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Weldability and weld performance of candidate nickel based superalloys for advanced ultrasupercritical fossil power plants Part II: weldability and cross-weld creep performance

机译:先进的超超临界化石电厂的候选镍基高温合金的可焊性和焊接性能第二部分:可焊性和交叉焊接蠕变性能

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摘要

Fossil fuel will continue to be the major source of energy for the foreseeable future. To meet the demand for clean and affordable energy, an increase in the operating efficiency of fossil fired power plants is necessary. There are several initiatives worldwide to achieve efficiencies >45% HHV (higher heating value) through an increase in steam temperature (700-760 degrees C) and pressure (27.6-34.5 MPa). Realising this goal requires materials with excellent creep rupture properties and corrosion resistance at elevated temperatures. Two previous papers addressed the welding and weldability of ferritic and austenitic stainless steels. Welding and weldability of nickel based alloys will be discussed in a two-part paper. In this paper, the primary focus will be on the behaviour of candidate nickel based alloys that are being proposed in advanced ultrasupercritical power plants and with regard to weldability (Part I) and cross-weld creep performance (Part II).
机译:在可预见的将来,化石燃料将继续成为主要能源。为了满足对清洁和负担得起的能源的需求,必须提高化石燃料发电厂的运行效率。全球范围内有数项举措旨在通过提高蒸汽温度(700-760摄氏度)和压力(27.6-34.5 MPa)来实现> 45%HHV(更高的发热量)的效率。为了实现这一目标,需要具有优异的蠕变断裂特性和在高温下具有耐腐蚀性的材料。先前的两篇论文讨论了铁素体和奥氏体不锈钢的焊接性和可焊性。镍基合金的焊接性和可焊性将分为两部分讨论。在本文中,主要焦点将放在先进的超超临界电厂中正在提出的候选镍基合金的性能以及焊接性(第一部分)和交叉焊接蠕变性能(第二部分)方面。

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