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Mechanical Vibration Technique for Enhancing Mechanical Properties of Particulate Reinforced Aluminium Alloy Matrix Composite

机译:机械振动技术,提高颗粒增强铝合金基复合材料的力学性能

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摘要

The effects of subjecting solidifying particulate reinforced aluminium alloy matrix composite to various sources of vibration on the resulting casting quality, a mechanical vibration technique for inducing vibration resulting in enhanced mechanical properties, such as impact properties is devised. TiC particulate reinforced LM6 alloy matrix composites are fabricated by different particulate weight fraction of titanium dioxide and microstructure studies were conducted to determine the impact strength and density, respectively. Preliminary works show that the mechanical properties have been improved by using vibration mold during solidification compared to gravity castings without vibration.
机译:设计了使固化的颗粒状增强铝合金基复合材料经受各种振动源对所得铸件质量的影响,设计了一种机械振动技术,该机械振动技术引起振动,从而增强了机械性能,例如冲击性能。 TiC颗粒增强的LM6合金基体复合材料是由不同的二氧化钛颗粒重量分数制成的,并进行了微结构研究,分别确定了冲击强度和密度。初步工作表明,与没有振动的重力铸造相比,通过在固化过程中使用振动铸模可以改善机械性能。

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