ISSN   1004-0595

CN  62-1224/O4

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超声滚压TB8钛合金微动摩擦磨损性能研究

Micro-Motion Friction and Wear Properties of Ultrasonic Rolling TB8 Titanium Alloy

  • 摘要: TB8钛合金因为良好的生物相容性和弹性模量接近人骨等特点被广泛应用于医疗器械中假肢的制造,其中微动磨损损伤是影响其疲劳寿命的重要因素. 采用UMT微动摩擦磨损试验机研究不同滚压力(600~1 200 N)超声滚压前后TB8钛合金的微动磨损性能. 试验结果表明:超声滚压降低了TB8钛合金试样的微动摩擦系数,与未滚压试样相比,1 200 N试样的平均摩擦系数由0.489最大降低至0.209,其磨损体积由6.15×10−6 mm3减少到3.18×10−6 mm3. 其磨损形貌表明了未滚压和600 N试样的主要磨损机制为磨粒磨损和黏着磨损;900和1 200 N试样磨损表面光滑无沟槽,其主要磨损机制为氧化磨损.

     

    Abstract: TB8 titanium alloy has been widely adopted in manufacturing medical prosthetics due to its excellent biocompatibility and elastic modulus comparable to human bone. Fretting wear damage constitutes a critical factor affecting its fatigue lifespan. This study systematically investigated the fretting wear characteristics of TB8 titanium alloy before and after ultrasonic surface rolling (USR) treatment under varying rolling forces (600~1 200 N) using a UMT TriboLab multifunctional tribometer. The experimental results demonstrated that USR treatment effectively reduced the fretting friction coefficient of TB8 specimens. Compared with untreated specimens, the average friction coefficient of 1 200 N-treated specimens decreased significantly from 0.489 to 0.209, accompanied by a remarkable reduction in wear volume from 6.15×10−6 mm3 to 3.18×10−6 mm3. Wear morphology analysis revealed distinct wear mechanisms: untreated and 600 N-treated specimens exhibited characteristic abrasive wear with parallel grooves and adhesive wear features, while 900 and 1 200 N-treated specimens showed smooth wear surfaces free of plowing marks, indicative of dominant oxidative wear mechanisms.

     

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