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Improved creep strength of nickel-base superalloys by optimized γ/γ′ partitioning behavior of solid solution strengthening elements

机译:通过优化固溶强化元素的γ/γ'分配行为提高镍基高温合金的蠕变强度

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摘要

Solid solution strengthening of the y matrix is one key factor for improving the creep strength of single crystal nickel-base superalloys at high temperatures. Therefore a strong partitioning of solid solution hardening elements to the matrix is beneficial for high temperature creep strength. Different Rhenium-free alloys which are derived from CMSX-4 are investigated. The alloys have been characterized regarding microstructure, phase compositions as well as creep strength. It is found that increasing the Titanium (Ti) as well as the Tungsten (W) content causes a stronger partitioning of the solid solution strengtheners, in particular W, to the γ phase. As a result the creep resistance is significantly improved. Based on these ideas, a Rhenium-free alloy with an optimized chemistry regarding the partitioning behavior of W is developed and validated in the present study. It shows comparable creep strength to the Rhenium containing second generation alloy CMSX-4 in the high temperature / low stress creep regime and is less prone to the formation of deleterious topologically close packed (TCP) phases. This more effective usage of solid solution strengtheners can enhance the creep properties of nickel-base super-alloys while reducing the content of strategic elements like Rhenium.
机译:y基体的固溶强化是提高高温下单晶镍基高温合金蠕变强度的关键因素。因此,固溶体硬化元素在基体上的牢固分配有利于高温蠕变强度。研究了衍生自CMSX-4的不同的无alloy合金。已经对该合金的微观结构,相组成以及蠕变强度进行了表征。发现增加钛(Ti)以及钨(W)的含量导致固溶增强剂,特别是W,更强地分配到γ相。结果,抗蠕变性显着提高。基于这些想法,本研究开发并验证了一种关于W的分配行为具有优化化学性质的无R合金。它在高温/低应力蠕变状态下显示出与含to第二代合金CMSX-4相当的蠕变强度,并且不易形成有害的拓扑紧密堆积(TCP)相。固溶增强剂的这种更有效的使用可以增强镍基超级合金的蠕变性能,同时减少战略元素(如the)的含量。

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  • 来源
    《Materials Science and Engineering 》 |2016年第31期| 411-420| 共10页
  • 作者单位

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅰ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅰ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅰ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅱ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅱ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅱ, Germany;

    Friedrich-Alexander-Universitaet Erlangen-Nuernberg (FAU), Materials Science & Engineering, Institute Ⅰ, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nickel-base superalloys; Creep; Element partitioning; Solid solution strengthening;

    机译:镍基高温合金;蠕变;元素分区;固溶强化;

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