首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.4; 20060506-11; Barcelona(ES) >A STUDY OF THE DIFFUSION BRAZING PROCESS APPLIED TO THE SINGLE CRYSTAL SUPERALLOY CMSX-4
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A STUDY OF THE DIFFUSION BRAZING PROCESS APPLIED TO THE SINGLE CRYSTAL SUPERALLOY CMSX-4

机译:单晶高温合金CMSX-4的扩散钎焊工艺研究

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The requirement for economic reconditioning of the latest ALSTOM gas turbine generation with Single Crystal (SX) superalloys has lead to the development of advanced repair processes such as Diffusion Brazing or Transient Liquid Phase bonding. Diffusion Brazing (DB) of conventionally cast polycrystalline turbine components has been carried out for many years but the requirement for this joining and repair technique to be applied to DS and SX superalloys has emerged only more recently. The main concern for the use of a braze-repair process for the more highly loaded SX components is the ability to guarantee sufficient thermal and mechanical integrity throughout the component lifetime. Such high strength braze joints in SX superalloys can be achieved by combining a brittle phase-free and high γ' content microstructure, while maintaining the crystallographical orientation of the SX parent material within the repair zone. Prior to the brazing process, a suitable crack surface preparation is essential, and this is achieved by the employment of specifically optimized Fluoride Ion Cleaning (FIC) process. This guarantees the complete removal of oxide from the crack surfaces and promotes the flow of the braze alloy for complete filling down to the crack tip. This paper presents the development of the DB process which has been specifically tailored for the repair of SX superalloys. The principles of the diffusion brazing process as applied to the CMSX-4 superalloy are discussed and the parameters which control the brazing kinetics are outlined. The optimization of the brazing heat treatment cycle will be presented. This paper also demonstrates the retention of the single crystal micro-structure in the repair zone, and demonstrates the test procedures developed to achieve the required thermal and mechanical integrity of braze repairs for application in SX gas turbine components.
机译:对最新的单晶(SX)超级合金阿尔斯通燃气轮机进行经济修复的要求导致了先进的修复工艺的发展,例如扩散钎焊或瞬态液相键合。传统铸造的多晶涡轮部件的扩散钎焊(DB)已经进行了很多年,但是这种连接和修复技术应用于DS和SX超级合金的要求只是在最近才出现。对于更高负载的SX组件,采用钎焊修复工艺的主要问题是在组件的整个使用寿命中保证足够的热和机械完整性的能力。 SX合金中的这种高强度钎焊接头可以通过结合无脆性无相和高γ'含量的微观结构,同时在修复区内保持SX母体材料的晶体学取向来实现。在进行钎焊之前,必须进行适当的裂纹表面处理,这是通过使用经过专门优化的氟化物离子清洗(FIC)工艺来实现的。这样可以确保从裂纹表面完全清除氧化物,并促进钎料的流动,以完全填充至裂纹尖端。本文介绍了专门针对SX高温合金修复的DB工艺的开发。讨论了应用于CMSX-4高温合金的扩散钎焊工艺原理,并概述了控制钎焊动力学的参数。将介绍钎焊热处理周期的优化。本文还演示了单晶微结构在维修区域中的保留情况,并演示了开发的测试程序,以实现用于SX燃气轮机部件的钎焊维修所需的热和机械完整性。

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