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Effect of Post Laser Shock Peening on Microstructure and Mechanical Properties of Inconel 718 by Selective Laser Melting

机译:激光后喷丸强化对选择性激光熔化Inconel 718的组织和力学性能的影响

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This study investigates the effects of laser shock peening (LSP) on residual stress, near surface modification, and hardness of Inconel 718 (IN718) specimens manufactured by selective laser melting (SLM) technique. Optical microscope and electron backscattered diffraction (EBSD) is used to characterize the microstructures of both heat-treated and as-built specimens. A nanoindentation test is performed to determine the properties such as the hardness of as-built and heat-treated specimens. Afterward, the hardness along the distance from the LSP treated surface is also defined. To investigate the effect of LSP energy on the mechanical properties of specimens, two levels of LSP energy, e.g., low energy LSP (6.37 GW/cm~2) and high energy LSP (8.60 GW/cm~2), are carried out on selected samples. With the increase in laser energy density, it is found that both compressive residual stress and hardness increase after LSP treatment. The as-built specimens after high energy LSP treatment show the compressive residual stress of -875 MPa, and the surface hardness increases from 468 HV to 853 HV.
机译:这项研究调查了激光冲击强化(LSP)对通过选择性激光熔化(SLM)技术制造的Inconel 718(IN718)样品的残余应力,近表面改性和硬度的影响。光学显微镜和电子背散射衍射(EBSD)用于表征热处理后的样品和竣工样品的微观结构。进行纳米压痕测试以确定性能,例如制成的试样和热处理的试样的硬度。之后,还定义了沿距LSP处理表面的距离的硬度。为了研究LSP能量对标本力学性能的影响,在低能量LSP(6.37 GW / cm〜2)和高能量LSP(8.60 GW / cm〜2)上进行了LSP能量的两个水平测试。选定的样本。随着激光能量密度的增加,发现LSP处理后压缩残余应力和硬度均增加。经过高能LSP处理的竣工标本显示了-875 MPa的压缩残余应力,并且表面硬度从468 HV增加到853 HV。

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