首页> 外文会议>EPRI s International Conference on Advances in Materials Technology for Fossil Power Plants;International 123HiMAT Conference on High-Temperature Materials >THE STATUS OF CONTINUED DEVELOPMENT OF HEAVY SECTION CASTINGS IN 9CR STEELS AND NICKEL ALLOYS FOR HIGH TEMPERATURE APPLICATIONS
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THE STATUS OF CONTINUED DEVELOPMENT OF HEAVY SECTION CASTINGS IN 9CR STEELS AND NICKEL ALLOYS FOR HIGH TEMPERATURE APPLICATIONS

机译:9%Cr钢和高温应用中重型铸件铸件的持续发展现状

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To meet worldwide emission targets many Government policies either avoid the use of coal burning plant for future energy production, or restrict emissions per kilogram of coal consumed beyond the capability of most conventional plant. As a result this has accelerated current worldwide developments of steel and nickel alloys for coal-fired plant to operate at temperatures in excess of 625°C. Within the UK a modified 9%Cr steel has been developed which is based on the MarBN steel first proposed by Professor Fujio Abe of NIMS Japan, and has been designated IBN-1. The steel is modified by additions of, typically, 3% cobalt and tungsten with controlled additions of boron and nitrogen. While development of 9%Cr steels has continued since the last EPRI high temperature material conference in 2016 (Portugal), parallel developments in nickel alloy castings for even higher temperature and pressure applications have also continued. This paper summarises the latest developments in both of these material types.
机译:为了满足全球排放目标,许多政府政策要么避免使用煤炭燃烧工厂,以便将未来的能源生产使用,或限制每公斤煤的排放超出大多数常规工厂的能力。因此,这加速了燃煤植物的钢和镍合金的当前全球发展,以在超过625°C的温度下运行。在英国内,已经开发了一种改进的9%CR钢,该钢是基于Marbn Steel,首先由Nims Japan的Fujio Abe教授提出,并被指定为IBN-1。通过添加,通常,3%钴和钨和钨和氮的钨改性钢。虽然自2016年最后一次EPRI高温物质会议(葡萄牙),虽然9%CR钢的发展持续了,但镍合金铸件的平行发展也持续了甚至更高的温度和压力应用。本文总结了这两种材料类型的最新发展。

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