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Development of High-Strength High-Speed-Extrudable Mg-Al-Ca-Mn Alloy

机译:高强度高速挤压Mg-Al-Ca-Mn合金的研制

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We investigated the effect of Al content on tensile property and microstructure of Mg-(0.6, 1.1, 1.6)Al-Ca-Mn (wt.%) alloys extruded at an extraordinary high die-exit speed of 60 m/min. All the extruded alloys showed fine grain structure with strong alignment of (0001) planes parallel to the extrusion direction. Especially, the sample containing 1.6 wt.% of Al had stronger alignment of (0001) planes than that of the other alloys. The alloy with 1.6 wt.%Al exhibited the highest ultimate tensile strength of 311 MPa and the proof stress of 284 MPa. However, the addition of 1.6 wt.% Al formed coarse Al-Mn particles and resulted in the low elongation of 16% compared to the other samples. Although the addition of 1.1 wt.% of Al also resulted in the formation of Al-Mn particles, the particle size was smaller, and their number density was lower than those in the sample containing 1.6 wt.% of Al. Therefore, high ultimate tensile strength of 297 MPa, proof stress of 263 MPa, and large elongation of 24% were simultaneously achieved in the sample containing 1.1 wt.% of Al.
机译:我们研究了Al含量对以60 m / min的极高退出速度挤出的Mg-(0.6,1.1,1.6)Al-Ca-Mn(wt。%)合金的拉伸性能和微观结构的影响。所有的挤压合金均表现出细晶粒结构,平行于挤压方向的(0001)平面取向强。尤其是,含有1.6重量%的Al的样品比其他合金具有更强的(0001)面取向。 Al含量为1.6 wt。%的合金表现出最高的最终抗拉强度为311 MPa,屈服强度为284 MPa。然而,与其他样品相比,添加1.6重量%的Al形成粗大的Al-Mn颗粒,并导致16%的低伸长率。尽管添加1.1重量%的Al也导致形成Al-Mn颗粒,但是其粒径较小,并且其数密度低于包含1.6重量%的Al的样品中的那些。因此,在含有1.1重量%的Al的样品中,同时获得了297MPa的高极限拉伸强度,263MPa的屈服强度和24%的大伸长率。

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