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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Influence of test specimen fabrication method and cross-section configuration on tension-tension fatigue life of PMMA bone cement
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Influence of test specimen fabrication method and cross-section configuration on tension-tension fatigue life of PMMA bone cement

机译:试样制造方法对PMMA骨水泥张力疲劳寿命的影响

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Different cyclic loading modes have been used in in vitro fatigue studies of PMMA bone cement. It is unclear which loading mode is most appropriate from the perspective of the in vivo loading experienced by the cement in a cemented arthroplasty. Also, in different in vitro fatigue studies, different test specimen configurations have been used. The present work considers the influence of test specimen fabrication method (direct moulding vs moulding followed by machining) and cross-section shape (rectangular vs circular) on the tension-tension fatigue performance of two bone cement brands (SmartSet GHV and CMW1), under force control conditions. Two trends were consistent: 1) for each of the cements, for moulded specimens, a longer fatigue life was obtained with circular cross-sectioned specimens and, 2) for either rectangular or circular CMW1 specimens, a longer fatigue life was obtained using machined specimens. A comparison of the present results to those reported in our previous work on fully-reversed tension-compression loading under force control showed that, regardless of the test specimen fabrication method or cross-section configuration used, the fatigue life was considerably shorter under tension-compression than tension-tension loading. This finding highlights the fact that the presence of the compression portion in the loading cycle accelerates fatigue failure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:不同的循环加载模式已被用于PMMA骨水泥的体外疲劳研究。目前尚不清除哪种装载模式是从水泥在粘合的关节造形术中经历的体内装载的角度来看。而且,在不同的体外疲劳研究中,已经使用了不同的试样配置。本工作考虑了试样制造方法的影响(直接成型VS成型,然后加工)和横截面形状(矩形VS圆形)对两个骨水泥品牌(SmartSet GHV和CMW1)的张力张力疲劳性能力控制条件。两种趋势是一致的:1)对于每个水泥,对于模塑试样,用圆形横截面标本获得更长的疲劳寿命,2)用于矩形或圆形CMW1标本,使用加工标本获得更长的疲劳寿命。本结果对我们之前的工作中报告的那些对武力控制的完全反转张力压缩负荷的工作的比较表明,无论使用试样制造方法还是所使用的横截面配置,疲劳寿命在紧张下相当短压缩而不是张紧张力载荷。该发现突出了加载循环中压缩部分的存在加速疲劳失败的事实。 (c)2015 Elsevier Ltd.保留所有权利。

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