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Process for the production of a semi-molten alloy material for thixo casting

机译:触变铸造用半熔融合金材料的生产方法

摘要

A differential thermal analysis thermograph for a thixocasting aluminum alloy material is such that, a relationship, E1E2, is established between a peak value E1 of a first angled endothermic section generated by eutectic melting and a peak value E2 of a second angled endothermic section generated by melting of an element having a melting point higher than the eutectic point. Thus, a liquid phase produced by the eutectic melting has a large latent heat due to the fact that the peak value E1 of the first angled endothermic section is larger than the peak value E2 of the second angled endothermic section in a semi-molten eutectic aluminum alloy material derived from the thixocasting aluminum alloy material. As a result, in a solidification step of the thixocasting process, a liquid phase produced by the eutectic melting is sufficiently fed around a solid phase in response to the solidification and shrinkage of the solid phase, and then solidified. Thus, it is possible to produce a casting free from defects such as voids on the order of a micron.
机译:用于触变铸造铝合金材料的差示热分析热像图使得在通过共晶熔化产生的第一成角度的吸热段的峰值E1与第二成角度的吸热段的峰值E2之间建立关系E1> E2通过熔化熔点高于共晶熔点的元素而产生的。因此,由于在半熔融共晶铝中第一成角度的吸热段的峰值E1大于第二成角度的吸热段的峰值E2,由共晶熔化产生的液相具有大的潜热。触变铸造铝合金材料衍生的合金材料。结果,在触变铸造过程的固化步骤中,响应于固相的凝固和收缩,将由低共熔熔化产生的液相充分地供给到固相周围。因此,可以生产出无缺陷的铸件,诸如诸如微米级的空隙。

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