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Taiji program in space for gravitational universe with the first run key technologies test in Taiji-1 期刊论文
INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 2021, 卷号: 36, 期号: 11N12, 页码: 2
Authors:  Wu YL(吴岳良);  Luo ZR(罗子人);  Wang, Jian-Yu;  Bai, Meng;  Bian, Wei;  Cai, Hai-Wen;  Cai, Rong-Gen;  Cai, Zhi-Ming;  Cao, Jin;  Chen, Bin;  Chen, Di-Jun;  Chen, Guang-Feng;  Chen, Kun;  Chen, Ling;  Chen, Li-Sheng;  Chen MW(陈明伟);  Chen, Wei-Biao;  Chen, Yan;  Chen, Ze-Yi;  Chi, Yi-Xing;  Cong, Lin-Xiao;  Deng, Jian-Feng;  Deng, Xiao-Qin;  Dong, Xiao-Long;  Duan L(段俐);  Fan, Da;  Fan, Sen-Quan;  Fan, Shou-Shan;  Fang, Chao;  Fang, Yuan;  Feng, Ke;  Feng, Jian-Chao;  Feng, Pan;  Feng, Zhun;  Gao, Chen;  Gao RH(高瑞弘);  Gao, Run-Lian;  Guo, Bin;  Guo, Tong;  Guo, Xiao-Liang;  Guo, Xu;  Guo, Zong-Kuan;  He JW(贺建武);  He, Ji-Bo;  Hou, Xia;  Hu L(胡良);  Hu WR(胡文瑞);  Hu, Zhi-Qiang;  Huang, Min-Jie;  Jia, Jian-Jun;  Jiang, Kai-Li;  Jin G(靳刚);  Jin, Hong-Bo;  Kang, Bao-Peng;  Kang Q(康琦);  Kong, Feng-Lian;  Lei, Jun-Gang;  Li, Bo-Quan;  Li, Cun-Hui;  Li, Dong-Jing;  Li, Fan;  Li, Hao-Si;  Li, Hua-Dong;  Li, Hua-Wang;  Li, Jiang;  Li, Liu-Feng;  Li, Wei;  Li, Xiao-Kang;  Li, Ying-Min;  Li, Yong-Gui;  Li, Yun-Peng;  Li, Yu-Peng;  Li, Zhao;  Li, Zhe;  Liang, Hong;  Lin, Huang;  Lin, Zhi-Yong;  Liu, Chang;  Liu, Dong-Bin;  Liu HS(刘河山);  Liu, Hong;  Liu, Peng;  Liu, Yu-Rong;  Lu, Zong-Yu;  Luo, Hong-Wei;  Luo J(罗俊);  Ma, Fu-Li;  Ma LF(马隆飞);  Ma, Xiao-Shan;  Ma, Xin;  Man, Yi-Chuan;  Mao, Jun-Cheng;  Min, Jian;  Niu Y(牛宇);  Peng, Jian-Kang;  Peng, Xiao-Dong;  Qi, Ke-Qi;  Qiang, Li-E;  Qiao, Cong-Feng;  Qu, Ye-Xi;  Ruan, Wen-Hong;  Sha, Wei;  Shen J(沈嘉);  Shi, Xing-Jian;  Shu, Rong;  Su, Ju;  Su, Peng;  Sui, Yan-Lin;  Sun, Guang-Wei;  Tan, He-Ping;  Tang, Wen-Lin;  Tao, Hong-Jiang;  Tao, Wen-Ze;  Tian, Zheng;  Wan, Ling-Feng;  Wang CY(王晨宇);  Wang J(王佳);  Wang J(王娟);  Wang JB(王俊表);  Wang, Lin-Lin;  Wang, Peng-Cheng;  Wang, Shao-Xin;  Wang, Xiao-Peng;  Wang, Yan-Feng;  Wang, Yu-Kun;  Wang, Zhi;  Wang, Zuo-Lei;  Wei, Yong-Qiang;  Wei, Yu-Xiao;  Wu D(吴笛);  Wu, Li-Ming;  Wu, Peng-Zhan;  Wu, Zhi-Hua;  