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2ea130947e7579ef38c06d2caa9488adefb7e9332235e7d39a8f6ca7377c0afd3b4c4dc3373149b1882a16b8d747590835bd8cfdb12a5fad954fe00c3a75820d297c516fd96a4d34b0028e40ddc686e1606f7f9c7a58537804864df1de5a1a20f250f9b06ccc6f32af2e5ef4af99e77f82a569530e7fdad19bba56d7e43391b4
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XXXXXX,原位析出强化增材制造铝合金设计及强韧化机理研究,National Key Laboratory Open Project,2024-6~2026-6,Vertical project
XXXXXX,钛铝合金XXXXXXXXXXXX与XXXXXX研究,Army Equipment Pre-research,2024-5~2025-9,Vertical project
XXXXX,航空发动机高温材料/先进制造及故障诊断科学基础,other,2024-1~2026-12,Vertical project
52201140,增材制造奥氏体不锈钢疲劳性能优化及应变局域化演变机理研究,National Natural Science Foundation of China (NSFC),2023-1~2025-12,Vertical project
无,激光增材-光子极端复合制造,Xi'an Jiaotong University "Youth Outstanding Talent Support Program",2022-6~2028-6,Vertical project
52175482,航空发动机高 温合金叶片铣削表面完整性创成机理及关键技术研究,National Natural Science Foundation of China (NSFC),2022-1~2025-12,Vertical project
51971214,取向偏离度对 长寿命单晶合金[011]和[111]取向组织和性能影响,National Natural Science Foundation of China (NSFC),2020-1~2023-12,Vertical project
51701212,Hf在高W合金化镍基高温合金中的作用机理研究,National Natural Science Foundation of China (NSFC),2018-1~2020-12,Vertical project
51771191,合金元素对沉 淀强化钴基合金可焊性影响,National Natural Science Foundation of China (NSFC),2018-1~2021-12,Vertical project
Vinnova grant 2016–05175,Centre for Additive Manufacture - Metal,other,2017-9~2022-10,Vertical project
TOTAL 11 PIECE 1/2
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