关于可压缩准线性粘弹性简单单轴变形

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Anna Maria Cherubini, Riccardo De Pascalis
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引用次数: 0

摘要

我们研究了准线性粘弹性理论中的可压缩简单单轴变形。我们施加了纵向拉伸(伸展和压缩),并通过计算各向同性均质材料样品在无横向牵引条件下的横向变形和单轴应力,研究了可压缩性在这种变形中的作用。我们对几项试验进行了研究,并根据三组应变能量密度得出结论,这三组应变能量密度通过改变一组相关参数描述了可压缩超弹性行为。我们还计算了典型单周期实验测试的耗散能量。此外,我们还根据我们的结果研究了最近关于粘弹性合成泡沫的实验,并将其与使用与速率无关的非线性泊松函数的简化模型进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On the compressible quasilinear viscoelastic simple uniaxial deformation

On the compressible quasilinear viscoelastic simple uniaxial deformation

We study the compressible simple uniaxial deformation within the quasilinear viscoelasticity theory. We impose a longitudinal stretch (in both extension and compression), and we investigate the role of compressibility in such a deformation by computing the lateral deformation and the uniaxial stress for an isotropic homogeneous material sample under lateral-free traction conditions. Several tests are examined, and conclusions are drawn based on a set of three strain energy densities that describe compressible hyperelastic behaviours by varying the set of involved parameters. The dissipated energy is also computed for a typical one-cycle experimental test. Furthermore, we examine recent experiments on visco-elastomeric syntactic foams in light of our results, comparing them with the simplified model using the rate-independent nonlinear Poisson functions.

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来源期刊
The European Physical Journal Plus
The European Physical Journal Plus PHYSICS, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
8.80%
发文量
1150
审稿时长
4-8 weeks
期刊介绍: The aims of this peer-reviewed online journal are to distribute and archive all relevant material required to document, assess, validate and reconstruct in detail the body of knowledge in the physical and related sciences. The scope of EPJ Plus encompasses a broad landscape of fields and disciplines in the physical and related sciences - such as covered by the topical EPJ journals and with the explicit addition of geophysics, astrophysics, general relativity and cosmology, mathematical and quantum physics, classical and fluid mechanics, accelerator and medical physics, as well as physics techniques applied to any other topics, including energy, environment and cultural heritage.
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