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A perspective on the design of high-temperature boiler components

机译:高温锅炉部件设计的观点

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摘要

Boiler pressure parts are designed to formalize codes such as the ASME Boiler and Pressure Vessel Code. These codes employ a "design-by-rule" approach, which is based on a combination of sound structural mechanics and boiler design and operating experience. These codes have served the industry well, but the need for a number of enhancements has been highlighted by the widespread use of creep strength-enhanced steels, the advent of ultrasupercritical boilers constructed from nickel-based alloys, and the cyclic duty required for some plants. The need for these enhancements is discussed to explain their origin and key challenges that must be tackled to provide robust design methods for the future. In particular, the use of reference stress concepts and design-by-analysis are discussed to highlight some practical issues. Weldments are identified as a particular concern because they are often a life-limiting feature, and since existing code rules do not adequately consider the high-temperature creep failure modes that can arise as a function of geometry, loading and material combination. Associated with the behavior of welds, multiaxial creep rupture is also identified as a topic that requires further study. The discussion illustrates the multidisciplinary nature of design and need for the materials and structural mechanics communities to work together. This should optimize the use of advanced, expensive alloys and reduce component wall thickness, facilitating pressure part manufacture and enhancing operational flexibility without compromising safety.
机译:锅炉压力部件的设计旨在规范诸如ASME锅炉和压力容器规范之类的规范。这些规范采用了“按规则设计”的方法,该方法基于良好的结构力学,锅炉设计和操作经验。这些规范在行业中发挥了很好的作用,但是由于蠕变强度增强钢的广泛使用,由镍基合金制成的超超临界锅炉的问世以及某些工厂所需的循环负荷,使得需要进行大量改进。讨论了这些增强功能的必要性,以解释其起源和主要挑战,必须解决这些挑战才能为将来提供可靠的设计方法。特别是,讨论了参考应力概念的使用和按分析设计,以突出一些实际问题。焊件被认为是特别关注的问题,因为它们通常是限制寿命的功能,并且由于现有的规范规则并未充分考虑到高温蠕变破坏模式,该模式可能会随着几何形状,载荷和材料组合而出现。与焊接行为有关,多轴蠕变断裂也被确定为需要进一步研究的主题。讨论说明了设计的多学科性质,以及材料和结构力学界需要共同努力。这应该优化先进,昂贵合金的使用,并减小部件壁厚,在不影响安全性的前提下,方便压力零件的制造并提高操作灵活性。

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