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Fatigue Crack Growth of Circular Pipes and Modeling of Single-Edge-Notched Tension (SENT) Specimen

机译:圆管疲劳裂纹扩展及单边缺口拉伸(SENT)试样建模

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摘要

Pipe installations usually experience high amplitude Seismic Vibrations. These vibrations may initiate a new cracks or it may extend the severity of the exiting cracks. The monitoring of crack growth and propagation becomes essential if the installation of pipes carry a hazardous fluid. The compliance technique is one of the most commonly used methods to measure the crack growth in small size specimen used to monitor crack. Compact tension (CT), three point bend bar (TPBB) etc. are generally preferred for laboratory tests. Correlations are available for CT, TPBB and some other geometry of small laboratory specimens. However, for pipes and elbows no such correlations are available. Fatigue crack growth tests were carried out on a test specimen in Instron 8502 machine and the necessary data and graphs were analyzed. Fracture toughness analysis is done with the help of Scanning Electron Microscope (SEM).udThe fatigue crack growth in a body is Exponential in nature. In the second part of this project a modified gamma model has been proposed to predict the crack growth in a Single Edge Notched Tension (SENT) Specimen. The values of the different parameters were obtained and the analysis was done after coding different programs in C++ and MATLAB software. The final result obtained was found to be coherent with the experimental findings.
机译:管道安装通常会遇到高振幅地震振动。这些振动可能会引发新的裂纹,也可能会扩展现有裂纹的严重程度。如果管道中装有危险流体,则对裂纹扩展和扩展的监控就变得至关重要。顺应性技术是测量用于监测裂纹的小尺寸试样中裂纹扩展的最常用方法之一。实验室测试通常首选紧凑张力(CT),三点弯曲杆(TPBB)等。 CT,TPBB和其他一些小型实验室标本的几何关系可用。但是,对于管道和弯头,没有这样的关联。在Instron 8502机器上的试样上进行了疲劳裂纹扩展测试,并分析了必要的数据和图表。断裂韧性分析是通过扫描电子显微镜(SEM)进行的。 ud人体疲劳裂纹的生长本质上是指数的。在该项目的第二部分中,提出了一种改进的伽马模型来预测单边缺口拉伸(SENT)试样中的裂纹扩展。在C ++和MATLAB软件中编写了不同的程序后,获得了不同参数的值并进行了分析。发现获得的最终结果与实验结果一致。

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