首页> 外文期刊>Journal of Biomechanics >EXPERIMENTAL AND THEORETICAL QUANTIFICATION OF THE DEVELOPMENT OF DAMAGE IN FATIGUE TESTS OF BONE AND ANTLER
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EXPERIMENTAL AND THEORETICAL QUANTIFICATION OF THE DEVELOPMENT OF DAMAGE IN FATIGUE TESTS OF BONE AND ANTLER

机译:骨骼和鹿茸疲劳试验中损伤发展的实验和理论量化

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摘要

This study concerns the development of damage (as measured by a reduction in elastic modulus) in two kinds of bones differing considerably in their degrees of mineralisation: laminar bone from bovine femur and osteonal bone from red deer antler. Antler bone is much tougher than 'ordinary' bone and its failure properties have been investigated in: (i) monotonic tensile tests and (ii) creep rupture experiments. Tensile fatigue is another way of examining how damage develops in bone. The development of damage in the present fatigue tests was non-linear with the cycle number, the degree of non-linearity was dependent on the level of stress and followed a clearly different course for bone and antler. Antler was a more damage-tolerant material, bring able to achieve a reduction in the final modulus of elasticity, just prior to failure, three times greater than 'ordinary' bone. The evolution of damage is quantified by an empirical and a graphical method and by the use of Continuum Damage Mechanics (CDM) expressions. The CDM method shows important conditions, found in antler, but not in bone, that seem necessary for achieving stable fractures and consequently producing very tough materials. Copyright (C) 1996 Elsevier Science Ltd. [References: 55]
机译:这项研究涉及两种骨骼矿化程度差异很大的骨骼(通过弹性模量的降低来衡量)的发展:牛股骨的层状骨和马鹿茸的骨质骨骼。鹿角骨比“普通”骨坚硬得多,其破坏特性已在以下方面进行了研究:(i)单调拉伸试验和(ii)蠕变断裂试验。拉伸疲劳是检查骨骼损伤如何发展的另一种方法。在目前的疲劳测试中,损伤的发展与周期数成非线性关系,非线性程度取决于应力水平,并且骨骼和鹿角的变化过程明显不同。鹿茸是一种更耐损伤的材料,能够在断裂之前降低最终的弹性模量,是“普通”骨头的三倍。通过经验和图形方法以及使用连续损伤力学(CDM)表达式来量化损伤的演变。 CDM方法显示出在鹿角中发现的重要条件,但在骨骼中没有,这对于获得稳定的骨折并因此产生非常坚硬的材料似乎是必不可少的。版权所有(C)1996 Elsevier Science Ltd. [参考:55]

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