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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Application of viscoelastic fracture model and non-uniform crack initiation at clinically relevant notches in crosslinked UHMWPE.
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Application of viscoelastic fracture model and non-uniform crack initiation at clinically relevant notches in crosslinked UHMWPE.

机译:粘弹性骨折模型在交联UHMWPE中临床相关凹口的应用粘弹性裂缝模型和非均匀裂纹启动。

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The mechanism of crack initiation from a clinically relevant notch is not well-understood for crosslinked ultra high molecular weight polyethylene (UHMWPE) used in total joint replacement components. Static mode driving forces, rather than the cyclic mode conditions typically associated with fatigue processes, have been shown to drive crack propagation in this material. Thus, in this study, crack initiation in a notched specimen under a static load was investigated. A video microscope was used to monitor the notch surface of the specimen and crack initiation time was measured from the video by identifying the onset of crack initiation at the notch. Crack initiation was considered using a viscoelastic fracture theory. It was found that the mechanism of crack initiation involved both single layer and a distributed multi-layer phenomenon and that multi-layer crack initiation delayed the crack initiation time for all loading conditions examined. The findings of this study support that the viscoelastic fracture theory governs fracture mechanics in crosslinked UHMWPE. The findings also support that crack initiation from a notch in UHMWPE is a more complex phenomenon than treated by traditional fracture theories for polymers.
机译:从临床相关凹口的裂纹引发机理不是很好地理解,用于总关节置换组分中使用的交联超高分子量聚乙烯(UHMWPE)。已经示出了静态模式驱动力,而不是通常与疲劳过程相关联的循环模式条件,以驱动该材料中的裂纹传播。因此,在该研究中,研究了在静载荷下在静载物下的裂纹引发。用于监测视频显微镜来监测样品的凹口表面,通过识别在缺口处的裂纹启动开始时从视频中测量裂纹开始时间。使用粘弹性裂缝理论考虑了裂纹启动。结果发现,裂纹启动机制涉及单层和分布式多层现象,并且多层裂纹引发延迟了所检查的所有装载条件的裂纹引发时间。这项研究的结果支持粘弹性裂缝理论治理交联的UHMWPE中的骨折力学。调查结果还支持从UHMWPE中的凹口的破裂开始是一种比通过传统的聚合物骨折理论治疗更复杂的现象。

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