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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Selecting and Developing Advanced Alloys for Creep-Resistance for Microturbine Recuperator Applications
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Selecting and Developing Advanced Alloys for Creep-Resistance for Microturbine Recuperator Applications

机译:选择和开发用于微涡轮换热器应用的抗蠕变的高级合金

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摘要

Recuperators are considered essential hardware to achieve the efficiencies desired for advanced microturbines. Compact recuperator technologies, including primary surface, plate and fin, and spiral, all require thin section materials that have high-temperature strength and corrosion resistance up to 750℃ or above, and yet remain as low cost as possible. The effects of processing and microstructure on creep-rupture resistance at 750℃ and 100 MPa were determined for a range of austenitic stainless alloys made into 0.1-mm foils. Two groups of alloys were identified with regard to improved creep resistance relative to type 347 stainless steel. Alloys with better creep-rupture resistance included alloys 120, 230, modified 803 and alloy 740 (formerly thermie-alloy), while alloy 214 and 625 exhibited much better creep strength. Alloys 120 and modified 803 appeared to have the most cost-effective improvements in creep strength relative to type 347 stainless steel, and should be attractive for advanced microturbine recuperator applications.
机译:换热器被认为是实现高级微型涡轮机所需效率的必不可少的硬件。紧凑的换热器技术,包括主表面,板和翅片以及螺旋形,都需要薄截面材料,这些材料必须具有高达750℃或更高的高温强度和耐蚀性,并保持尽可能低的成本。确定了一系列加工成0.1毫米箔的奥氏体不锈钢合金的工艺和微观结构对750℃和100 MPa时的抗蠕变性的影响。相对于347型不锈钢,鉴定出两组合金具有更高的抗蠕变性。耐蠕变断裂性能更好的合金包括合金120、230,改性803和合金740(以前为热合金),而合金214和625表现出更好的蠕变强度。相对于347型不锈钢,合金120和改性803在蠕变强度方面具有最具成本效益的改进,并且对于先进的微型涡轮换热器应用应具有吸引力。

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