首页> 外文会议>2001 TMS Annual Meeting on Structural Biomaterials for the 21st Century, Feb 11-12, 2001, New Orleans, LA >Fretting Fatigue Behaviors of Ti-6Al-4V ELI and Ti-6Al-7Nb for Biomedical Applications
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Fretting Fatigue Behaviors of Ti-6Al-4V ELI and Ti-6Al-7Nb for Biomedical Applications

机译:Ti-6Al-4V ELI和Ti-6Al-7Nb用于生物医学的微动疲劳行为

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摘要

Effects of fretting on fatigue of Ti-6A1-4V ELI and Ti-6Al-7Nb with equiaxed α microstructure as biomaterials are investigated in present work. The testing was conducted in air at room temperature feet under conditions of frequency, f, =10, stress rate, R, =0.1, and a normal clamping pressure of about 30MP, using dogbone-shaped specimens and bridge-type pads with flat. The fretting-fatigue limits of the alloys are dramatically lower than their plain-fatigue limits. The contact areas are fretted heavily, and every scar consists of a stick region in the middle and two slip regions beside. Lots of surface cracks exist in the fretted areas. The dramatic reduction of fatigue life is ascribed to the increased stress intensity factor of the crack in early stage due to the cooperative action of alternating bulk stress, frictional force and normal stress under fretting condition. The fracture features and the angle of the crack propagation to the specimen surface of fretting fatigue are different from those of plain fatigue.
机译:在目前的工作中,研究了微动磨损对具有等轴α微结构的Ti-6A1-4V ELI和Ti-6Al-7Nb疲劳的影响。该测试是在室温英尺的空气中,频率为f = 10,应力率R = 0.1和正常夹持压力约为30MP的条件下进行的,使用的是狗骨形试样和平坦的桥形垫。合金的微动疲劳极限显着低于其普通疲劳极限。接触区域严重磨损,每个疤痕由中间的粘着区域和旁边的两个滑动区域组成。毛刺区域存在许多表面裂纹。疲劳寿命的显着降低归因于在微动条件下,交替的整体应力,摩擦力和法向应力的共同作用,裂纹早期的应力强度因子增加。微动疲劳的断裂特征和裂纹扩展到试样表面的角度与普通疲劳不同。

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