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软组织的断裂韧性。

The fracture toughness of soft tissues.

机构信息

Trinity Centre for Bioengineering, Trinity College Dublin, Dublin, Ireland.

出版信息

J Mech Behav Biomed Mater. 2012 Feb;6:139-47. doi: 10.1016/j.jmbbm.2011.09.018. Epub 2011 Nov 20.

DOI:10.1016/j.jmbbm.2011.09.018
PMID:22301183
Abstract

Fracture toughness is important for any material, but to date there have been few investigations of this mechanical property in soft mammalian tissues. This paper presents new data on porcine muscle tissue and a detailed analysis of all previous work. The conclusion is that, in most cases, fracture toughness has not in fact been measured for these tissues. Reanalysis of the previous work shows that failure of the test specimens generally occurred at the material's ultimate strength, implying that no information about toughness can be obtained from the results. This finding applied to work on cartilage, artificial neocartilage, muscle and the TMJ disc. Our own data, which was also found to be invalid, gave measured fracture toughness values which were highly variable and showed a strong dependence on the crack growth increment. The net-section failure stress and failure energy were relatively constant in large specimens, independent of crack length, whilst for smaller specimens they showed a strong size effect. These findings are explained by the fact that the process zone size, estimated here using the critical distance parameter L, was similar to, or larger than, critical specimen dimensions (crack length and specimen width). Whilst this analysis casts doubt on much of the published literature, a useful finding is that soft tissues are highly tolerant of defects, able to withstand the presence of cracks several millimetres in length without significant loss of strength.

摘要

断裂韧性对于任何材料都很重要,但迄今为止,对软哺乳动物组织的这种力学性能的研究很少。本文提出了猪肌肉组织的新数据,并对所有以前的工作进行了详细分析。结论是,在大多数情况下,这些组织实际上并没有测量断裂韧性。对以前工作的重新分析表明,试验样品的失效通常发生在材料的极限强度,这意味着从结果中无法获得有关韧性的信息。这一发现适用于软骨、人工软骨、肌肉和 TMJ 盘的工作。我们自己的数据也被发现是无效的,给出的测量断裂韧性值变化很大,并且与裂纹扩展增量有很强的依赖性。大试样的净截面失效应力和失效能相对恒定,与裂纹长度无关,而对于较小的试样,它们表现出强烈的尺寸效应。这些发现可以解释为,使用临界距离参数 L 估计的过程区尺寸与临界试样尺寸(裂纹长度和试样宽度)相似或更大。虽然这种分析对许多已发表的文献提出了质疑,但一个有用的发现是,软组织对缺陷具有很高的耐受性,能够承受几毫米长的裂纹而不会显著降低强度。

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