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Study on the Filtering Purification of AZ91 Magnesium Alloy

机译:AZ91镁合金的过滤纯化研究

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摘要

High quality magnesium casting depends significantly on the purification of its alloy melt. However, it is very difficult to obtain high-quality magnesium alloy melt due to its high reactivity and its tendency of combustion. The fluxing processing, a traditional purification method for magnesium melt, not only bears the risk of flux inclusions but also is facing more and more environmental pressure today. Therefore, the effective substitutes for fluxing processing, such as physical filtering method, are paid more attention recently. In this paper, the effects of technological conditions including the pore size of stainless steel mesh and the filtering temperature on the purification degree of AZ91 alloy melt were investigated in the mesh filtering processing, in which 2 wt.% calcium was added into the melt in order to obtaining ignition-proof property. The results indicated that mesh filtering processing could improve the purification degree markedly, and the purification degree increased with the increase of filtering temperature properly or the decreased of pore size of mesh. However, too high filtering temperature would lead to the increasing of the tendency of oxidation and combustion, and too small pore size would decrease the filtering ability of mesh which would lead to the interrupting of purification operation.
机译:高质量的镁铸件在很大程度上取决于其合金熔体的纯化。然而,由于其高的反应性和燃烧的趋势,很难获得高质量的镁合金熔体。熔剂加工是镁熔体的一种传统提纯方法,不仅承担着熔剂夹杂物的风险,而且还面临着越来越多的环境压力。因此,近来越来越关注诸如助熔剂处理的有效替代品,例如物理过滤方法。本文研究了在筛网过滤工艺中,向筛网中加入2 wt。%钙的过程,包括不锈钢网孔尺寸和过滤温度等工艺条件对AZ91合金熔体提纯程度的影响。为了获得防燃性能。结果表明,筛孔过滤工艺可以显着提高提纯度,并且随着过滤温度的升高或筛孔孔径的减小,提纯度逐渐提高。然而,过高的过滤温度将导致氧化和燃烧趋势的增加,而过小的孔径将降低筛孔的过滤能力,这将导致纯化操作的中断。

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