首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >STUDY ON BUCKLING STRENGTH REDUCTION FACTOR FOR VERTICAL VESSEL SKIRTS WITH ACCESS OPENING BY ELASTIC-PLASTIC ANALYSIS
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STUDY ON BUCKLING STRENGTH REDUCTION FACTOR FOR VERTICAL VESSEL SKIRTS WITH ACCESS OPENING BY ELASTIC-PLASTIC ANALYSIS

机译:弹性塑性分析垂直血管裙带屈曲强度缩减因子研究

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Access opening is a key geometric feature of vertical vessel skirts. To ensure the structural stability of skirts, buckling strength reduction caused by openings shall be numerically evaluated. In the previous study, Buckling Strength Reduction Factor (BSRF) was introduced as a design factor representing the effects of openings. However, BSRF is based on the elastic bifurcation buckling under axial compressive load. The relations between BSRF and practical design conditions, such as bending moment, material plasticity, and local deformation, are not yet evaluated. The purpose of this paper is to develop the buckling design method for vertical vessel skirts with access opening by investigating the relation between BSRF in consideration of practical design conditions and conventional design concepts for straight cylinder. The finite element analyses of buckling strength were conducted for cylindrical shells with and without openings under bending moments. In addition, nonlinear buckling behaviors of skirts with opening were studied by elastic-plastic analyses and limit-load analyses. These studies revealed the relation between BSRF and conventional buckling design concepts. Based on these results, a new buckling design approach which includes the application of BSRF was proposed. This proposed approach provides a practical guide for buckling design of vertical vessel skirts with access opening.
机译:接入开口是垂直船只裙的关键几何特征。为确保裙部的结构稳定性,应在数值评估由开口引起的屈曲强度减小。在先前的研究中,引入了屈曲强度减少因子(BSRF)作为表示开口影响的设计因素。然而,BSRF基于轴向压缩载荷下的弹性分叉弯曲。尚未评估BSRF与实际设计条件的关系,如弯矩,材料可塑性和局部变形。本文的目的是通过研究实际设计条件和直筒的传统设计概念,通过研究BSRF之间的关系,开发垂直血管裙的屈曲设计方法。弯曲强度的有限元分析是在弯曲时刻的圆柱形壳体的圆柱形壳体进行。此外,通过弹性塑料分析和极限载荷分析研究了开口的裙部的非线性屈曲行为。这些研究揭示了BSRF与传统屈曲设计概念之间的关系。基于这些结果,提出了一种包括BSRF应用的新屈曲设计方法。这种建议的方法提供了一种实用的垂直血管裙带,具有接入开口的折叠设计。

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