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Tearing Resistance Properties of Cr-Mo Steels with Internal Hydrogen Determined by the Potential Drop Method

机译:用电位降法测定内部氢对Cr-Mo钢的抗撕裂性能

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摘要

The tearing resistance, dJ/da, of conventional 2.25Cr-1Mo steels and a V-bearing steel (2.25Cr-1Mo-0.3V steel) with internal hydrogen was measured using the effective offset potential drop method. Internal hydrogen refers to test specimens that are precharged (thermally charged) prior to testing. In general, Cr-Mo steels, used widely in the refining and petrochemical industries, are susceptible to temper embrittlement. However, very few studies have dealt with the effects of hydrogen and temper embrittlement on the tearing resistance. Test specimens were prepared by subjecting them to normalizing, tempering, and post-weld heat treatments that simulated actual conditions. Some specimens were embrittled by step cooling. Hydrogen substantially reduced dJ/da for all samples except for that for the V-bearing steel, and temper embrittlement caused additional adverse effects on dJ/da for samples with internal hydrogen for which the temper embrittlement parameter, i.e., the J-factor, was large. (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:使用有效补偿电位降法测量了常规2.25Cr-1Mo钢和带有内部氢的V轴承钢(2.25Cr-1Mo-0.3V钢)的抗撕裂强度dJ / da。内部氢是指在测试前已预充电(热充电)的试样。通常,广泛用于精炼和石化行业的Cr-Mo钢易回火脆化。但是,很少有研究涉及氢和回火脆化对抗撕裂性的影响。通过对试样进行正火,回火和模拟实际条件的焊后热处理来制备试样。通过逐步冷却使一些样品变脆。除含V的钢外,所有样品的氢气均大大降低了dJ / da,回火脆化对内部氢气样品的dJ / da产生了其他不利影响,因为内部氢气的回火脆化参数(即J因子)为大。 (C)矿物,金属和材料学会和ASM International 2015

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