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Finite Element Simulation Study of Ultrasonic Vibration-Assisted Tensile High-Volume Fraction SiCp/Al Composite

机译:超声振动辅助拉伸高体积分数SiCp / Al复合材料的有限元模拟研究

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摘要

Silicon carbide particle-reinforced aluminum matrix composite (SiCp/Al) has been widely used in the military and aerospace industry due to its special performance; however, there remain many problems in the processing. The present paper introduces an ultrasonic vibration tensile apparatus and a composite tensile specimen and performs Abaqus finite element simulation on high-volume SiCp/Al. The results show that the stress-strain curve increases linearly during conventional tensile strength; the intermittent vibration tensile strength is similar to the full course vibration tensile strength: The magnitude of the stress reduction increases as the amplitude of the ultrasound increases and the vibration frequency increases. The tensile rate is inversely proportional to the magnitude of the stress reduction, and in the ultrasonic parameters, the amplitude has the greatest influence on the magnitude of the stress reduction, followed by the tensile rate; additionally, the frequency has the least influence on the magnitude of the stress reduction. The experimental results show that the simulation results are consistent with the experimental results.
机译:碳化硅颗粒增强铝基复合材料(SiCp / Al)由于其独特的性能已广泛用于军事和航空航天工业。但是,在处理中仍然存在许多问题。介绍了一种超声波振动拉伸设备和复合拉伸试样,并对大体积SiCp / Al进行了Abaqus有限元模拟。结果表明,在常规拉伸强度下,应力-应变曲线呈线性增加。间歇振动拉伸强度类似于全过程振动拉伸强度:应力减小的幅度随着超声幅度的增加和振动频率的增加而增加。拉伸速率与应力减小的大小成反比,在超声参数中,振幅对应力减小的大小影响最大,其次是拉伸速率。此外,频率对应力降低幅度的影响最小。实验结果表明,仿真结果与实验结果吻合。

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