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Experimental Study on Laser Shock Peening of AZ31B Magnesium Alloy Sheet

机译:AZ31B镁合金薄板激光冲击强化的实验研究

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Typical specimens of AZ31B Magnesium alloy were processed by single point and continuous laser shock peening (LSP). The selected laser energy was 25 J, spot diameter was 8 mm, peening spacing was 8 mm and peening times were 2. The obtained value of residual compressive stresses were -144.3 Mpa and -230 Mpa for single and continuous LSP respectively, and the magnitude of residual stress was in direct proportion to the depth of deformation in definite micro-deformation range. The average surface micro-hardness in the laser spot zone was 92.42 HV, which increased by 26% as compared to 73.2 HV of substrate, the depth of hardened layer was about 0.3 mm, and the maximum micro-hardness was about 109.86 HV beneath surface of 0.05~0.075 mm. Large amount of crystal chunks appeared at the crystal grain boundaries and inside the grains, and the average grain size decreased from the untreated 7 μm to the peened 4 μm. The results show that the nucleation of fatigue crack can be retarded and the mechanical properties of AZ31B magnesium alloy sheet can be improved greatly with LSP process.
机译:通过单点和连续激光冲击喷丸(LSP)对AZ31B镁合金的典型试样进行处理。选择的激光能量为25 J,光斑直径为8 mm,喷丸间距为8 mm,喷丸时间为2。对于单个LSP和连续LSP,残余压缩应力的获得值分别为-144.3 Mpa和-230 Mpa,其幅值在一定的微变形范围内,残余应力的变化与变形深度成正比。激光光斑区域的平均表面显微硬度为92.42 HV,比基板的73.2 HV增加了26%,硬化层的深度约为0.3 mm,表面下的最大显微硬度约为109.86 HV 0.05〜0.075毫米。大量的晶体块出现在晶粒边界和晶粒内部,并且平均晶粒尺寸从未处理的7μm减小到喷丸的4μm。结果表明,采用LSP工艺可以有效地缓解疲劳裂纹的形核,并显着改善AZ31B镁合金薄板的力学性能。

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