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Study on manufacture of container heads by two-step hydro-bulging of single-curvature polyhedron

机译:单曲多面体两步加氢胀管制造容器头的研究

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摘要

Container heads are indispensable components of pressure vessels, which have a wide application in industry. The traditional method for manufacturing a large size container head is to form double-curvature petals and polar shell plates, then assemble and weld them into a container head, which needs large size dies and heavy presses. This paper presents a two-step hydro-bulging method for the manufacture of ellipsoidal container heads. The method involves formation of a single-curvature sector shell, which is assembled and welded into an enclosed tubular polyhedron, then the cylindrical and transition zones are formed through the primary hydro-bulging. Next, the polar zone is formed through the secondary hydro-bulging of the container head. Finally, the shell is cut to reveal the container heads. This paper also describes hydro-bulging experiments of a tubular polyhedron and an enclosed shell obtained from the tubular polyhedron. The results show that the two-step hydro-bulging technology of the single-curvature polyhedron can be used to manufacture large container heads without using large size dies and heavy presses.
机译:容器头是压力容器必不可少的组成部分,在工业上具有广泛的应用。制造大尺寸容器头的传统方法是先形成双曲率的花瓣和极壳板,然后将它们组装并焊接到容器头中,这需要大尺寸的模具和重型压力机。本文提出了一种用于椭圆形容器头制造的两步水鼓胀方法。该方法包括形成一个单曲扇形壳,将其组装并焊接成一个封闭的管状多面体,然后通过一次水鼓胀形成圆柱区和过渡区。接下来,通过容器头部的二次水鼓胀形成极区。最后,将壳切开以露出容器头。本文还描述了管状多面体和从管状多面体获得的封闭壳的水鼓胀实验。结果表明,单曲多面体的两步水鼓胀技术可用于制造大型容器头,而无需使用大型模具和重型压力机。

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