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Microstructure evolution and enhanced mechanical properties of eutectic Al-Si die cast alloy by combined alloying Mg and La

机译:Mg和La的合金化共晶Al-Si压铸合金的组织演变和增强的力学性能

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摘要

In this paper, an efficient route that combined addition of excessive Mg (3.6 wt.%) and a trace of La (0.5 wt.%) as well as subsequent T6 heat treatment has been first proposed to modify the detrimental platelet-like β-Al_5FeSi Fe-rich intermetallic to valuable granular-like π-Al_8Mg_3FeSi_6 phase in eutectic Al-Si die alloys. The results of the DSC analysis revealed that majority of Mg play the leading role for precipitation of large script-like π-phase while rare earth La has the significant effect on modifying the eutectic Si phase simultaneously. A new phenomenon has been found that the morphology of the π-phase transformed from the script-like to fine granular-like by two main stages, including fragmentation and growth during solution treatment By calculation, the coarsening rate coefficient of the segmented n-phase was about 2.9 × 10~(-19) m~3/h during growth stage. The tensile testing measurements showed that the ultimate tensile strength (UTS), yield strength (YS), elongation to fracture (El) and the quality index (Q) of T6 treated eutectic Al-Si die alloys alloying with 3.6 wt.% Mg and 0.5 wt.% La can reach 312 MPa, 270 MPa, 4.28% and 406 MPa respectively, and the enhanced mechanical properties corresponding to the evolution of the microstructure.
机译:在本文中,首先提出了一种有效的方法,该方法将过量的Mg(3.6 wt。%)和痕量的La(0.5 wt。%)的添加以及随后的T6热处理相结合来修饰有害的血小板样β- Al_5FeSi富铁金属间化合物,形成共晶Al-Si模具合金中有价值的颗粒状π-Al_8Mg_3FeSi_6相。 DSC分析的结果表明,大部分Mg在大的脚本状π相的析出中起主导作用,而稀土La对同时改变共晶Si相具有显着的影响。发现了一种新的现象,即π相的形态从脚本状转变为细颗粒状,经历了两个主要阶段,包括固溶处理过程中的破碎和生长。通过计算,分段n相的粗化率系数在生长阶段约为2.9×10〜(-19)m〜3 / h。拉伸测试测量结果表明,与质量分数为3.6%(重量)的Mg和0.5%(重量)的T6处理过的Al-Si共晶Al-Si模具合金的极限拉伸强度(UTS),屈服强度(YS),断裂伸长率(El)和质量指数(Q) 0.5wt。%的La可分别达到312MPa,270MPa,4.28%和406MPa,并且增强的机械性能对应于微观结构的演变。

著录项

  • 来源
    《Materials & design》 |2016年第1期|820-828|共9页
  • 作者单位

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

    Key Lab. for New Type of Functional Materials in Hebei Province, Hebei University of Technology, Tianjin 300130, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Casting; Aluminum alloys; Fe-rich intermetailics; Microstructure; Mechanical characterization; Fracture behavior;

    机译:铸件;铝合金;富铁中间合金;微观结构机械特性断裂行为;

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