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Laser Shock Peening of SiCp/2009Al Composites: Microstructural Evolution Residual Stress and Fatigue Behavior

机译:SICP / 2009AL复合材料激光冲击喷丸:微观结构演化残余应力和疲劳行为

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摘要

SiC particle reinforced aluminum alloy has a wide application in the aerospace industries. In this study, laser shock peening (LSP), an advanced surface modification technique, was employed for SiCp/2009Al composite to reveal its microstructure, microhardness and residual stress evolution. After peening, high densities of dislocations were induced in the aluminum substrate, and stacking faults were introduced into the SiC particle. The microhardness was increased from 155–170 HV to 170–185 HV, with an affected depth of more than 1.5 mm. Compressive residual stresses of more than 200 MPa were introduced. The three-point bending fatigue of the base material, laser peened and milled after laser peened specimens with artificial crack notch fabricated by a femtosecond laser was investigated. The average fatigue lives of laser peened and milled after laser peened specimens were increased by up to 10.60 and 2.66 times, compared with the base material. This combined fundamental and application-based research seeks to comprehensively explore the applicability of LSP on metal matrix composite.
机译:SIC颗粒增强铝合金在航空航天工业中具有广泛的应用。在本研究中,用于SICP / 2009AL复合材料的激光冲击喷丸(LSP),一种先进的表面改性技术,以揭示其微观结构,微硬度和残余应力进化。在喷丸化之后,在铝基衬底中诱导高密度的脱位,并将堆叠故障引入SiC颗粒中。微硬度从155-170 HV升至170-185HV,受影响的深度大于1.5毫米。介绍了超过200MPa的压缩残余应力。研究了基材的三点弯曲疲劳,激光喷射和研磨后激光喷丸试样,由飞秒激光器制造的人工裂纹凹口进行碎片。与基材相比,激光喷丸试样在激光喷丸试样后激光和研磨的平均疲劳寿命增加到10.60和2.66倍。基于基于基础和应用的研究旨在全面探讨LSP对金属矩阵复合材料的适用性。

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