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Effect of Quench Delay on Subsurface integrity during Machining of Titanium Alloy Ti6Al4V

机译:钛合金Ti6Al4V加工过程中淬火延迟对地下完整性的影响

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Machining of titanium alloys generates enormous amount of heat at the chip-tool interface which leads to poor machinability. The current research investigates the effect of change in alpha and transformed beta phase resulting from different delays during quenching at subsurface level during machining. The change in subsurface deformation was analyzed based on various output response measured such as deformed depth, shear strain in deformed grains, micro-hardness and surface finish, using optical microscopy and SEM. The deformation induced damage detected near the machined edge due to microstructural restructuring was correlated with chip microstructure.
机译:钛合金的加工在芯片工具界面产生大量热量,导致可加工不良。目前的研究研究了在加工过程中淬火期间淬火过程中的不同延迟导致的α和转化的β相的影响。基于测量的各种输出响应,分析了地下变形的变化,例如使用光学显微镜和SEM的变形深度,微固态和表面光洁度的变形深度,剪切应变。由于微观结构重组而在加工边缘附近检测到的变形诱导的损伤与芯片微观结构相关。

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