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STRESS ANALYSIS AND BURST PRESSURE DETERMINATION OF TWO LAYER COMPOUND PRESSURE VESSEL

机译:两层复合容器的应力分析和突发压力测定

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Multilayer pressure vessel is designed to work under high-pressure condition. This paper introduces the stress analysis and the burst pressure calculation of a two-layer shrink fitted pressure vessel. In the shrink-fitting problems, considering long hollow cylinders, the plane strain hypothesis can be regarded as more natural. Generally hoops stress distribution is non-linear and sharply reduced toward the outer surface. By shrink fitting concentric shells towards the inner shells are placed in residual compression so that the initial compressive hoop stress must be relieved by internal pressure before hoop tensile stress are developed. Therefore the maximum hoop stress will be reduced, resulting more burst pressure. The analytical results of stress distribution and burst pressure is calculated and validated by ANSYS Workbench results.
机译:多层压力容器设计为在高压条件下工作。本文介绍了两个层收缩压力容器的应力分析和突发压力计算。在收缩拟合问题中,考虑长空气缸,平面应变假设可以被视为更自然。通常箍应力分布是非线性的并且朝向外表面急剧下降。通过收缩朝向内壳的同心壳被放置在残余压缩中,使得初始压缩箍应力必须通过在开发箍拉伸应力之前通过内部压力来缓解。因此,最大箍应力将减小,导致更大的突发压力。通过ANSYS工作台结果计算并验证了应力分布和突发压力的分析结果。

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