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首页> 外文期刊>Mechanics of materials >Identification of constitutive model for rubber elasticity from micro-indentation tests on natural rubber and validation by macroscopic tests
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Identification of constitutive model for rubber elasticity from micro-indentation tests on natural rubber and validation by macroscopic tests

机译:通过天然橡胶的微观压痕试验确定橡胶弹性的本构模型并通过宏观试验进行验证

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摘要

Micro-hardness testing is widely used to measure the materials local response and is very valuable to describe gradients of physical properties. For polymers, the most common use is to measure a scalar value (hardness or modulus), which gives access to useful qualitative information but can clearly not be used to identify local constitutive models, strongly needed to achieve the numerical simulation of heterogeneous massive parts. In this study, load/displacement curves obtained at a micro-scale are used to identify the parameters of an Edwards-Vilgis hyperelastic model. The protocol proposed is coupling FE simulations achieved with Abaqus and optimization procedures using the dedicated software Boss Quattro. In order to limit the microstructure and viscous effects, the material studied is an unfilled natural rubber which exhibits a behavior very close to perfect hyperelasticity. Several numerical parameters (indent geometry, friction, thickness,...) as well as experimental protocols were tested in order to check the protocol reliability. The identified parameters are used to simulate macroscopic tests (tensile, compression and pure shear tests). The agreement with experimental data is very good, which is rarely found in the literature and which validates several numerical assumptions.
机译:显微硬度测试被广泛用于测量材料的局部响应,对于描述物理特性的梯度非常有价值。对于聚合物,最常见的用途是测量标量值(硬度或模量),该标量值可以访问有用的定性信息,但显然不能用于识别局部本构模型,这是实现异质块状零件数值模拟的强烈要求。在这项研究中,使用微观尺度获得的载荷/位移曲线来识别Edwards-Vilgis超弹性模型的参数。提出的协议是使用专用软件Boss Quattro结合使用Abaqus实现的有限元仿真和优化程序。为了限制微观结构和粘性效应,研究的材料是未填充的天然橡胶,其表现出非常接近完美的超弹性的行为。测试了几个数值参数(压痕几何形状,摩擦力,厚度等)以及实验规程,以检查规程的可靠性。识别出的参数用于模拟宏观测试(拉伸,压缩和纯剪切测试)。与实验数据的一致性非常好,这在文献中很少发现,并且可以验证几个数值假设。

著录项

  • 来源
    《Mechanics of materials》 |2011年第12期|p.775-786|共12页
  • 作者单位

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Laboratoire Brestois de Mecanique et des Systemes (EA 4325), ENSTA Bretagne/Universite de Brest/ENIB, 2 rue F. Vemy 29806 Brest Cedex 9, France;

    Trelleborg Automotive AVSEurope, Z.I. Nantes Carquefou, BP10419, 44474 Carquefou Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    micro-hardness testing; inverse identification; rubber; vickers indentation;

    机译:显微硬度测试;逆辨识橡胶;维氏压痕;

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