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A novel viscoplastic model of high-density polyethylene pipe material

机译:高密度聚乙烯管材的新型粘塑性模型

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摘要

A nonlinear three-component elastic viscoplastic strain-rate-dependent model was developed for a high-density polyethylene pipe material. In this model, the stress at any point is assumed to be a unique function of the instantaneous irreversible strain, its rate and acceleration, irrespective of any intermediate stress and strain history. However, a reference strain rate was assumed and below this the response was independent of the strain rate. Parameters of the model were determined using published data on strain-rate-dependent material responses. The model was developed within the elasto-viscoplastic framework so that it could be used in solving boundary value problems. The return mapping algorithm of strain-rate-dependent elasto-plastic material is described with the detailed derivation of the consistent tangent operator for quadratic convergence. The model was successfully implemented in an existing finite-element code. Finite-element analyses using this model were capable of simulating the strain-rate-dependent stress-strain relation, the response to a jump in the strain rate and an unloading-reloading response for a high-density polyethylene pipe material published in the literature.
机译:针对高密度聚乙烯管材,建立了非线性三组分弹性粘塑性应变率相关模型。在该模型中,假定任意点的应力都是瞬时不可逆应变,其速率和加速度的唯一函数,而与任何中间应力和应变历史无关。但是,假定为参考应变率,在此以下,响应与应变率无关。使用与应变率相关的材料响应的公开数据确定模型的参数。该模型是在弹黏塑性框架内开发的,因此可以用于解决边值问题。描述了应变率相关的弹塑性材料的返回映射算法,并详细推导了用于二次收敛的一致切线算子。该模型已在现有的有限元代码中成功实现。使用该模型进行的有限元分析能够模拟文献中发表的高密度聚乙烯管材的应变率相关应力-应变关系,对应变率跃迁的响应以及卸载-再加载响应。

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