首页> 外文会议>ASME Pressure Vessels Piping Conference >EXPERIMENTAL AND SIMULATION STUDY ON EFFECTIVE HYDROGEN DIFFUSIVITY OF COLD-WORKED TYPE-304 AUSTENITIC STAINLESS STEEL
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EXPERIMENTAL AND SIMULATION STUDY ON EFFECTIVE HYDROGEN DIFFUSIVITY OF COLD-WORKED TYPE-304 AUSTENITIC STAINLESS STEEL

机译:304型奥氏体不锈钢有效氢扩散率的实验与模拟研究

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This study presents some measurements of the effective hydrogen diffusivity in a cold-rolled, Type-304 stainless steel. Steel plates rolled under various cold working (CW) ratios were prepared. Disk specimens, referred to as LT and SL specimens, were sampled from the plates to determine the diffusivity. The rolling direction is perpendicular to the thickness direction for LT specimens and parallel for the SL specimens. Fraction and distribution of a' phase islands resulting from strain-induced martensite were characterized by electromagnetic induction (EMI) method and electron backscatter diffraction (EBSD) analysis, respectively. The diffusivity of the LT and SL specimens exposed to high-pressure hydrogen gas was determined experimentally through desorption methods. Hydrogen permeation tests for LT and SL specimens were simulated using the finite element method (FEM) by considering a model material containing an inhomogeneous distribution of a' phase islands. The EMI measurements established that the fraction of the α' phase increases with the CW ratio. The phase maps from the EBSD analysis revealed an important difference in α' phase distribution on planes perpendicular and parallel to the rolling direction (LT and SL planes). For CW = 60%, the diffusivity of the SL specimen was five times larger as compared to the LT specimen, although the fraction of the α' phase is equal. The simulation of the permeation tests also showed a strong difference in the diffusivity between both specimens, and therefore supports the experimental results. Both experiments and simulations suggested that the anisotropic nature of the effective hydrogen diffusivity (in LT and SL specimens) could be attributed to the inhomogeneous distribution of the α' phase islands in the cold-rolled material.
机译:这项研究提出了对冷轧304型不锈钢中有效氢扩散率的一些测量方法。制备以各种冷加工(CW)比率轧制的钢板。从板中取样称为LT和SL样品的圆盘样品,以确定其扩散率。轧制方向垂直于LT试样的厚度方向,平行于SL试样。应变诱导马氏体产生的a'相岛的分数和分布分别通过电磁感应(EMI)方法和电子背散射衍射(EBSD)分析进行表征。通过解吸实验确定了暴露于高压氢气的LT和SL样品的扩散率。通过考虑包含a'相岛不均匀分布的模型材料,使用有限元方法(FEM)对LT和SL样品的氢渗透测试进行了模拟。 EMI测量表明,α'相的分数随CW比的增加而增加。 EBSD分析的相图揭示了在垂直于轧制方向和平行于轧制方向的平面(LT和SL平面)上的α'相分布存在重要差异。对于CW = 60%,尽管α'相的分数相等,但SL样品的扩散率是LT样品的五倍。渗透测试的模拟还显示出两个样品之间的扩散率差异很大,因此可以支持实验结果。实验和模拟均表明,有效氢扩散率的各向异性(在LT和SL样品中)可归因于冷轧材料中α'相岛的不均匀分布。

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