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Research on surface integrity of turning titanium alloy TB6

机译:转动钛合金TB6表面完整性研究

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In this paper, machined surface integrity during orthogonal turning titanium alloy TB6 was systematic researched. The effects of cutting parameters and process system vibration on the machined surface roughness and defects were studied. Surface residual stress introduced by machining was explored by measurement combined with simulation technology. Micro-hardness and microstructure of the machined surface were also discussed. The results showed that it was not the cutting speed, but feed rate had obviously significant impacts on the surface roughness, residual stress and micro-hardness. The roughness Ra increased from 0.2 to 0.4 μm, the residual compressive stress also increased by 10% and the location depth of the peak increased from 50 to 70 μm, when the feed rate varied from 0.05 to 0.1 mm/rev. work-hardening phenomenon was obvious at the feed rate of 0.1 mm/rev. In addition, the vibration frequency of the processing system was found to be similar with that of the roughness profile, which meant process system vibration was one of the most important factor to limit the surface quality when finishing. Moreover, residual stress on surface was large compressive stress and the state alternated within the depth of 250 μm. Under the matching cutting conditions, there was no visible physical and chemical properties transition on the machined surface and subsurface. No change of grain size, plastic deformation, cracks and white layer was observed.
机译:在本文中,正交车削钛合金TB6中机加工的表面完整性是系统的研究。进行了研究切削参数和工艺系统振动的加工表面粗糙度和缺陷的影响。通过机械加工表面引入的残余应力是通过测量与模拟技术组合的探索。显微硬度和加工表面的微观结构进行了讨论。结果表明,这不是切削速度,但进料速率对表面粗糙度明显显著影响,残余应力和显微硬度。的粗糙度Ra为0.2提高到0.4微米时,残留压缩应力也增加了10%,并且峰的位置深度从50提高到70微米,当进料速率为0.05变化至0.1毫米/转。加工硬化现象明显以0.1毫米/转的进给速度。此外,处理系统的振动频率被认为是与该粗糙度曲线,这意味着处理系统振动的类似物精加工时,以限制表面质量的最重要因素之一。此外,上表面的残余应力为大的压缩应力和为250μm深度内交替的状态。下的匹配的切削条件下,有加工表面和次表面上没有可见的物理和化学性质的过渡。观察晶粒尺寸,塑性变形,裂纹和白色层的没有变化。

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