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Advanced modeling and numerical simulations for the thermo-chemico-mechanical behaviour of materials with damage and hydrogen, based on the thermodynamics of irreversible processes

机译:基于不可逆过程的热力学,对具有损伤和氢的材料的热化学机械行为进行高级建模和数值模拟

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摘要

In the present article, we propose a fully coupled thermo-elasto-plastic-damage theory, which includes both kinematic and isotropic hardening, and also accounts for hydrogen diffusion in metals. This theory is based on the thermodynamics of irreversible processes under small deformation hypothesis and suppose that hydrogen diffuses in both normal interstitial lattice sites and trapping sites. This model is implemented into Abaqus/Standard by developing a UEL user subroutine and using an "assumed strain" method. A numerical application is performed to simulate hydrogen diffusion in a metallic welded joint submitted to a long-time severe environment at constant temperature.
机译:在本文中,我们提出了一种完全耦合的热弹塑性损伤理论,该理论既包括运动学硬化和各向同性硬化,也考虑了氢在金属中的扩散。该理论基于小变形假设下不可逆过程的热力学,并假设氢在正常的间隙晶格位点和俘获位点扩散。通过开发UEL用户子例程并使用“假定应变”方法,将该模型实现为Abaqus / Standard。进行了数值计算,以模拟氢在金属焊接接头中在恒定温度下长期经受严酷环境的扩散。

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