首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A new 'Tailor-made' methodology for the mechanical behaviour analysis of rubber-like materials: II. Application to the hyperelastic behaviour characterization of a carbon-black filled natural rubber vulcanizate
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A new 'Tailor-made' methodology for the mechanical behaviour analysis of rubber-like materials: II. Application to the hyperelastic behaviour characterization of a carbon-black filled natural rubber vulcanizate

机译:一种新的“量身定做”的方法,用于分析橡胶状材料的机械行为:II。炭黑填充天然橡胶硫化胶在超弹性行为表征中的应用

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摘要

The purpose of this paper is the modelling of the mechanical behaviour of an elastomeric material, through detailed experimental and numerical procedures, specific to large strains. The experimental technique is based on in-plane kinematics measurements using a speckle extensometer, from which the whole two-dimensional field of in-plane displacements is obtained by a digital image processing [Polymer (2002)]. This part of the work concerns the identification of the constitutive equation for a carbon black natural rubber (NR) vulcanizate. We start by quoting some theoretical considerations relative to rubber elasticity and stress-softening effect, which is the counterpart of the filler reinforcement. Then, we describe the experimental procedure and present data for both non-preconditioned and preconditioned samples. Next, the identification of the constitutive law parameters using a minimization algorithm is driven. Finally, we present the validation of the constitutive model, by its implementation into the finite element code SYSTUS and the numerical simulation of the response of double edge notched tensile (DENT) specimen.
机译:本文的目的是通过详细的实验和数值程序,针对大应变,对弹性体材料的机械性能进行建模。实验技术基于使用散斑引伸计进行的平面运动学测量,通过数字图像处理可从中获得平面位移的整个二维场[Polymer(2002)]。这部分工作涉及碳黑天然橡胶(NR)硫化橡胶的本构方程的识别。我们首先引用一些与橡胶弹性和应力软化效果有关的理论考虑,这是填料补强的对立面。然后,我们描述了实验程序并提供了非预处理和预处理样品的数据。接下来,驱动使用最小化算法的本构定律参数的识别。最后,我们通过对有限元代码SYSTUS的实施以及对双切口缺口拉伸(DENT)试样响应的数值模拟,对本构模型进行了验证。

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