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AN INCREMENTAL CONSTITUVE LAW FOR DAMAGING VISCOELASTIC MATERIALS

机译:损伤粘弹性材料的增量本法法

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An incremental formulation suitable for modelling of materials with damaging viscoelastic behaviours is proposed in this work. A constitutive law based on linear viscoelasticity coupled with strain dependent damage is developed. The viscoelastic model is represented by a generalized Maxwell's chain. It is governed by a set of internal stress variables attached to the branches of the Maxwell's chain. The damage evolution is governed by values gained by a pseudo strain. The coupled law is turned into an incremental form suitable for the numerical analysis of damaging time dependent structures. Taking advantage of the incremental form, the coupled damaging viscoelastic law is implemented as a step-by-step procedure. The calculation procedure consists of a damaging elastic step followed by a number of damaging viscoelastic steps. The damage variable is adjusted at each step, according to the value gained by the pseudo strain. Exemplary calculations are worked out for two cases of uniaxial and biaxial variable or cyclic loadings. The results show the efficiency of the incremental model. It is worth noticing that the time increment used for the calculations is not necessarily small. As a consequence, precise analysis of damaging time dependent structures can be performed for low calculation cost.
机译:在这项工作中提出了适用于具有损坏粘弹性行为的材料建模的增量制剂。开发了一种基于线性粘弹性的组成型定律,耦合与应变依赖性损伤。粘弹性模型由广义麦克斯韦的链代表。它由一组附着在Maxwell链的分支的内部压力变量控制。损伤演变由伪菌株获得的值控制。耦合法变成了适合于损坏时间依赖结构的数值分析的增量形式。利用增量形式,耦合损坏的粘弹性法被实施为逐步的过程。计算过程包括损坏的弹性步骤,然后是一些损伤的粘弹性步骤。根据伪应变所获得的值,在每个步骤中调整损伤变量。在两个单轴和双轴变量或循环载荷的两种情况下制定示例性计算。结果显示了增量模型的效率。值得注意的是,用于计算的时间增量不一定很小。因此,可以对低计算成本进行损坏时间依赖结构的精确分析。

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