线性粘弹性理论描述材料线性延伸区域随静水压力增大影响的能力

IF 0.3 Q4 MECHANICS Moscow University Mechanics Bulletin Pub Date : 2021-07-06 DOI:10.3103/S0027133021010040
A. V. Khokhlov
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引用次数: 0

摘要

考虑了具有任意剪切和块体蠕变柔度的各向同性时变性材料的线性粘弹性本构关系的适用性指标。分析研究了在恒定单轴拉伸和恒定静水压力条件下由该线性关系产生的体积、纵向和侧向应变蠕变曲线族的一般性质。证明了粘弹性线性理论能够定性地描述随着静水压力的增大,材料线性行为范围(单调)扩展的影响;更确切地说,轴向柔度与应力水平无关的轴向应力值范围扩展的影响。通过对拉伸载荷和静水压力作用下材料蠕变试验数据的分析,揭示了理论蠕变曲线和柔度曲线的一些具体特征,可以方便地作为线性粘弹性理论的适用性或不适用性指标。
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On the Capability of Linear Viscoelasticity Theory to Describe the Effect of Extending Region of Material Linearity as the Hydrostatic Pressure Grows

Applicability indicators of the linear viscoelasticity constitutive relation for isotropic time-dependent materials with arbitrary shear and bulk creep compliances are considered. General properties of the creep curve families for volumetric, longitudinal, and lateral strains generated by this linear relation under constant uniaxial tension and constant hydrostatic pressure are studied analytically. It is proved that the linear theory of viscoelasticity is able to describe the effect of (monotonic) expansion of a linear behavior range of material qualitatively as the hydrostatic pressure grows; more precisely, the effect of expansion of a range of axial stress values under which the axial compliance is independent of the stress level. The analysis reveals a number of specific features of the theoretical creep and compliance curves that can be conveniently employed as the applicability or non-applicability indicators of the linear viscoelasticity theory by the data of material creep tests under action of tensile load and hydrostatic pressure.

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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
9
期刊介绍: Moscow University Mechanics Bulletin  is the journal of scientific publications, reflecting the most important areas of mechanics at Lomonosov Moscow State University. The journal is dedicated to research in theoretical mechanics, applied mechanics and motion control, hydrodynamics, aeromechanics, gas and wave dynamics, theory of elasticity, theory of elasticity and mechanics of composites.
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