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NONWOVEN WHEEL POLISHING OF TI-6AL-4V AND CO-CR-MO ALLOYS

机译:TI-6AL-4V和CO-CR-MO合金的非编织轮抛光

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This research investigates the nonwoven wheels polishing of Ti-6Al-4V and Co-Cr-Mo alloys, which are biocompatible materials for medical implants. The structure of the high porosity nonwoven wheels consisting of the nonwoven fibers and abrasive grains are characterized. The compressibility and stiffness of the wheel are measured. The stiffness of the wheel is nonlinear depending on the wheel surface speed and compression depth. Polishing tests at two levels of wheel surface speed and compression depth are conducted. Surface roughness and polishing forces are studied. Results demonstrated that polishing of Ti-6Al-4V is difficult, which has twice larger surface roughness than that of Co-Cr-Mo. The nonwoven wheel operating at lower surface speed and smaller compression depth is beneficial to generate a better surface roughness for Ti-6Al-4V and Co-Cr-Mo.
机译:这项研究研究了Ti-6Al-4V和Co-Cr-Mo合金的无纺布轮抛光,这是用于医疗植入物的生物相容性材料。表征了由非织造纤维和磨料颗粒组成的高孔隙率非织造轮的结构。测量车轮的可压缩性和刚度。车轮的刚度是非线性的,具体取决于车轮表面速度和压缩深度。在砂轮表面速度和压缩深度两个级别上进行了抛光测试。研究了表面粗糙度和抛光力。结果表明,Ti-6Al-4V的抛光困难,其表面粗糙度是Co-Cr-Mo的两倍。以较低的表面速度和较小的压缩深度运行的无纺布轮有利于产生更好的Ti-6Al-4V和Co-Cr-Mo表面粗糙度。

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