首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Crack initiation from a clinically relevant notch in a highly-crosslinked UHMWPE subjected to static and cyclic loading
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Crack initiation from a clinically relevant notch in a highly-crosslinked UHMWPE subjected to static and cyclic loading

机译:在高度交联的UHMWPE中从临床相关凹口开始裂纹开始,经受静态和循环载荷

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摘要

Crosslinked Ultra High Molecular Weight Polyethylene (UHMWPE), which is used as a bearing material in total joint replacement components, is subjected to static and cyclic loads in vivo. Resistance to crack initiation from a notch as a function of static and cyclic loads is not well understood for crosslinked UHMWPE. This study estimated the resistance of crosslinked UHMWPE (crosslinked with 100 kGy gamma radiation and remelted to extinguish free radicals) to crack initiation for a clinically relevant notch under both static and cyclic loading conditions. For cyclic loading, four frequencies were applied with a sine waveform and two frequencies were applied with a square waveform to independently estimate the effect of frequency and rate of loading on crack initiation. Crack initiation time and cycles to crack initiation were determined. Crack initiation time for fatigue loading conditions was substantially lower compared to static loading conditions. Crack initiation time decreased with an increase in test frequency. A square wave resulted in shorter crack initiation time compared to a sine wave. The results suggest that crosslinked UHMWPE is more resistant to crack initiation from a notch under static loading conditions compared to fatigue loading conditions.
机译:交联的超高分子量聚乙烯(UHMWPE)用作总接合置换组分中的轴承材料,在体内进行静态和环状载荷。由于交联的UHMWPE,作为静态和循环载荷作为静态和循环载荷的函数的抗裂纹引发的抗性并不适当地理解。该研究估计交联的UHMWPE(与100kGyγ辐射交联并重新熔化以灭射自由基)的抗性,以在静态和环状负载条件下对临床相关凹口的启动。对于循环负载,用正弦波施加四个频率,并用方形波形施加两个频率,以独立地估计频率和负载率对裂纹启动的影响。确定了裂纹启动时间和循环以裂纹启动。与静态负载条件相比,疲劳负载率的裂纹引发时间基本下降。裂纹启动时间随着测试频率的增加而降低。与正弦波相比,方波导致较短的裂纹启动时间。结果表明,与疲劳负载条件相比,交联的UHMWPE与静态负载条件下的凹口裂纹的裂纹引发更耐裂纹。

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