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首页> 外文期刊>Journal of biomedical materials research, Part A >The effect of yield damage on.the.yiscoelas.tic properties of cortical bone tissue as measured by dynamic mechanical analysis
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The effect of yield damage on.the.yiscoelas.tic properties of cortical bone tissue as measured by dynamic mechanical analysis

机译:动态力学分析测量屈服损伤对皮质骨组织黏弹性的影响

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摘要

We have previously shown, using Dynamic Mechanical Analysis (DMA), that the presence of a defect in cortical bone tissue affects the apparent viscoelastic properties of that bone. However, mechanically induced damage is more complex than a machined defect making it difficult to predict its effect on bone viscoelasticity. We performed DMA measurements before and after introduction of yield damage into cortical bone beams from sheep radii. The specimens were placed in a DMA machine and baseline measurements of storage modulus (El) and loss factor (tan delta) were performed using a 3-point bending configuration for a frequency range of 1-10 Hz. Measurements were done in all four bending directions (cranial, caudal, medial, and lateral) in random order. After subjecting the specimens to monotonic yield damage in a servohydraulic testing machine with the load applied to the cranial surface, oscillatory tests were repeated. To supplement results from the current experiment, additional analyses were performed on data from experiments where bone was either cut or fatigue-loaded between viscoelasticity measurements. Introduction of mechanical damage increased tan 8 and frequency sensitivity of El, consistent with the assertion that increased energy dissipation in damaged bone might contribute to its increased resistance to fatigue and fracture.
机译:先前我们已经使用动态力学分析(DMA)表明,皮质骨组织中缺陷的存在会影响该骨的表观粘弹性质。然而,机械损伤比机械损伤更为复杂,因此很难预测其对骨粘弹性的影响。在将屈服损伤引入绵羊半径的皮质骨束之前和之后,我们进行了DMA测量。将样本放置在DMA机器中,并使用3点弯曲配置对1-10 Hz的频率进行储能模量(E1)和损耗因子(tanδ)的基线测量。在所有四个弯曲方向(颅骨,尾巴,内侧和外侧)上以随机顺序进行测量。在伺服液压试验机上将样品施加于颅骨表面,使样品遭受单调屈服损伤后,重复进行振动试验。为了补充当前实验的结果,对实验数据进行了额外的分析,这些实验是在粘弹性测量之间将骨头切开或疲劳加载的。机械损伤的引入增加了tan 8和El的频率敏感性,这与断层骨骼中能量耗散增加可能有助于其增强的抗疲劳性和抗裂性的说法一致。

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