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Lifing the Effects of Crystallographic Orientation on the Thermo-Mechanical Fatigue Behaviour of a Single-Crystal Superalloy

机译:晶体取向对单晶高温合金热机械疲劳行为的影响

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摘要

Thermo-mechanical fatigue (TMF) is a complex damage mechanism that is considered to be one of the most dominant life limiting factors in hot-section components. Turbine blades and nozzle guide vanes are particularly susceptible to this form of material degradation, which result from the simultaneous cycling of mechanical and thermal loads. The realisation of TMF conditions in a laboratory environment is a significant challenge for design engineers and materials scientists. Effort has been made to replicate the in-service environments of single crystal (SX) materials where a lifing methodology that encompasses all of the arduous conditions and interactions present through a typical TMF cycle has been proposed. Traditional procedures for the estimation of TMF life typically adopt empirical correlative approaches with isothermal low cycle fatigue data. However, these methods are largely restricted to polycrystalline alloys, and a more innovative approach is now required for single-crystal superalloys, to accommodate the alternative crystallographic orientations in which these alloys can be solidified.
机译:热机械疲劳(TMF)是一种复杂的损伤机制,被认为是热截面部件中最主要的寿命限制因素之一。涡轮叶片和喷嘴导向叶片特别容易受到这种形式的材料降解的影响,这是由于机械负载和热负载同时循环而导致的。在实验室环境中实现TMF条件对于设计工程师和材料科学家而言是一项重大挑战。已经努力复制单晶(SX)材料的使用环境,其中提出了一种生活方法,该生活方法涵盖了所有艰苦条件以及通过典型TMF循环出现的相互作用。用于估算TMF寿命的传统程序通常采用经验相关的方法,并采用等温低周疲劳数据。但是,这些方法在很大程度上限于多晶合金,对于单晶高温合金,现在需要一种更具创新性的方法,以适应可以固化这些合金的替代晶体学取向。

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