首页> 外文会议>ASME Pressure Vessels and Piping conference >FINITE ELEMENT ANALYSIS FOR THE EVALUATION OF CRACKS AT A PIPE-FLANGE WELDED PART BY THE DIRECT-CURRENT POTENTIAL DIFFERENCE METHOD
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FINITE ELEMENT ANALYSIS FOR THE EVALUATION OF CRACKS AT A PIPE-FLANGE WELDED PART BY THE DIRECT-CURRENT POTENTIAL DIFFERENCE METHOD

机译:直角电位差法评估管道法兰焊接零件裂纹的有限元分析

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The use of a flange joint is a popular method to close the end of pipes or connect pipes in manufacturing industries. As the pipes are often subjected to vibrations and cyclic bending, fatigue cracking may occur at the welded part between the pipe and flange. It is therefore important to detect and monitor the cracking in this part to ensure safety of the whole piping system. The direct-current potential difference method (DC-PDM) is known as a suitable non-destructive technique to monitor the initiation and growth of cracks and it has been applied to cracks and wall thinning on the inner surface of pipes. In this study, finite element analyses were carried out to clarify the relationship between the size and location of cracks at the pipe-flange welded part and the potential difference. An evaluation method of circumferential crack length angle by DC-PDM was proposed.
机译:在制造业中,使用法兰接头是封闭管道末端或连接管道的一种常用方法。由于管道经常受到振动和周期性弯曲,因此在管道和法兰之间的焊接部位可能会出现疲劳裂纹。因此,重要的是检测和监控此部分的裂缝,以确保整个管道系统的安全。直流电势差法(DC-PDM)被公认为一种合适的非破坏性技术,用于监测裂缝的发生和发展,并且已应用于管道内表面的裂缝和壁薄。在这项研究中,进行了有限元分析,以弄清管道法兰焊接部分裂纹的大小和位置与电位差之间的关系。提出了一种基于DC-PDM的圆周裂纹长度角的评估方法。

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