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Influence of Fine Grains on the Bending Fatigue Behavior of Two Implant Titanium Alloys

机译:细粒对两种植入钛合金弯曲疲劳行为的影响

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摘要

By means of the ultrasonic surface impact (amplitude of 30 μm, strike number of 48,000 times/mm2), nanograins have been achieved in the surfaces of both Ti6Al4V(TC4) and Ti3Zr2Sn3Mo25Nb(TLM) titanium alloys, mainly because of the dislocation motion. Many mechanical properties are improved, such as hardness, residual stress, and roughness. The rotating–bending fatigue limits of TC4 and TLM subjected to ultrasonic impact are improved by 13.1% and 23.7%, separately. Because of the bending fatigue behavior, which is sensitive to the surface condition, cracks usually initiate from the surface defects under high stress amplitude. By means of an ultrasonic impact tip with the size of 8 mm, most of the inner cracks present at the zone with a depth range of 100~250 μm in the high life region. The inner crack core to TC4 usually appears as a deformed long and narrow α-phase, while the cracks in TLM specimens prefer to initiate at the triple grain boundary junctions. This zone crosses the grain refined layer and the deformed coarse grain layer. With the gradient change of elastic parameters, the model shows an increase of normal stress at this zone. Combined with the loss of plasticity and toughness, it is easy to understand these fatigue behaviors.
机译:通过超声波表面冲击(30μm的幅度,48,000次/mm2),在Ti6Al4V(TC4)和Ti3ZR2SN3MO25NB(TLM)钛合金的表面中已经实现了纳米甲基,主要是因为脱位运动。改善了许多机械性能,例如硬度,残余应力和粗糙度。 TC4和TLM的旋转弯曲疲劳限制与超声波撞击的旋转疲劳限制分别提高13.1%和23.7%。由于弯曲疲劳行为,这对表面状况敏感,裂缝通常在高应力幅度下从表面缺陷引发。借助于超声波冲击尖端,尺寸为8mm,大部分内裂隙在区域中的深度范围为100〜250μm。内裂芯至TC4通常看起来是变形的长且窄的α相,而TLM样本中的裂缝更喜欢在三粒边界连接处引发。该区域穿过晶粒精制层和变形的粗粒层。随着弹性参数的梯度变化,该模型显示该区域的正常应力增加。结合可塑性和韧性的损失,很容易理解这些疲劳行为。

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