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Elastic buckling of ring-stiffened cone-cylinder intersections under internal pressure

机译:内压下加劲的圆锥圆柱相交处的弹性屈曲

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Cone-cylinder intersections are commonly found in pressure vessels and piping. Examples include conical end closures to cylindrical vessels and conical reducers between cylinders of different radii. In the case of a cone large end-to-cylinderintersection under internal pressure, the intersection is subject to a large circumferential compressive force. Both the cone and the cylinder may be thickened near the intersection to resist this compression, but it is often convenient and necessary toaugment further the strength of the intersection using an annular plate ring stiffener. Under this large circumferential compression, the intersection may fail by elastic buckling, plastic buckling or plastic collapse. This paper describes aninvestigation of the elastic buckling strength of ring-stiffened cone-cylinder intersections. Two buckling modes are identified: a shell mode for thin intersections with a shallow cone (a cone with its apex half angle approaching 90°) and/or a relatively stocky ring stiffener, and a ring mode for other cases. An existing elastic buckling approximation for annular plate rings in steel silos is found to be applicable to the intersection when it buckles in the ring mode. New approximate design equations arealso established for the shell mode. In addition, simple expressions are identified which relate the number of circumferential buckling waves to the geometric parameters of the intersection.
机译:在压力容器和管道中通常会发现圆锥圆柱相交。例子包括圆柱形容器的锥形端盖和不同半径的圆柱体之间的锥形变径管。在内压作用下圆锥形的端到缸相交较大的情况下,相交处承受较大的周向压缩力。锥体和圆柱体都可以在相交处附近加厚以抵抗这种压缩,但是通常使用环形板环加强件方便并且有必要进一步提高相交的强度。在较大的圆周压缩下,相交可能会因弹性屈曲,塑性屈曲或塑性塌陷而失效。本文描述了对环形加劲圆锥圆柱相交处的弹性屈曲强度的研究。确定了两种屈曲模式:壳模式,用于与浅圆锥体(顶半角接近90°的圆锥体)和/或相对粗大的环形加劲肋之间的细交点,以及用于其他情况的环形模式。发现钢筒仓中环形板环的现有弹性屈曲近似值适用于在环形模式下弯曲的相交处。还为壳模式建立了新的近似设计方程。另外,确定了简单的表达式,这些表达式将圆周屈曲波的数量与相交的几何参数相关联。

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