Influence of Magnesium and Zirconium on High Temperature HCF, Static and Dynamic Creep Behaviours in Disc Material GH33A Superalloys
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摘要: 本文研究了含Mg、Zr與不含Mg、Zr兩種GH33A合金的高溫疲勞和靜、動態蠕變行為。結果表明,微量元素Mg、Zr對提高疲勞性能不顯著,也不能改善疲勞缺口敏感性。缺口疲勞性能取決于缺口的幾何參數Kt與λ,材料的光滑疲勞極限和平均晶粒尺寸微量元素Mg、Zr的良好作用主要表現在靜態蠕變條件下,充分發展和延長了蠕變第Ⅱ和第Ⅲ階段,增加蠕變斷裂延伸率,并大大提高斷裂壽命。這種良好作用在恒載且迭加有疲勞交變應力的動態蠕變條件下仍然保持。Abstract: This paper investigated high temperature HCF, static and dynamic creep behaviours in GH33A superalloys with and without Mg and Zr.HCF notch sensitivity in the two alloys was analysed.Results show that a small amount of Mg and Zr can improve neither HCF properties nor fatigue notch sensitivity. Notch fatigue limit depends on smooth fatigue limit, grain size and notch geometric parameters Kt and λ (stress concentration coeffecient and stress gradient).A small amount of Mg and Zr can intensively prolong secondary creep stage and well develop tertiary creep stage, and so increase stress rupture life and stress rupture ductility significantly.The benificial effect still exists under dynamic creep condition.
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Key words:
- fatigue /
- creep /
- dynamic creep /
- notch sensitivity
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