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Formability of Magnesium Alloy Sheets Manufactured by Semi-Solid Roll Strip Casting

机译:半固态辊轧连铸镁合金板材的可成形性

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摘要

An experimental investigation was performed into the formability of magnesium alloy sheets that were hot-rolled after a semi-solid roll strip casting process. Semi-solid forming helps reduce the total product weight if the semi-solid material produced by light metals, such as aluminum and magnesium can be used to replace conventional iron and steel products. However, the problems of utilizing magnesium alloys are still related to high manufacturing costs. This means that improved quality must be balanced by economic validity. Magnesium alloy AZ31B was used in this experiment to ascertain the effectiveness of semi-solid roll strip casting for producing magnesium alloy sheets. The temperature of the molten magnesium, and the roll speeds of the upper and lower rolls, (which could be changed independently), were varied to find an appropriate manufacturing condition. Rolling conditions and heat treatment were changed to examine which condition would be appropriate for producing wrought magnesium alloys with good formability. Microscopic observation of the crystals of the finished products was performed. It has been found that a limiting drawing ratio of 2.4 was possible in a deep drawing process of the cast magnesium alloy sheets.
机译:对半固态轧制薄带连铸工艺后热轧的镁合金薄板的可成形性进行了实验研究。如果可以使用轻金属(例如铝和镁)生产的半固态材料代替常规的钢铁产品,则半固态成型有助于减轻产品总重量。然而,利用镁合金的问题仍然与高制造成本有关。这意味着必须通过经济有效性来平衡提高的质量。在本实验中使用镁合金AZ31B来确定半固态辊式薄带连铸对生产镁合金薄板的有效性。改变熔融镁的温度以及上下辊的速度(可以独立更改),以找到合适的制造条件。改变轧制条件和热处理以检验哪种条件适合于生产具有良好成形性的锻造镁合金。显微镜观察成品晶体。已经发现,在铸造镁合金板的深冲过程中,极限拉拔比为2.4是可能的。

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