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NONLINEAR ANALYSIS IN PRESSURE VESSEL DESIGN CODES RECOMMENDATIONS FOR CODIFIED RULES IMPROVEMENTS

机译:压力容器设计代码的非线性分析,建议进行编纂规则改进

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During the past 30 years the main rules to design pressure vessels were based on elastic analyses. Many conservatisms associated to these different elastic approaches are discussed in this paper, like: stress criteria linearization for 3-D components, stress classification in nozzle areas, plastic shake down analysis, fatigue analysis, K_e evaluation, and pipe stress criteria for elastic follow-up due to thermal expansion or seismic loads... This paper will improve existing codified rules in nuclear and non-nuclear Codes that are proposed as alternatives to elastic evaluation for different failure modes and degradation mechanisms: plastic collapse, plastic instability, tri-axial local failure, rupture of cracked component, fatigue and K_e, plastic shakedown. These methods are based on limit loads, monotonic or cyclic elastic-plastic analyses. Concerned components are mainly vessels and piping systems. No existing Code is sufficiently detailed to be easily applied; the needs are stress analysis methods through finite elements, material properties including material constitutive equations and criteria associated to each methods and each failure modes. A first set of recommendation to perform these inelastic analysis will be presented to improve existing codes on an international harmonized way, associated to all material properties and criteria needed to apply these modern methods. An international draft Code Case is in preparation.
机译:在过去的30年内,设计压力容器的主要规则是基于弹性分析。本文讨论了与这些不同弹性方法相关的许多保守主义,如:3-D组分的应力标准线性化,喷嘴区域的应力分类,塑料抖动分析,疲劳分析,K_E评估和管应力标准的弹性跟随 - 由于热膨胀或地震载荷,本文将改善核和非核代码中的现有编纂规则,这些规则建议作为不同故障模式的弹性评估的替代品和降解机制:塑料坍塌,塑料不稳定,三轴局部失败,破裂组件破裂,疲劳和k_e,塑料Shakedown。这些方法基于极限载荷,单调或循环弹性塑料分析。有关组件主要是船舶和管道系统。不充分详细地应用现有代码;通过有限元件,材料特性,包括材料本要方程式方程和与每种故障模式相关联的标准,需求是应力分析方法。将提出第一套执行这些无弹性分析的建议,以改善与应用这些现代方法所需的所有材料特性和标准相关的国际谐波的现有代码。国际草案代码案件正在准备中。

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