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首页> 外文期刊>Transactions of the American Foundrymen's Society >Effect of Processing Parameters on Mold Filling in Magnesium Alloy EPC Process
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Effect of Processing Parameters on Mold Filling in Magnesium Alloy EPC Process

机译:镁合金EPC工艺中工艺参数对充型的影响

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摘要

The combination of the lightest structural magnesium alloys with the expendable pattern casting (EPC) process will bring a bright future for magnesium applications. In this paper, a pioneering effort has been made to fully explore the effects of vacuum and other processing parameters, including the coating permeability, the thickness of coating, the pouring temperature, the gating system structure and the foam density on the fluidity of AZ91 magnesium alloy. The results obtained indicate that vacuum is the most effective parameter to improve the fluidity, which also have a strong interactive effect with the pouring temperature and coating. The fluidity increases with adopting of high permeability coating, and increasing pouring temperature, vacuum, the pattern width and thickness; while decreases with increasing the coating thickness and foam density. When the unchoked gating system is adopted and vacuum is applied, the fluidity decreases with increasing distance between the ingate and the downsprue; otherwise, the effect of gating system structure on the fluidity is insignificant.A modified model had been established to illustrate the effect of vacuum on the mold filling, which was analyzed by optical microscopy in the paper. The vacuum greatly changes the mass and heat transfer process: vacuum applied not only determines the profile of metal-foam interface which influences the mass transfer process, but also greatly speeds up the removing rate of pattern decomposition products at the metal-coating interface; it also changes the primary heat transfer mode to heat convention and have a great influence on the casting temperature field distribution and solidification process.
机译:最轻的结构镁合金与可膨胀模铸(EPC)工艺的结合将为镁应用带来光明的未来。本文为开拓真空和其他工艺参数(包括涂层渗透性,涂层厚度,浇注温度,浇铸系统结构和泡沫密度)对AZ91镁流动性的影响做出了开创性工作。合金。所得结果表明,真空是提高流动性的最有效参数,并且与浇注温度和涂层也有很强的相互作用。流动性随着采用高渗透性涂层,浇注温度,真空度,图案宽度和厚度的增加而增加;而随着涂层厚度和泡沫密度的增加而降低。当采用非阻塞式浇口系统并施加真空时,流动性随着入口和下浇道之间距离的增加而降低;建立了改进的模型来说明真空对模具填充的影响,并通过光学显微镜对其进行了分析,从而建立了修改后的模型,以说明浇口系统结构对流动性的影响。真空极大地改变了传质和传热过程:施加的真空不仅决定了金属泡沫界面的形状,从而影响传质过程,而且极大地加快了金属涂层界面上图形分解产物的去除速度。它也将主要的传热方式改变为传热方式,对铸造温度场的分布和凝固过程有很大的影响。

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