ANOVA)方法确定参数的显着性水平和最佳参数组合。确定了与LSC工艺参数有关的微观结构特征的相关性。结果表明,模具材料是主要的α-Al晶粒的平均晶粒尺寸和形状因子上影响最大的参数。浇注温度对上述特性的影响比模具材料低。模具材料和浇注温度之间没有相互作用。发达的经验模型已成功用于预测使用LSC生产的A356合金锭的平均晶粒尺寸和形状因子。在浇铸温度为620 oC的铜模中浇铸的A356铸锭具有适合触变性的最佳显微组织特性。

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