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Influence of Vibration Treatment and Modification of A356 Aluminum Alloy on Its Structure and Mechanical Properties

机译:A356铝合金的振动处理和改性对其结构和力学性能的影响

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A series of casting experiments was conducted with A356 aluminum alloys by applying vibration treatment and using Al-TiB 2 composite master alloys. The main vibration effects include the promotion of nucleation and a reduction in as-cast grain size. Using composite master alloys with titanium diboride microparticles allows further reduction in the average grain size to 140 μm. The reasons for this behavior are discussed in terms of the complex effect on the melt, considering the destruction of dendrites, and the presence of additional crystallization centers. Tensile tests were performed on the samples obtained during the vibration treatment and with titanium diboride particles. The tensile strength increased from 182 to 227 MPa after the vibration treatment for the alloys containing titanium diboride.
机译:通过应用振动处理并使用Al-TiB 2复合中间合金,对A356铝合金进行了一系列铸造实验。主要的振动影响包括成核的促进和铸态晶粒尺寸的减小。使用具有二硼化钛微粒的复合中间合金可以将平均晶粒尺寸进一步减小至140μm。从对熔体的复杂影响,考虑到树枝状晶体的破坏以及存在其他结晶中心的角度讨论了这种行为的原因。对在振动处理期间获得的样品和二硼化钛颗粒进行拉伸测试。含二硼化钛的合金经振动处理后,抗拉强度从182 MPa增加到227 MPa。

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