董建令, 余志武. 单曲率多面壳体液压胀形壁厚分布研究[J]. 工程力学, 1996, 13(2): 97-102.
引用本文: 董建令, 余志武. 单曲率多面壳体液压胀形壁厚分布研究[J]. 工程力学, 1996, 13(2): 97-102.
Dong Jianling, Yu Zhiwn. STUDY ON WALL THICKNESS DISTRIBUTION OF A HYDROBULGED SINGLE-CURVATURE POLYHEDRON[J]. Engineering Mechanics, 1996, 13(2): 97-102.
Citation: Dong Jianling, Yu Zhiwn. STUDY ON WALL THICKNESS DISTRIBUTION OF A HYDROBULGED SINGLE-CURVATURE POLYHEDRON[J]. Engineering Mechanics, 1996, 13(2): 97-102.

单曲率多面壳体液压胀形壁厚分布研究

STUDY ON WALL THICKNESS DISTRIBUTION OF A HYDROBULGED SINGLE-CURVATURE POLYHEDRON

  • 摘要: 本文对单曲率多面壳体胀形过程中壁厚分布规律进行了研究。结果表明单曲率多面壳体胀形成球后壁厚的分布是不均匀的,焊缝附近部分的减薄率较小,甚至取负值,而远离焊缝的部分的减薄率较大。在极带板上最大减薄率发生在中心部位,而在单曲率柱面壳板上最大减薄率发生在经向对称线和纬向对称线的相交部位。

     

    Abstract: Single-curvature polyhedron hydrobulging technology is a method to build large spherical vessels without using dies and presses. With the method single-curvature cylindrical shell plates formed by common rolling machines are assembled and welded into an enclosed singlecurvature polyhedron, which are then hydrobulged into a spherical vessel. This paper stubie wallthickness distribution of a single-curvature polyhedron in the hydrobulging Process. The result shows that wall thickness distribution is not even. The thinning rate of the detecting point near a fillet welded joint is smaller than that of the detecting point far from the fillet welded joint, even negative. In a polar zone, the maximum rate is reached at the cotal point. In a singlecurvature cylindrical Shell plate, the maximum thinning rate happens at the intersection point of the meridian symmetrical line and latitudinal latitudinal line.

     

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