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Effect of specimen size and shape on creep rupture behavior of creep strength enhanced ferritic steel welds

机译:试样尺寸和形状对蠕变强度增强铁素体钢焊缝蠕变断裂行为的影响

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摘要

The creep strength enhanced ferritic (CSEF) steels such as Grades 91, 92, 122, 911, 23 and 24 have become very important key materials for high efficiency fossil-fired power plants for last decades, however the long-term creep rupture strength and strength reduction in welds due to Type IV failure of these steels are serious problem to be urgently resolved. In order to use CSEF steel welds safely setting new weld strength reduction factors have internationally discussed. For instance ASME Boiler and Pressure Vessel Code Committee recently developed a new creep strength reduction factors for CSEF steels intercritically post-weld heat treated to be 0.5 based upon the creep rupture data obtained for standard creep specimens. However it is needed to make further consideration on the specimen size/shape effect on the creep strength of the welds to determine more appropriate weld strength reduction factors and joint influence factors. Present report provides comprehensive creep rupture test results of the specimens with various size and shape, and full size components dealing with creep rupture location/behavior and specimen size/shape effect on the creep rupture strength of CSEF steel welds.
机译:近几十年来,诸如91、92、122、911、23和24等蠕变强度增强的铁素体(CSEF)钢已成为高效化石火力发电厂非常重要的关键材料,但是长期蠕变断裂强度和这些钢的IV型失效导致的焊缝强度降低是一个亟待解决的严重问题。为了安全地使用CSEF钢焊缝,国际上已经讨论了设定新的焊接强度降低因子的方法。例如,ASME锅炉和压力容器规范委员会最近根据标准蠕变样品获得的蠕变断裂数据,对经二次焊后热处理的CSEF钢开发了新的蠕变强度降低因子,将其降低为0.5。但是,需要进一步考虑试样尺寸/形状对焊缝蠕变强度的影响,以确定更合适的焊缝强度降低因子和接头影响因子。本报告提供了各种尺寸和形状的试样的全面蠕变断裂测试结果,以及涉及蠕变断裂位置/行为和试样尺寸/形状对CSEF钢焊缝蠕变断裂强度影响的全尺寸零件。

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