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The Influence of Cutting Heat on the Surface Integrity during Machining of Titanium Alloy Ti6Al4V

机译:切削热对钛合金Ti6Al4V加工过程中表面完整性的影响

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Machining of titanium alloys generates enormous amount of heat at the chip-tool interface leading to poor machinability. The current research investigates the effect of dry machining of Ti6Al4V on surface integrity of machined workpiece. A change in subsurface deformation was assessed by varying cutting speed and feed rate keeping the cut depth constant. Various output responses viz. cutting temperature, surface finish, induced strain, deformed depth, microhardness, etc. were discussed to evaluate the surface integrity. An optical microscopy, SEM and EBSD analysis performed on the machined edge showed deformation induced damage with microstructural restructuring which was correlated with chip microstructure. At lower cutting parameters, work hardening phenomenon however; at high cutting parameters thermal softening phenomenon becomes more dominant. This was derived with increased surface roughness, reduction in microhardness values beneath the machined surface and coarse microstructure obtained at higher cutting parameters. A Chip microstructural analysis validates the thermal softening and work hardening phenomenon where at high cutting speeds and feed rate the shear band formation is increased accompanied with increased chip segmentation frequency. However, at lower cutting parameters the reduction segmentation frequency and more deformed grains near shear band were observed.
机译:钛合金的机械加工在切屑工具界面处产生大量热量,导致机械加工性差。当前的研究调查了干式加工Ti6Al4V对加工工件表面完整性的影响。通过改变切削速度和进给速度,保持切削深度恒定,来评估地下变形的变化。各种输出响应即。讨论了切削温度,表面光洁度,诱发应变,变形深度,显微硬度等以评估表面完整性。在加工的边缘上进行的光学显微镜,SEM和EBSD分析表明,变形引起的损伤是由于显微组织的重新构造而与芯片的显微组织有关。但是,在较低的切削参数下,会出现加工硬化现象。在高切削参数下,热软化现象变得更加明显。这是由于增加了表面粗糙度,降低了加工表面下方的显微硬度值以及在较高的切削参数下获得的粗糙的显微组织而产生的。切屑微结构分析验证了热软化和加工硬化现象,其中在高切削速度和进给速率下,剪切带的形成随着切屑切分频率的增加而增加。但是,在较低的切削参数下,观察到了减小的切分频率和在剪切带附近的更多变形晶粒。

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