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Combined Effect of Temper and Hydrogen Embrittlement on Threshold for Hydrogen-Induced Fracture in Cr-Mo Steels

机译:回火和氢脆对Cr-Mo钢氢致断裂阈值的综合影响

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This paper presents the results of the research activities of the subcommittee on Hydrogen Embrittlement of the Japan Pressure Vessel Research Council (JPVRC). The combined effect of temper embrittlement and hydrogen embrittlement in Cr-Mo steels is discussed. It has been recognized that Cr-Mo steels used widely in the refining and petrochemical industry are quite susceptible to temper embrittlement. Although the synergetic relation between temper embrittlement and hydrogen embrittlement is a matter of major concern, studies regarding this subject are rarely encountered. Task group VIII (TG8) of the JPVRC conducted fracture toughness tests for three kinds of 2.25Cr-1Mo steels and 2.25Cr-1Mo-0.3V steel. These steels were prepared by subjecting them to normalizing, tempering and post-weld heat treatments which simulated actual conditions. Some specimens were embrittled by step cooling (Socal -1 treatment). It was found that the threshold for hydrogen-induced fracture was lowered when the specimen was exposed to pressurized hydrogen gas (15MPa) for 48 hours at 450 °C and there was no marked indication of the synergetic action concerning this embrittlement.
机译:本文介绍了日本压力容器研究理事会(JPVRC)氢脆小组委员会的研究活动结果。讨论了Cr-Mo钢中回火脆化和氢脆的综合作用。已经认识到,在精炼和石油化学工业中广泛使用的Cr-Mo钢很容易受到回火脆化的影响。尽管回火脆化和氢脆之间的协同关系是主要关注的问题,但是很少遇到关于该主题的研究。 JPVRC的第VIII任务组(TG8)对三种2.25Cr-1Mo钢和2.25Cr-1Mo-0.3V钢进行了断裂韧性测试。通过对钢进行正火,回火和焊后热处理(模拟实际情况)来制备这些钢。通过逐步冷却(Socal -1处理)使一些样品变脆。发现当样品在450℃下暴露于加压氢气(15MPa)中48小时时,氢致断裂的阈值降低,并且没有明显的迹象表明这种脆化具有协同作用。

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