未硫化碳黑填充橡胶的 Tschoegl-chang-Bloch 非线性粘弹性构成定律的数值实现

IF 1.2 4区 工程技术 Q4 POLYMER SCIENCE
Mahmoud C. Assaad
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引用次数: 0

摘要

橡胶工程设计分析需要从根本上了解聚合物的机械行为,尤其是未硫化状态下的机械行为。这就需要建立一种三维构成材料来解释观察到的机械行为。该定律需要以易于在工程应用中实施的简单数学形式对粘弹性能进行现实描述。本文介绍了 Tschoegl-Chang-Bloch 时变非线性粘弹性构成定律的理论。在不同的变形场和多个载荷步骤下,对该定律进行了实验验证。详细介绍了实验室测试程序,以获得描述所考虑的材料所需的参数。通过用户子程序 UMAT,在有限元商业代码 Abaqus 中导出并编码了适合有限元应用的构成定律递归形式。针对蠕变或剪切松弛条件下的简单测试模型,对实验观察结果、理论结果和数值数据进行了比较。观察到的极佳一致性表明,该指导定律适用于分析未硫化碳黑填充橡胶的粘弹性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NUMERICAL IMPLEMENTATION OF THE TSCHOEGL–CHANG–BLOCH NONLINEAR VISCOELASTIC CONSTITUTIVE LAW FOR UNVULCANIZED CARBON BLACK–FILLED RUBBERS

Rubber engineering design analysis requires a fundamental understanding of the mechanical behavior of polymers, especially in their unvulcanized state. It necessitates the establishment of a three-dimensional constitutive material to account for the observed mechanical behavior. This law is required to produce realistic descriptions of the viscoelastic performance in a mathematically simple form that is easy to implement in engineering applications. This article describes the theory of the Tschoegl–Chang–Bloch time-dependent nonlinear viscoelastic constitutive law. The experimental verification of this law is provided under different deformation fields and multiple load steps. Laboratory test procedures to obtain the parameters required to describe the material under consideration are provided in detail. A recursive form of the constitutive law, suitable for finite element application, is derived and coded in the finite element commercial code Abaqus via the user subroutine UMAT. Comparisons between the experimental observations, the theoretical results, and the numerical data are drawn for simple test models examined under creep or shear relaxation conditions. The excellent agreements observed indicate the suitability of the governing law in analyzing viscoelastic problems of unvulcanized carbon black–filled rubbers.

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来源期刊
Rubber Chemistry and Technology
Rubber Chemistry and Technology 工程技术-高分子科学
CiteScore
3.50
自引率
20.00%
发文量
21
审稿时长
3.6 months
期刊介绍: The scope of RC&T covers: -Chemistry and Properties- Mechanics- Materials Science- Nanocomposites- Biotechnology- Rubber Recycling- Green Technology- Characterization and Simulation. Published continuously since 1928, the journal provides the deepest archive of published research in the field. Rubber Chemistry & Technology is read by scientists and engineers in academia, industry and government.
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