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A Study on Single-Crystal Alloy Surface's Structure and Performance of Laser Shock Peening without Absorbent Coating

机译:单晶合金表面的结构和激光休克喷丸性能性能的研究

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in order to determine how the laser shock peening without absorbent coating (LSPwC) affects Ni-base single-crystal superalloy, DDI 1, the surface structure and hardness gradient of single-crystal alloy after LSPwC of two pulse energies. The result shows that the width of linear structure is in direct proportion to the laser impact energy by observing the "linear" deformed structure through the scanning electron microscope, and the linear structure's length increases when the pulse energy increases from 3 J to 5 J; the observation by the transmission electron microscope at x 10000 show s that the linear structure is actually the "line cluster" formed by more than one parallel "fine lines", and the fine lines are along the the [111] direction; the observation under a high resolution shows that fine lines are the single-crystal structure, the twinning plane is (1-11), and the twinning direction is [1-1-2]
机译:为了确定没有吸收性涂层的激光冲击(LSPWC)的冲击如何影响Ni基单晶高温合金,DDI 1,LSPWC的单晶合金的LSPWC在两个脉冲能量的情况下影响的Ni基单晶超合金,DDI 1,表面结构和硬度梯度。结果表明,通过扫描电子显微镜观察“线性”变形结构,线性结构的宽度与激光冲击能量直接成比例,并且当脉冲能量从3J到5 j增加时,线性结构的长度增加;通过透射电子显微镜在X 10000处观察显示,线性结构实际上是由多于一个平行的“细线”形成的“线簇”,并且细线沿[111]方向;在高分辨率下的观察表明,细线是单晶结构,孪生平面为(1-11),孪晶方向是[1-1-2]

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