Xi, Dong-Xue;  Xie, Yi-Fang;  Xin, Guo-Feng;  Xu, Heng-Tong;  Xu, Lu-Xiang;  Xu, Peng;  Xu, Shu-Yan;  Xu, Yu;  Xue, Bing;  Xue, Da-Tong;  Xue SW(薛森文);  Xue, Zhang-Bin;  Yang C(杨超);  Yang R(杨然);  Yang, Shi-Jia;  Yang, Shuang;  Yang, Yong;  Yang, Zhong-Guo;  Yin, Yong-Li;  Yu, Du-Li;  Yu, Jin-Pei;  Yu, Tao;  Zhang, Ai-Bing;  Zhang, Bing;  Zhang C(章楚);  Zhang, Min;  Zhang, Jing;  Zhang, Rui-Jun;  Zhang, Xiao-Feng;  Zhang, Xiao-Qing;  Zhang, Xue-Quan;  Zhang, Yong-He;  Zhang, Yu-Zhu;  Zhang, Yuan-Zhong;  Zhao, Meng-Yuan;  Zhao, Jian;  Zhao, Wei-Wei;  Zhao, Ya;  Zheng, Jian-Hua;  Zhou, Cui-Yun;  Zhou, Ying;  Zhu, Ren;  Zhu, Xiao-Cheng;  Zhu, Xiao-Yi;  Zhu, Zhen-Cai;  Zou, Xiao-Bo;  Zou, Zi-Ming
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Direct observation of chemical short-range order in a medium-entropy alloy 期刊论文
Nature, 2021, 卷号: 592, 页码: 712-716
Authors:  Chen XF(陈雪飞);  Wang Qi;  Cheng Zhiying;  Zhu ML(朱鸣柳);  Zhou Hao;  Jiang P(姜萍);  Zhou LL(周玲玲);  Xue QQ(薛琪琦);  Yuan FP(袁福平);  Zhu Jing;  Wu XL(武晓雷);  Ma En
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离子源预处理工艺对WC基底表面及Ta缓冲涂层的影响 期刊论文
材料热处理学报, 2015, 卷号: 36, 期号: 6, 页码: 164-168
Authors:  魏俊俊;  朱小研;  陈良贤;  刘金龙;  黑立富;  李成明;  张勇
View  |  Adobe PDF(453Kb)  |  Favorite  |  View/Download:178/17  |  Submit date:2015/12/25
离子源预处理  结合力  表面粗糙度  表面最大峰谷值  
纳米结构链的hopping电导实空间重正化群方法 期刊论文
物理学报, 1999, 期号: 2, 页码: 314
Authors:  丁建文;  颜晓红;  方显承;  段祝平
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激光引爆炸药和冲击加载铝板的数值研究 期刊论文
强激光与粒子束, 1990, 卷号: 2, 期号: 3, 页码: 359-365
Authors:  张忠珍;  孙承纬;  段祝平;  刘小苹
Adobe PDF(290Kb)  |  Favorite  |  View/Download:338/91  |  Submit date:2009/08/03
激光  点火  
GH37合金经激光表面熔凝后的组织与强度 期刊论文
金属学报, 1987, 卷号: 23, 期号: 1, 页码: A26-A32
Authors:  孟庆林;  朱贵增;  杜香竹;  江晓平;  孙同坤;  刘诚信
Adobe PDF(1373Kb)  |  Favorite  |  View/Download:419/104  |  Submit date:2009/08/03
激光表面熔凝  热作用  合金  激光辐照  激光熔凝  后续热处理  力学性能  残余热应力  旋转弯曲疲劳  
GH37合金表面激光熔凝后的显微组织 期刊论文
宇航材料工艺, 1985, 期号: 5, 页码: 23-28
Authors:  朱贵增;  孟庆林;  杜香竹;  江晓平;  孙同坤;  孙传香;  刘诚信;  张国礼;  孟永年;  郑玉环
Adobe PDF(1542Kb)  |  Favorite  |  View/Download:395/63  |  Submit date:2009/08/03
激光熔凝处理  显微组织  热影响区  后续热处理  合金表面  冷却速度  显微偏析  疲劳强度  高温合金