首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Process Design of Warm-Forging with Extruded Mg-8Al-0.5 Zn Alloy for Differential Case in Automobile Transmission
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Process Design of Warm-Forging with Extruded Mg-8Al-0.5 Zn Alloy for Differential Case in Automobile Transmission

机译:Mg-8Al-0.5 Zn合金挤压成形汽车变速箱温锻工艺设计

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This paper mainly concerns a warm-forging with Mg-8Al-0.5Zn alloy for the differential case which covers differential gears in the transmission assembly of the automobile. The optimum forging process has been proposed with numerical simulations, which has been validated and compared with experiments conducted in the 1600-ton press shop. In order to validate the applicability of the Mg differential case into the automobile, its microstructure including texture evolution and mechanical properties in tension and compression have been analyzed It does not only show substantial light-weight design in the total weight of 50% compared with conventional ductile iron, but also demonstrate the net-shape in the outer surface as well as internal volume. However, insufficient mechanical properties and tension-compression asymmetry of the Mg-8Al-0.5Zn differential case are huge obstacles in adopting Mg alloys into the automobile parts, successfully.
机译:本文主要涉及用Mg-8Al-0.5Zn合金对差速器壳进行热锻,该差速器壳覆盖了汽车变速箱总成中的差速器齿轮。已经通过数值模拟提出了最佳的锻造工艺,并已在1600吨压机车间进行的实验进行了验证和比较。为了验证镁质差速器箱在汽车中的适用性,分析了其微结构,包括织构演变以及拉伸和压缩时的机械性能。与常规相比,轻量化设计的总重量不仅达到了50%球墨铸铁,但在外表面和内部体积上也显示出网状形状。然而,Mg-8Al-0.5Zn差速器壳的机械性能不足和拉伸-压缩不对称是成功地将Mg合金应用于汽车零件的巨大障碍。

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