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首页> 外文期刊>Journal of Materials Processing Technology >Fracture mechanics evaluation of a 0.5Mo carbon steel subjected to high temperature hydrogen attack
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Fracture mechanics evaluation of a 0.5Mo carbon steel subjected to high temperature hydrogen attack

机译:0.5Mo碳钢在高温氢侵蚀下的断裂力学评估

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摘要

Several 0.5Mo carbon steel tubes, subject to high temperature hydrogen attack (HTHA) are analyzed for fracture toughness using crack tip opening displacement (CTOD). A three condition fit-for-service evaluation of HTHA material is presented. The three conditions include plastic collapse analysis, static averaged fracture toughness analysis, and dynamic "good wall" fracture toughness analysis, Macro- and microhardness, scanning electron microscope, fractography, tensile tests, and light microscopy are used to supplement the overall fracture toughness analysis. Cold end strain hardening of the tubes is noticed to result in a 15 percent reduction in fracture toughness. The HTHA zone reduction in fracture toughness averages 28 percent. A unique zone outside but adjacent to the primary HTHA zone contains a relatively high hardness in the decarburized zone. This zone is located at the inside edge of the hot end tubesheet. The average fracture toughness reduction for this zone is 27 percent, with the most severe reduction being 42 percent. Due to the design stress condition of tubes and the lack of extensive HTHA, all tubes analyzed are found fit-for-service.
机译:使用裂纹尖端张开位移(CTOD)分析了几根经受高温氢侵蚀(HTHA)的0.5Mo碳钢管的断裂韧性。提出了HTHA材料的三条件适用性评估。这三个条件包括塑性塌陷分析,静态平均断裂韧度分析和动态“良好墙面”断裂韧度分析,宏观和微观硬度,扫描电子显微镜,断裂形貌,拉伸测试和光学显微镜用于补充整体断裂韧度分析。注意到管的冷端应变硬化导致断裂韧性降低了15%。 HTHA区断裂韧性平均降低28%。在主要HTHA区域之外但与之相邻的独特区域在脱碳区域中具有较高的硬度。该区域位于热端管板的内边缘。该区域的平均断裂韧性降低为27%,最严重的降低为42%。由于试管的设计应力条件和缺乏广泛的HTHA,所有被分析的试管都适合使用。

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