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首页> 外文期刊>Journal of materials science >Effects of fatigue induced damage on the longitudinal fracture resistance of cortical bone
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Effects of fatigue induced damage on the longitudinal fracture resistance of cortical bone

机译:疲劳引起的损伤对皮质骨纵向断裂阻力的影响

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摘要

As a composite material, cortical bone accumulates fatigue microdamage through the repetitive loading of everyday activity (e.g. walking). The accumulation of fatigue microdamage is thought to contribute to the occurrence of fragility fractures in older people. Therefore it is beneficial to understand the relationship between mi-crocrack accumulation and the fracture resistance of cortical bone. Twenty longitudinally orientated compact tension fracture specimens were machined from a single bovine femur, ten specimens were assigned to both the control and fatigue damaged groups. The damaged group underwent a fatigue loading protocol to induce micro-damage which was assessed via fluorescent microscopy. Following fatigue loading, non-linear fracture resistance tests were undertaken on both the control and damaged groups using the J-integral method. The interaction of the crack path with the fatigue induced damage and inherent toughening mechanisms were then observed using fluorescent microscopy. The results of this study show that fatigue induced damage reduces the initiation toughness of cortical bone and the growth toughness within the damage zone by three distinct mechanisms of fatigue-fracture interaction. Further analysis of the J-integral fracture resistance showed both the elastic and plastic component were reduced in the damaged group. For the elastic component this was attributed to a decreased number of ligament bridges in the crack wake while for the plastic component this was attributed to the presence of preexisting fatigue microcracks preventing energy absorption by the formation of new microcracks.
机译:皮质骨作为一种复合材料,会通过重复性的日常活动(例如步行)而累积疲劳微损伤。疲劳微损伤的累积被认为有助于老年人脆性骨折的发生。因此,了解微裂纹的积累与皮质骨的断裂阻力之间的关系是有益的。从单个牛股骨中加工出20个纵向定向的致密拉伸断裂标本,将10个标本分配到对照组和疲劳损伤组。受损组经历了疲劳加载方案以引起微损伤,该损伤通过荧光显微镜评估。在疲劳载荷之后,使用J积分方法对对照组和受损组进行了非线性抗断裂试验。然后使用荧光显微镜观察裂纹路径与疲劳引起的损伤和固有的增韧机理的相互作用。这项研究的结果表明,疲劳引起的损伤通过三种不同的疲劳-断裂相互作用机制降低了皮质骨的初始韧性和损伤区内的生长韧性。对J整体抗断裂性的进一步分析表明,受损组的弹性和塑性成分均降低。对于弹性部件,这归因于裂纹尾流中韧带桥的数量减少,而对于塑料部件,这归因于存在预先存在的疲劳微裂纹,该疲劳微裂纹通过形成新的微裂纹而阻止了能量吸收。

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  • 来源
    《Journal of materials science 》 |2014年第7期| 1661-1670| 共10页
  • 作者单位

    School of Mechanical Engineering, The University of Adelaide,Adelaide, SA 5005, Australia;

    School of Mechanical Engineering, The University of Adelaide,Adelaide, SA 5005, Australia,Bone and Joint Research Laboratory, SA Pathology and Hanson Institute, Adelaide, SA, Australia;

    Bone and Joint Research Laboratory, SA Pathology and Hanson Institute, Adelaide, SA, Australia,Discipline of Anatomy and Pathology, The University of Adelaide, North Terrace, Adelaide, SA, Australia;

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