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Microstructure, Tensile Properties and Fracture Behavior of Squeeze-Cast Mg Alloy AZ91 with Thick Cross Section

机译:挤压铸造镁合金AZ91具有厚截面的微观结构,拉伸性能和断裂行为

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摘要

As the most popular magnesium alloy, AZ91 is desired in the automotive-related manufacturing industry because of its high specific strength and good corrosion resistance. AZ91-based automotive components are made by conventional high-pressure die casting (C-HPDC) and are unable to provide adequate mechanical properties to components with heavy cross sections because of the high level of gas and shrinkage porosity in C-HPDC parts. To expand the usage of AZ91, a replacement for the C-HPDC to minimize the porosity content is needed. In this research, Mg alloy AZ91 with a cross-sectional thickness of 10 mm was squeeze cast (SC) under an applied pressure of 90 MPa. A counterpart was made by C-HPDC for comparison with SC AZ91. The porosity of the SC and C-HPDC AZ91 specimens was evaluated by optical microscopy and density measurements. The SC AZ91 was almost pore free, whereas the counterpart had a porosity of 3.57%. Microstructural analyses by scanning electron microscopy showed that the SC and C-HPDC AZ91 contained phases of primary alpha-Mg, beta-Mg(17)Al(12)eutectic and Al-Mn intermetallic. Tensile testing indicated that the ultimate tensile strength and elongation (e(f)) of the SC alloy were 171.7 MPa and 3.0%, which resulted in improvements of 33 and 77% compared with those of the C-HPDC counterpart. The strain-hardening rate and tensile toughness of the SC AZ91 during deformation were higher than those of the HPDC specimen. SEM fractography revealed characteristics of plastic deformation on the flat fractured surface of the SC AZ91, whereas brittle fracture prevailed on the HPDC counterpart.
机译:作为最受欢迎的镁合金,由于其高比强度和良好的耐腐蚀性,在汽车相关的制造业中需要AZ91。基于AZ91的汽车组件由常规的高压压铸(C-HPDC)制成,并且由于C-HPDC部件中的气体和收缩孔隙率,不能为具有重横截面的组分提供足够的机械性能。为了扩展AZ91的使用,需要对C-HPDC进行最小化孔隙率的替代品。在该研究中,横截面厚度为10mm的Mg合金AZ91在90MPa的施加压力下挤压铸造(SC)。 C-HPDC制备了对应物,以与SC AZ91进行比较。通过光学显微镜和密度测量评估SC和C-HPDC AZ91样本的孔隙率。 SC AZ91几乎没有自由,而对应物的孔隙率为3.57%。通过扫描电子显微镜的微观结构分析表明,SC和C-HPDC AZ91含有伯α-Mg,β-Mg(17)Al(12)共晶和Al-Mn金属间化合物的相。拉伸试验表明,与C-HPDC对应的那些,SC合金的极限拉伸强度和伸长率(e(e))为171.7MPa和3.0%,导致33和77%的改善。变形期间SC AZ91的应变 - 硬化速率和拉伸韧性高于HPDC样本。 SEM Fractography揭示了SC AZ91的平坦骨折表面上的塑性变形特征,而HPDC对应于脆性骨折普遍存在。

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