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Analysis of Subsurface Microstructure and Residual Stresses in Machined Inconel 718 with PCBN and Al2O3-SiCw Tools

机译:PCBN和Al2O3-SiCw工具加工的Inconel 718的表面微观结构和残余应力分析

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摘要

Subsurface microstructural alterations and residual stresses caused by machining significantly affect component lifetime and performance by influencing fatigue, creep, and stress corrosion cracking resistance. Assessing the surface quality of a machined part by characterizing subsurface microstructural alterations and residual stresses is essential for ensuring part performance and lifetime in aero-engines and power generators. This comparative study characterizes and analyzes subsurface microstructural alterations and residual stresses in Inconel 718 subjected to high-speed machining with PCBN and whisker-reinforced ceramic cutting tools. Effects of cutting tool materials and microgeometry on subsurface deformation, microstructural alterations, and residual stresses were investigated. Surface and subsurface regions of machined specimens were investigated using X-ray diffraction, electron channeling contrast imaging, and electron back-scatter diffraction to characterize microstructural alterations and measure deformation intensity and depth.
机译:机加工引起的亚表面微观结构变化和残余应力会影响疲劳,蠕变和应力腐蚀开裂性能,从而显着影响零件的使用寿命和性能。通过表征表面下的微观结构变化和残余应力来评估加工零件的表面质量,对于确保零件性能和航空发动机和发电机的使用寿命至关重要。这项比较研究的特征在于分析并分析了使用PCBN和晶须增强的陶瓷切削刀具进行高速加工的Inconel 718的地下微观结构变化和残余应力。研究了切削刀具材料和微观几何形状对表面变形,微观结构变化和残余应力的影响。使用X射线衍射,电子通道对比度成像和电子反向散射衍射研究了机加工试样的表面和亚表面区域,以表征微观结构变化并测量变形强度和深度。

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