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Effect of Ti-B addition on the variation of microporosity and tensile properties of A356 aluminium alloys

机译:Ti-B添加对A356铝合金微孔率和拉伸性能变化的影响

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The variability in the tensile properties of A356 aluminium alloys due to the addition of a Ti-B alloying element was investigated, including the defect susceptibility of the tensile properties to variations in microporosity, as well as the overall grain size, microporosity, and tensile properties of as-cast and T6-treated alloys. The test specimens were fabricated via gravity casting by the addition of the Al-5Ti-1B master alloy to the A356 alloy melt The optimal range of the Ti contents for grain refinement and microporosity reduction was 0.06-0.15 wt% Ti and was maintained, even in T6-treated alloys. The ultimate tensile strength and elongation at the optimal range of Ti contents increased by 50 MPa and 3%, respectively, compared to alloys without Ti. The defect susceptibility of tensile properties to variations in the microporosity was improved using the optimal Ti content, and the maximum values of the tensile properties under defect-free conditions also increased. The constitutive description of the empirical relationship of defect susceptibility suggested that the observed improvement in defect susceptibility in the optimal range of Ti contents was mainly due to an increase in the strain-hardening exponent.
机译:研究了由于添加Ti-B合金元素而引起的A356铝合金拉伸性能的变化,包括拉伸性能对微孔率变化的敏感性,以及总晶粒尺寸,微孔率和拉伸性能。铸造和T6处理的合金。通过在A356合金熔体中添加Al-5Ti-1B中间合金,通过重力铸造法制备试样。用于晶粒细化和微孔降低的Ti含量的最佳范围为0.06-0.15 wt%Ti,并保持均匀在T6处理的合金中。与不含Ti的合金相比,在Ti含量最佳范围内的极限抗拉强度和伸长率分别增加了50 MPa和3%。使用最佳的Ti含量可以改善拉伸性能对微孔率变化的缺陷敏感性,并且在无缺陷条件下,拉伸性能的最大值也会增加。对缺陷敏感性的经验关系的本构描述表明,在最佳的Ti含量范围内观察到的缺陷敏感性的改善主要是由于应变硬化指数的增加。

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