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首页> 外文期刊>International Journal of Solids and Structures >A two-phase model for the diffuso-mechanical behaviour of semicrystalline polymers in gaseous environment
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A two-phase model for the diffuso-mechanical behaviour of semicrystalline polymers in gaseous environment

机译:气态环境中半结晶聚合物扩散力学行为的两相模型

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The increasing use of semicrystalline polymers (SCPs) in complex petroleum structures which are subjected to high variations of temperature and gas pressure requires the development of reliable and predictive constitutive models. For that purpose a diffuso-elastoviscoplastic model is presented here by considering a two-phase representation, classically used in porous media, for the representative volume element (RVE) of SCP in gaseous environment. One phase is crystalline (skeleton), and the other corresponds to the mixture (fluid) of gas and free amorphous (the latter is considered penetrable by gas). The modelling is described within the framework of the thermodynamics of irreversible processes with internal variables. General balance equations are established by considering the above RVE. The general diffuso-mechanical macroscopic continuum formulation obtained is applied to elastoviscoplastic behav_iour. The implementation of this two-phase diffuso-elastoviscoplastic model in AbaqusTM' software via a user subroutine allows to study the interactions between crystal, free amorphous and gas during a rapid decompression test. More precisely, the evolution of pressure in the two-phase polyvinylidene fluoride SCP is given during a decompression test with carbon dioxide. Some results are discussed. The presented model is supposed to facilitate the introduction of damage criterion in order to describe the blistering occurring during a decompression.
机译:在温度和气压变化较大的复杂石油结构中,越来越多地使用半结晶聚合物(SCPs),这需要开发可靠且可预测的本构模型。为此,这里考虑了在气态环境中SCP的代表性体积元素(RVE)的两相表示法(通常用于多孔介质),提出了扩散弹塑性粘塑性模型。一相是晶体(骨架),另一相对应于气体与游离无定形的混合物(流体)(后者被认为可被气体渗透)。在具有内部变量的不可逆过程的热力学框架内描述了模型。通过考虑上述RVE建立一般平衡方程。将获得的一般的扩散-机械宏观连续体配方应用于弹性粘塑性行为。通过用户子例程在AbaqusTM软件中实施此两阶段扩散-弹塑性塑性模型,可以研究快速减压测试期间晶体,游离非晶态和气体之间的相互作用。更精确地,在用二氧化碳进行减压测试期间,给出了两相聚偏二氟乙烯SCP中压力的变化。讨论了一些结果。为了描述在减压期间发生的起泡,提出的模型应该有助于引入损伤标准。

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