首页> 外文会议>Proceedings of the 17th Iranian Conference of Biomedical Engineering >A nanoindentation modeling of viscoelastic creep and relaxation behaviors of ligaments mechanical characteristics of biological tissues
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A nanoindentation modeling of viscoelastic creep and relaxation behaviors of ligaments mechanical characteristics of biological tissues

机译:生物组织韧带力学特性的粘弹性蠕变和松弛行为的纳米压痕模型

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Nanoindentation has recently appeared as a powerful tool for measuring nano and micro-scale mechanical properties of biological tissues. In biological engineering, the majority of soft tissues exhibit as viscoelastic materials with a time-dependent response. However, the viscoelastic constitutive effects of biological tissues during nanoindentation are seldom considered rigorously. The presented paper develops a mathematical contact approach for independently measuring of creep compliance and relaxation modulus of the periodontal ligaments from nanoindentation tests using the constant - rate displacement and loading histories, respectively. A proper curve - fitting method has been developed to measure these characteristics via the nanoindentation of rigid Berkovich tips. Generalized Voigt-Kelvin and Wiechert models have been used to model constitutive equations of ligaments, in which relaxation and creep functions are represented by sum of a series of decaying exponential functions of time. Relaxation and Creep moduli should be measured from two nanoindentation tests separately to improve accuracy. Stress relaxation proceeds more rapidly than creep in periodontal ligaments.
机译:纳米压痕最近已成为测量生物组织的纳米和微米级机械性能的有力工具。在生物工程中,大多数软组织表现为具有时间依赖性响应的粘弹性材料。然而,很少严格考虑纳米压痕过程中生物组织的粘弹性本构作用。提出的论文开发了一种数学接触方法,用于分别使用恒速位移和载荷历史分别通过纳米压痕测试来独立测量牙周膜的蠕变顺应性和松弛模量。已经开发出一种合适的曲线拟合方法,以通过刚性Berkovich尖端的纳米压痕来测量这些特性。广义的Voigt-Kelvin模型和W​​iechert模型已被用来建模韧带的本构方程,其中松弛和蠕变函数由一系列时间的衰减指数函数之和表示。应分别从两个纳米压痕测试中测量松弛和蠕变模量,以提高准确性。应力松弛的进展​​比牙周膜的蠕变更快。

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