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Effects of crack position on fatigue life of large seamless storage vessels made of 4130X for hydrogen refueling station

机译:裂纹位置对加氢站用4130X制成的大型无缝储罐疲劳寿命的影响

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Fatigue property of Cr-Mo steel is significantly degraded by hydrogen embrittlement (HE), which probably influences the fatigue life of hydrogen storage vessels made of Cr-Mo steel. In this study, tests of fatigue crack growth rate (FCGR) for specimens extracted from the cylinder, juncture and shoulder of a seamless storage vessel made of 4130X for hydrogen refueling station were performed in 45 MPa hydrogen gas. Based on the test results, a finite element method (FEM) based on adaptive grid technique was applied to calculate fatigue life of the vessel with an initial crack at different positions. 3D laser scanning technology was used to build the model which can well conform to the actual vessel. Results indicate that the FCGR of 4130X in 45 MPa hydrogen is approximately 10-15 times of the FCGR in air. The FCGR of specimens from the shoulder is approximately 1.2-1.5 times of that from the cylinder and juncture. However, as the influence of stress distribution, the fatigue life of a vessel with a crack in the middle of the cylinder is lower than that of the vessel which exists crack with the same size at the juncture and shoulder. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Cr-Mo钢的疲劳性能会因氢脆(HE)而大大降低,这可能会影响Cr-Mo钢制成的储氢容器的疲劳寿命。在这项研究中,对在45 MPa氢气中从由4130X制成的无缝储氢容器的圆柱体,接合处和肩部提取的样品进行了疲劳裂纹扩展率(FCGR)的测试。根据测试结果,应用基于自适应网格技术的有限元方法(FEM)来计算在不同位置具有初始裂纹的船舶的疲劳寿命。使用3D激光扫描技术来构建可以与实际船只完全吻合的模型。结果表明,4130X在45 MPa氢气中的FCGR约为空气中FCGR的10-15倍。肩部标本的FCGR约为圆柱体和接合处标本的FCGR的1.2-1.5倍。然而,受应力分布的影响,在圆柱体中间有裂纹的容器的疲劳寿命比在相同的缝隙和肩部处存在相同尺寸的裂纹的容器的疲劳寿命低。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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