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Effect of Laser Peening on Residual Stress and Micro-hardness of TC4 Titanium Alloy

机译:激光喷丸对TC4钛合金残余应力和微硬度的影响

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Laser peening offers potential advantages over conventional peen technologies in terms of the depth of the residual stresses that can be induced, and improvements in surface micro-hardness. The present study was undertaken to understand the effect of laser penning on the properties of titanium alloy, a TC4 titanium alloy work-piece was processed with ND: YAG laser with the wavelength of 1064 nm, pulse energy of 0-10J and pulse width of 12ns, and micro-hardness and residual stress for different laser peening parameters were examined and analyzed by micro-hardness tester and X-ray diffraction. Results are presented and discussed of the residual stress profiles and the micro-hardness profiles, The experimental results show that the satisfying laser peening appearance can be achieved when the pulse energy was 6J, water tamping layer thickness was 1.8mm and ablative layer thickness was 100μm, surface micro-hardness increased by up to 33% and the compressive residual stress on the surface of laser shocked area reached up to -327.8MPa, laser peening improved hardness and residual stress of titanium alloy significantly. The experiment results show that the effect of laser peening was evidently.
机译:激光喷丸提供了超过常规喷丸技术的潜在优势在残余应力可以被诱导,和改进的表面显微硬度的深度方面。本研究的目的在于了解激光的潘宁钛合金的性能的影响,一个TC4钛合金工件用ND处理:YAG激光器,1064nm的波长,0-10J的脉冲能量和脉冲宽度为12ns,和显微硬度和残余应力对于不同的激光喷丸参数进行了检查,通过微硬度计和X-射线衍射分析。结果呈现和残余应力分布和微硬度分布曲线所讨论的,该实验结果表明,在满足激光喷丸外观可以当脉冲能量为6J,水捣固层厚度为1.8毫米和烧蚀层的厚度为100微米来实现,表面微硬度增加高达33%和激光震惊区域的表面上的压缩残留应力最多时达到-327.8MPa,激光喷丸显著改善钛合金的硬度和残余应力。实验结果表明,激光喷丸的效果显然。

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