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Investigation of the Influence of Pre-Charged Hydrogen on Fracture Toughness of As-Received 2.25Cr1Mo0.25V Steel and Weld

机译:预充电氢气对焊接225Cr1mo0.25V钢和焊接骨折韧性影响的研究

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摘要

Fracture failure caused by hydrogen embrittlement (HE) is a major concern for the system reliability and safety of hydrogen storage vessels, which are generally made of 2.25Cr1Mo0.25V steel. Thus, study of the influence of pre-charged hydrogen on fracture toughness of as-received 2.25Cr1Mo0.25V steel and weld is of significant importance. In the current work, the influence of hydrogen on fracture toughness of as-received 2.25Cr1Mo0.25V steel and weld was systematically studied. Base metal (BM) and weld metal (WM) specimens under both hydrogen-free and hydrogen-charged conditions were tested using three-point bending tests. Hydrogen was pre-charged inside specimens by the immersion charging method. The J-integral values were calculated for quantitatively evaluating the fracture toughness. In order to investigate the HE mechanisms, optical microscopy (OM) and scanning electron microscopy (SEM) were used to characterize the microstructure of BM and WM specimens. The results revealed that the presence of pre-charged hydrogen caused a significant decrease of the fracture toughness for both BM and WM specimens. Moreover, the pre-charged hydrogen led to a remarkable transition of fracture mode from ductile to brittle pattern in 2.25Cr1Mo0.25V steel.
机译:引起的氢脆(HE)断裂破坏是用于系统的可靠性和安全性的氢储存容器,其通常由钢2.25Cr1Mo0.25V的一个主要问题。因此,预充电氢对作为接收到的2.25Cr1Mo0.25V钢和焊接断裂韧性的影响的研究是显著重要性。在目前的工作中,氢对作为接收到的2.25Cr1Mo0.25V钢和焊接断裂韧性的影响进行了系统的研究。碱金属(BM)和焊接金属(WM)的试样用三点弯曲试验测试的两种无氢和氢的带电条件下进行。通过浸渍的充电方法将氢气预充电内的标本。计算用于定量评价断裂韧性J积分值。为了调查该HE机制,光学显微镜(OM)和扫描电子显微镜(SEM)进行了表征BM和WM试样的显微结构。结果表明,预充电氢的存在造成断裂韧性两者BM和WM标本的显著降低。此外,充电预氢导致的断裂模式从韧脆图案2.25Cr1Mo0.25V钢的显着转变。

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