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PCD刀具高速铣削TC4钛合金的工艺参数优化
引用本文:王胜,刘文军,周明安,张玉贤,顾怡红,余文利. PCD刀具高速铣削TC4钛合金的工艺参数优化[J]. 金刚石与磨料磨具工程, 2020, 40(4): 47-52. DOI: 10.13394/j.cnki.jgszz.2020.4.0007
作者姓名:王胜  刘文军  周明安  张玉贤  顾怡红  余文利
作者单位:1. 衢州职业技术学院 机电工程学院, 浙江 衢州 324000;2. 浙江大学 机械工程学院, 杭州 310027
基金项目:浙江省中华职业教育科研项目;浙江省高校实验室工作研究重点项目;国家自然科学基金
摘    要:用PCD铣刀平面精铣TC4(Ti-6Al-4V)钛合金,再用三坐标测量机、表面粗糙度仪、显微维氏硬度计和便携式X射线残余应力分析仪测量钛合金加工后的平面度、平行度、表面粗糙度、表面硬度及表面残余应力,分析不同铣削工艺参数对TC4钛合金质量和表面形貌的影响。结果表明:在主轴转速16 000 r/min,切削深度0.2 mm,每齿进给量0.06 mm/z的最佳铣削工艺参数下,PCD铣刀寿命较长,TC4钛合金工件的表面质量和形貌较好,其平面度为0.26 μm,平行度为0.64 μm,表面粗糙度为0.63 μm,表面显微硬度为3 080 N/mm2,表面残余应力为-250 MPa。 

关 键 词:表面粗糙度   平面度   平行度   表面形貌   显微硬度   残余应力

Optimization of process parameters for high speed milling TC4 titanium alloy with PCD tool
WANG Sheng,LIU Wenjun,ZHOU Ming′an,ZHANG Yuxian,GU Yihong,YU Wenli. Optimization of process parameters for high speed milling TC4 titanium alloy with PCD tool[J]. Diamond & Abrasives Engineering, 2020, 40(4): 47-52. DOI: 10.13394/j.cnki.jgszz.2020.4.0007
Authors:WANG Sheng  LIU Wenjun  ZHOU Ming′an  ZHANG Yuxian  GU Yihong  YU Wenli
Affiliation:1. Mechanical and Electrical Engineering Institute, Quzhou College of Technology, Quzhou 324000, Zhejiang, China;2. School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, China
Abstract:The TC4(Ti-6Al-4V)titanium alloy was plane milled precisely with PCD milling cutter. The flatness, the parallelism, the surface roughness, the surface hardness and the surface residual stress were measured by the coordinate measuring machine, the surface roughness meter, the micro Vickers hardness meter and the portable X-ray residual stress analyzer. The influences of different milling parameters on the quality and the surface morphology of TC4 titanium alloy were analyzed. The results show that with the optimal milling process parameters of spindle speed of 16 000 r/min, cutting depth of 0.2 mm and feed per tooth of 0.06 mm/z, the PCD milling cutter has a long life, and the TC4 titanium alloy workpiece has good surface quality and morphology. The flatness, the parallelism, the surface roughness, the microhardness and the residual stress of the workpiece are 0.26 μm, 0.64 μm, 0.63 μm, 3 080 N/mm2 and -250 MPa, respectively. 
Keywords:
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