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首页> 外文期刊>International Journal of Mechanical Sciences >Analytical solution for limit load of orthotropic pressure pipe with internal circumferential crack
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Analytical solution for limit load of orthotropic pressure pipe with internal circumferential crack

机译:内圆周裂纹的正交压力管极限负荷的分析解决方案

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摘要

Based on the Hill yield criterion, considering three directional stress (r, theta, z) of pressure pipe, the analytical solution for limit load of orthotropic pressure pipe with constant-depth internal circumferential crack under combined pressure, axial force and bending has been derived. The effect of crack size, anisotropy of pipe material, load (pressure, moment), and pipe size on the limit load of orthotropic pressure pipe is discussed. The results show that it is necessary to consider three directional stress for thick-walled pipe, and the influence of radial stress on the limit load cannot be ignored for thick-walled pipe. The limit load of pipe with constant-depth internal circumferential crack decreases with crack size. The limit load of pipe under pure bending is only related to axial yield strength. The limit load of pipe under pure internal pressure is mainly determined by circumferential yield strength.
机译:基于Hill产值标准,考虑到压力管的三个方向应力(R,Theta,Z),衍生出在综合压力下,轴力和弯曲下具有恒定深度内周裂纹的正交压力管的限制负荷的分析解决方案 。 讨论了裂缝尺寸,管材各向异性,负荷(压力,力矩)和管尺上的效果,在正交压力管的极限载荷上。 结果表明,需要考虑厚壁管的三个方向应力,并且对于厚壁管,不能忽略径向应力对极限载荷的影响。 具有恒定深度内周裂纹的管道的极限载荷随裂纹尺寸减小。 纯弯曲下管道的极限载荷仅与轴向屈服强度有关。 纯内部压力下的管道的极限负荷主要通过周向屈服强度确定。

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