Residual stress evaluation and fatigue life prediction in the welded joint by x-ray diffraction

K. Yoo, K. Hwang, J. Chang, Jae Hoon Kim
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引用次数: 1

Abstract

In the fossil power plant, the reliability of the components which consist of the many welded parts depends on the quality of welding. The residual stress is occurred by the heat flux of high temperature during weld process. This decreases the mechanical properties as the strength of fatigue and fracture. The residual stress of the welded part in the recently constructed power plants has been the cause of a variety of accidents. The objective of this study is measurement of the residual stress and the full width at half maximum intensity (FWHM) by X-ray diffraction method and to estimate the feasibility of this application for fatigue life assessment of the high-temperature pipeline. The materials used for the study is P92 steel for the use of high temperature pipe on super critical condition. The test results were analyzed by the distributed characteristics of residual stresses and FWHM in x-ray diffraction intensity curve. Also, X-ray diffraction tests using specimens simulated low cycle fatigue damage were performed in order to analyze fatigue properties when fatigue damage conditions become various stages. As a result of X-ray diffraction tests for specimens simulated fatigue damages, we conformed that the ratio of the FWHM due to fatigue damage has linear relationship with fatigue life ratio algebraically. From this relationship, it was suggested that direct expectation of the life consumption rate was feasible.
用x射线衍射评价焊接接头残余应力及疲劳寿命预测
在火电厂中,由许多焊接部件组成的部件的可靠性取决于焊接质量。残余应力是由高温热流在焊接过程中产生的。这降低了疲劳强度和断裂强度等力学性能。近年来新建的电厂中,焊接件的残余应力一直是造成各种事故的原因。本研究的目的是利用x射线衍射法测量高温管道的残余应力和半最大强度下的全宽度,并评估该方法在高温管道疲劳寿命评估中的可行性。本研究选用的材料为超临界条件下高温管用P92钢。利用x射线衍射强度曲线的残余应力和FWHM分布特征对试验结果进行了分析。同时,对模拟低周疲劳损伤的试样进行了x射线衍射试验,分析了不同疲劳损伤阶段的疲劳性能。通过对模拟疲劳损伤试样的x射线衍射测试,在代数上证实了疲劳损伤引起的FWHM比与疲劳寿命比呈线性关系。由此关系可知,直接期望寿命消耗率是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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