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Uniaxial and biaxial ratcheting behavior of ultra-high molecular weight polyethylene

机译:超高分子量聚乙烯的单轴和双轴棘轮行为

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Experimental studies were conducted to investigate the uniaxial and biaxial ratcheting behaviors of Ultra-high molecular weight polyethylene (UHMWPE). The effects of stress amplitude, stress rate and hydroxyapatite content on uniaxial ratcheting behavior were studied firstly. It is found that the ratcheting strain and its rate increase as stress amplitude increases. However, the ratcheting strain and its rate decrease with rising of stress rate. Meanwhile, it is found that the ratcheting strain decreases with increase of hydroxyapatite content. The ratcheting strain rates with different hydroxyapatite contents are not obviously different. The modified ratcheting strain accumulative model was constructed to predict the uniaxial ratcheting behavior of UHMWPE with different stress amplitudes, stress rates and hydroxyapatite contents. It is seen that the predictions agree with the experimental results very well. The effects of different loading paths on biaxial ratcheting behavior of UHMWPE were studied. Both ratcheting strain and ratcheting strain rate are strongly influenced by the loading path. It is found that the uniaxial loading path gives the highest ratcheting strain and its rate while the proportional loading path gives the lowest ratcheting strain and its rate.
机译:进行实验研究以研究超高分子量聚乙烯(UHMWPE)的单轴和双轴棘轮行为。首先研究了应力振幅,应力速率和羟基磷灰石含量对单轴棘轮行为的影响。发现棘轮应变及其速率随着应力振幅的增加而增加。然而,棘轮应变及其速率随着应力率的升高而降低。同时,发现棘齿应变随着羟基磷灰石含量的增加而降低。不同羟基磷灰石含量的棘轮应变率没有明显差异。建立了修正的棘轮应变累积模型,以预测UHMWPE在不同应力幅度,应力速率和羟基磷灰石含量下的单轴棘轮行为。可以看出,这些预测与实验结果非常吻合。研究了不同载荷路径对UHMWPE双轴棘轮行为的影响。棘轮应变和棘轮应变率都受加载路径的强烈影响。发现单轴加载路径给出了最高的棘轮应变及其速率,而比例加载通道给出了最低的棘轮应变及其速率。

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