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Conversion of a circumferentially cracked pipe into a beam and prediction of fatigue crack propagation in a beam using FRANC 2D

机译:使用FRANC 2D将周向破裂的管材转换为梁并预测梁中的疲劳裂纹扩展

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摘要

When pipes are subjected to different types of loading like compression, tension, internal pressure, bending or any combination of these may initiate and propagate a crack. This becomes more important if the pipes carry hazardous fluid. To predict fatigue crack propagation in circumferentially cracked pipe using its three dimensional data becomes cumbersome. In the first part of this project the pipe is converted into a beam using conformal transform. After the pipe was converted to beam it was found that the crack in the beam is not through. Hence the fatigue crack propagation cannot be simulated using FRANC2D as it is finite element based two dimensional crack propagation simulator software. In the second part of the project, the fatigue crack growth tests were carried out on an EN8 steel specimen in Instron 8800 machine. The crack propagation in EN8 steel beam was also simulated using FRANC 2D. Then the results obtained experimentally and from FRANC 2D were compared.
机译:当管道承受不同类型的载荷时,例如压缩,拉力,内部压力,弯曲或这些的任意组合,可能会引发并传播裂纹。如果管道输送有害流体,这将变得尤为重要。使用其三维数据来预测周向破裂管中的疲劳裂纹扩展变得很麻烦。在该项目的第一部分中,使用保形变换将管道转换为束。将管道转换为梁后,发现梁中的裂纹没有通过。因此,疲劳裂纹扩展无法使用FRANC2D进行模拟,因为它是基于有限元的二维裂纹扩展模拟器软件。在项目的第二部分中,在Instron 8800机器上的EN8钢试样上进行了疲劳裂纹扩展测试。还使用FRANC 2D模拟了EN8钢梁中的裂纹扩展。然后比较从实验和FRANC 2D获得的结果。

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