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通过动态力学分析测量的终末边界条件和标本几何形状对松质骨粘弹性特性的影响。

Effects of end boundary conditions and specimen geometry on the viscoelastic properties of cancellous bone measured by dynamic mechanical analysis.

作者信息

Dong X Neil, Yeni Yener N, Les Clifford M, Fyhrie David P

机构信息

Department of Orthopaedic Surgery, Bone and Joint Center, Henry Ford Hospital, 2015 E&R Building, 2799 West Grand Boulevard, Detroit, Michigan 48202, USA.

出版信息

J Biomed Mater Res A. 2004 Mar 1;68(3):573-83. doi: 10.1002/jbm.a.20108.

Abstract

The viscoelastic properties of cancellous bone can be measured nondestructively in compression testing using a dynamic mechanical analyzer. In this study, we examined the effects of end boundary conditions and specimen geometry on the viscoelastic properties of cancellous bone measured by dynamic mechanical analysis. During dynamic compression testing, the cancellous bone specimens may be mechanically fixed (e.g., glued) to the loading platens or they may be free to expand across the platen surface. When specimens of cancellous bone were tested between platens with gluing, the dependence of loss tangent on frequency was not consistent with previously observed strain-rate-dependent mechanical behavior of cancellous bone. When long specimens of cancellous bone (length = 10 mm, diameter = 8 mm) were tested without gluing, the relationship between loss tangent and frequency depended on the level of load applied. For short specimens (length = 5 mm, diameter = 8 mm) tested without gluing, however, the frequency dependence of loss tangent agreed with existing data reported for the strain-rate-dependent behavior of cancellous bone and also with the frequency dependence of cortical bone viscoelasticity. Therefore, we recommend that short cancellous bone cylinders with a length of 5 mm and a diameter of 8 mm should be used without gluing in the dynamic mechanical analysis of cancellous bone. This is consistent with the American Society for Testing and Materials testing recommendations for plastics, but different from current practice for unimodal mechanical testing of cancellous bone.

摘要

松质骨的粘弹性特性可在压缩试验中使用动态力学分析仪进行无损测量。在本研究中,我们研究了端部边界条件和试样几何形状对通过动态力学分析测量的松质骨粘弹性特性的影响。在动态压缩试验期间,松质骨试样可以机械固定(例如,胶合)到加载压板上,或者它们可以在压板表面自由膨胀。当对胶合在压板之间的松质骨试样进行测试时,损耗角正切对频率的依赖性与先前观察到的松质骨应变率依赖性力学行为不一致。当对未胶合的长松质骨试样(长度 = 10 毫米,直径 = 8 毫米)进行测试时,损耗角正切与频率之间的关系取决于所施加的载荷水平。然而,对于未胶合的短试样(长度 = 5 毫米,直径 = 8 毫米),损耗角正切的频率依赖性与已报道的松质骨应变率依赖性行为的数据以及皮质骨粘弹性的频率依赖性一致。因此,我们建议在松质骨的动态力学分析中应使用长度为 5 毫米、直径为 8 毫米的未胶合短松质骨圆柱体。这与美国材料与试验协会对塑料的测试建议一致,但与目前松质骨单峰力学测试的做法不同。

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