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高温合金激光送粉式增材制造的形貌与组织演化研究 学位论文
博士论文,北京: 中国科学院大学, 2022
Authors:  邵佳昀
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激光送粉式增材制造  高温合金  工艺窗口  快速凝固  枝晶生长  
无权访问的条目 学位论文
Authors:  李志永
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CuCr合金高密度激光表面熔凝特征及工艺研究 学位论文
硕士论文,北京: 中国科学院大学, 2021
Authors:  王旭
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激光表面熔凝  CuCr合金  熔池特征参量  工艺实验  性能分析  
304SS和Ni激光焊接的熔池流动及传热传质研究 学位论文
硕士论文,北京: 中国科学院大学, 2021
Authors:  李梓洵
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异种激光焊接  传导焊接  深熔焊接  数值模拟  热质输运  
选区激光熔化成形高强高韧316L不锈钢工艺及力学性能研究 学位论文
博士论文,北京: 中国科学院大学, 2020
Authors:  蒋华臻
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增材制造  选区激光熔化  无量纲工艺图  力学性能  316L不锈钢  
In vitro antibacterial properties of MoO3/SiO2/Ag2O nanocomposite coating prepared by double cathode glow discharge technique 期刊论文
SURFACE & COATINGS TECHNOLOGY, 2020, 卷号: 397, 页码: 16
Authors:  Zhao YJ;  Xu J;  Li ZY(李正阳);  Fu T;  Jiang SY
Adobe PDF(8390Kb)  |  Favorite  |  View/Download:381/195  |  Submit date:2020/08/26
MoO3  Ag2O  Photocatalytic properties  Antibacterial activity  Nanocomposite coating  
铜铬合金触头表面激光熔凝改性工艺及无损检测 学位论文
硕士论文,北京: 中国科学院大学, 2020
Authors:  田崇鑫
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激光表面改性  铜基合金  激光熔凝  无损检测  机器视觉  
Thermo-mechanical response of FG tungsten/EUROFER multilayer under high thermal loads 期刊论文
Journal of Nuclear Materials, 2019, 卷号: 519, 页码: 137-144
Authors:  Qu DD(屈丹丹);  M.Wirtz;  J.Linke;  R.Vaßen;  J.Aktaa
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Effect of C2H2/N-2 partial pressure ratio on microstructure and mechanical properties of Ti-Al-Si-C-N coatings 期刊论文
SURFACE & COATINGS TECHNOLOGY, 2019, 卷号: 365, 页码: 200-207
Authors:  Gu JB;  Li LH;  Miao H;  Xu Y(许亿);  Xu Ye;  Sun JF;  Wang XL;  He ZH
View  |  Adobe PDF(2605Kb)  |  Favorite  |  View/Download:423/127  |  Submit date:2019/05/29
Ti-Al-Si-C-N coatings  Magnetron sputtering  Microstructure  Tribological performance  
Grain Refinement of Hypereutectic Immiscible Cu-50Cr Alloy during Rapid Melting and Solidification Induced by High Power Density Laser Beams 期刊论文
METALS, 2019, 卷号: 9, 期号: 5, 页码: 19
Authors:  Zhang LT(张犁天);  Yu G(虞钢);  Tian CX(田崇鑫);  He XL(何秀丽);  Li SX(李少霞)
View  |  Adobe PDF(5098Kb)  |  Favorite  |  View/Download:351/132  |  Submit date:2019/10/14
Cu-Cr immiscible alloy  laser surface melting (LSM)  liquid phase separation (LPS)  grain refinement  rapid solidification  interruption capability