首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >COMPARISON OF DECOUPLED AND COUPLED ANALYSES FOR HYDROGEN TRANSPORT IN FRACTURE SPECIMENS
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COMPARISON OF DECOUPLED AND COUPLED ANALYSES FOR HYDROGEN TRANSPORT IN FRACTURE SPECIMENS

机译:断裂标本中氢传输的去耦和耦合分析的比较

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摘要

Hydrogen embnttlement is an important issue in many industries. Fracture resistance of metals is often weakened by the presence of hydrogen. In this paper, two diffusion models are compared for hydrogen transport analysis. One is the coupled model where the concentration of hydrogen in the lattice is integrated with mechanical properties. The other is the decoupled model in which the hydrogen diffusion is independent of the mechanical properties; but depends on the stress state. Finite element analyses are performed for a boundary layer specimen with a blunting crack and a four-point bend specimen with rounded notch. Hydrogen concentration profiles around the blunt crack (or notch) are compared under different boundary conditions and material properties. It is observed that, in spite of the difference in constitutive models, there is a similarity between hydrogen concentration in normal interstitial sites by the two models. In case that large plastic strain is present (such as those in low to moderate strength steels) there is a substantial difference in hydrogen concentration between the two models.
机译:氢脆是许多行业中的重要问题。氢的存在通常会削弱金属的抗断裂性。在本文中,比较了两个扩散模型用于氢迁移分析。一种是耦合模型,其中晶格中氢的浓度与机械性能结合在一起。另一个是解耦模型,其中氢的扩散与机械性能无关。但取决于压力状态。对具有钝化裂纹的边界层试样和具有圆形缺口的四点弯曲试样进行了有限元分析。比较了在不同边界条件和材料特性下钝裂纹(或缺口)周围的氢浓度分布。观察到,尽管本构模型不同,但两种模型在正常间隙位置的氢浓度之间存在相似性。如果存在较大的塑性应变(例如,中低强度钢中的应变),则两种模型之间的氢浓度会存在显着差异。

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