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犬股骨在干湿条件下准静态范围内应变率敏感性的纳米力学表征

Nanomechanical Characterization of Canine Femur Bone for Strain Rate Sensitivity in the Quasistatic Range under Dry versus Wet Conditions.

作者信息

Lee Kun-Lin, Baldassarri Marta, Gupta Nikhil, Pinisetty Dinesh, Janal Malvin N, Tovar Nick, Coelho Paulo G

机构信息

Composite Materials and Mechanics Laboratory, Mechanical and Aerospace Engineering Department, Polytechnic Institute of New York University, Brooklyn, NY 11201, USA.

出版信息

Int J Biomater. 2012;2012:415230. doi: 10.1155/2012/415230. Epub 2012 Dec 25.

Abstract

As a strain rate-dependent material, bone has a different mechanical response to various loads. Our aim was to evaluate the effect of water and different loading/unloading rates on the nanomechanical properties of canine femur cortical bone. Six cross-sections were cut from the diaphysis of six dog femurs and were nanoindented in their cortical area. Both dry and wet conditions were taken into account for three quasistatic trapezoid profiles with a maximum force of 2000 μN (holding time = 30 s) at loading/unloading rates of 10, 100, and 1000 μN/s, respectively. For each specimen, 254 ± 9 (mean ± SD) indentations were performed under different loading conditions. Significant differences were found for the elastic modulus and hardness between wet and dry conditions (P < 0.001). No influence of the loading/unloading rates was observed between groups except for the elastic modulus measured at 1000 μN/s rate under dry conditions (P < 0.001) and for the hardness measured at a rate of 10 μN/s under wet conditions (P < 0.001). Therefore, for a quasistatic test with peak load of 2000 μN held for 30 s, it is recommended to nanoindent under wet conditions at a loading/unloading rate of 100-1000 μN/s, so the reduced creep effect allows for a more accurate computation of mechanical properties.

摘要

作为一种应变率依赖性材料,骨骼对各种载荷具有不同的力学响应。我们的目的是评估水和不同加载/卸载速率对犬股骨皮质骨纳米力学性能的影响。从六只犬的股骨骨干切取六个横截面,并在其皮质区域进行纳米压痕试验。考虑了干燥和湿润两种条件,分别以10、100和1000 μN/s的加载/卸载速率对三种准静态梯形轮廓施加最大力2000 μN(保持时间 = 30 s)。对于每个样本,在不同加载条件下进行了(254 ± 9)(平均值±标准差)次压痕试验。发现湿润和干燥条件下的弹性模量和硬度存在显著差异((P < 0.001))。除了在干燥条件下以1000 μN/s速率测量的弹性模量((P < 0.001))和在湿润条件下以10 μN/s速率测量的硬度((P < 0.001))外,各实验组之间未观察到加载/卸载速率的影响。因此,对于峰值载荷为2000 μN并保持30 s的准静态试验,建议在湿润条件下以100 - 1000 μN/s的加载/卸载速率进行纳米压痕试验,这样减小的蠕变效应有助于更准确地计算力学性能。

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