High-Temperature Thermal Fatigue of Ni3al-Based Single Crystal Alloy Affected by Wall Thickness and Peak Temperature

Author:

Hu Zhuofan,Wang Haoyu,Wang Haibo,shang yong,Pei Yanling,Li Shusuo,Gong Shengkai,Liu Ruiping

Publisher

Elsevier BV

Reference43 articles.

1. Thickness debit effect and multi-factor coupling mechanism of Ni3Al-based single crystal alloy;Z Shuangqi;Journal of Materials Research and Technology,2023

2. Tensile crack inhibition of a PtReAl coated Ni3Al-based single crystal superalloy after long-term oxidation;L Liang;Journal of Materials Research and Technology,2023

3. The secondary orientation effect of single crystal superalloy thin-wall specimens at 850 �C with [001] primary orientation;H Wang;Journal of Materials Research and Technology,2024

4. Influence of secondary orientation on [111]-orientated high temperature creep properties of single crystal alloy with a thin-wall structure;Z Shuangqi;Materials & Design,2024

5. Creep behavior of thick and thin walled structures of a single crystal nickel-base superalloy at high temperatures -: Experimental method and results;R Huettner;11th International Symposium on Superalloys,2008

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