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首页> 外文期刊>International Journal of Solids and Structures >A VISCOELASTIC CONSTITUTIVE MODEL FOR PARTICULATE COMPOSITES WITH GROWING DAMAGE
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A VISCOELASTIC CONSTITUTIVE MODEL FOR PARTICULATE COMPOSITES WITH GROWING DAMAGE

机译:损伤不断增长的颗粒复合材料的粘弹性本构模型

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摘要

A mechanical model which describes time- and temperature-dependent deformation behavior of particulate composites with changing microstructure, including growing damage, is described and then verified by experimental study of a viscoelastic filled elastomer. An existing constitutive model, which is based upon thermodynamics of irreversible processes with internal state variables, is first reviewed and then used to describe the mechanical behavior of elastic and viscoelastic media with changing microstructure. A rate-type equation is successfully employed in describing the evolution of microstructural changes, which are believed here to be primarily microcracking. An elastic-viscoelastic correspondence principle and the time-temperature superposition principle are used in modeling effects of the material's intrinsic viscoelasticity and the effects of temperature changes. Laboratory tests of the stress and dilatation responses of uniaxial test specimens under controlled monotonically increasing axial extension and constant confining pressure at different temperatures were performed. The effects of strain level, strain rate, confining pressure, and temperature on the stress and dilatation are described and compared to the theoretical model. (C) 1997, Elsevier Science Ltd. [References: 26]
机译:描述了一种力学模型,该模型描述了具有变化的微观结构(包括生长损伤)的颗粒复合材料随时间和温度变化的变形行为,然后通过对粘弹性填充弹性体的实验研究进行了验证。首先对现有的本构模型进行了研究,该模型基于具有内部状态变量的不可逆过程的热力学,然后用于描述具有变化的微观结构的弹性和粘弹性介质的力学行为。速率类型方程式已成功用于描述微观结构变化的演变过程,在此认为微观结构变化主要是微裂纹。弹性-粘弹性对应原理和时间-温度叠加原理用于建模材料固有粘弹性和温度变化的影响。在不同温度下,在受控的单调递增轴向延伸和恒定围压下,对单轴试样的应力和膨胀响应进行了实验室测试。描述了应变水平,应变速率,围压和温度对应力和膨胀的影响,并与理论模型进行了比较。 (C)1997,Elsevier Science Ltd. [引用:26]

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