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Integrating dynamic relaxation with inelastic deformation in metallic glasses: Theoretical insights and experimental validation 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2025, 卷号: 218, 页码: 135-152./通讯作者:Lyu, Guo-Jian, Qiao, J. C.
Authors:  Xing, GH;  Hao, Q;  Lyu, GuoJian;  Zhu, F;  Wang YJ(王云江);  Yang, Y;  Pineda, E;  Qiao, JC
Favorite  |  View/Download:62/0  |  Submit date:2024/11/22
Metallic glass  Stress relaxation  Creep  Dynamic relaxation  Quasi-point defect model  
Superior tensile properties induced by triple-level heterogeneous structures in the CoNiV-based medium-entropy alloy 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2025, 卷号: 214, 页码: 245-254./通讯作者:Ma, Yan, Yuan, Fuping
Authors:  Xu LK(徐璐珂);  Ma Y(马彦);  Zhang ZH(张子晗);  Yang MX(杨沐鑫);  Jiang P(姜萍);  Zhu, Yuntian;  Wu XL(武晓雷);  Yuan FP(袁福平)
Favorite  |  View/Download:153/0  |  Submit date:2024/10/08
Medium-entropy alloy  Hetero-structures  Precipitation hardening  Hetero-deformation-induced hardening  Chemical short-range ordering  
The information conservation in Hawking radiation by laws of thermodynamics 期刊论文
INTERNATIONAL JOURNAL OF MODERN PHYSICS D, 2025, 页码: 10./通讯作者:Li, Li-Fang
Authors:  Li LF(李丽仿);  Jiang, Jijian
Favorite  |  View/Download:207/0  |  Submit date:2025/02/24
Black hole  Hawking radiation  the relative emissivity  the information conservation  
Determination of uniaxial creep properties using equivalent factors by sharp indentation 期刊论文
MATERIALS TODAY COMMUNICATIONS, 2024, 卷号: 41, 页码: 10./通讯作者:Xu, Fenglei, Feng, Yihui
Authors:  Peng, Guangjian;  Zhang, Jiangfeng;  Xu, Fenglei;  Jiang, Weifeng;  Feng YH(冯义辉);  Zhang, Taihua
Favorite  |  View/Download:30/0  |  Submit date:2024/11/14
Creep coefficient  Equivalent factor  Instrumented sharp indentation  Finite element simulation  Strain hardening exponent  
Flow induced acoustic characteristics analysis of propulsion pump by indirect acoustic variable method and FEM 期刊论文
OCEAN ENGINEERING, 2024, 卷号: 313, 页码: 15./通讯作者:Li, Kai
Authors:  Zhang, Zhengchuan;  Gong, Bo;  Chen, Tao;  Li, Ning;  Jin, Yongxin;  Jiang H(姜恒);  Zhao JF(赵建福);  Li, Kai
Favorite  |  View/Download:38/0  |  Submit date:2024/11/22
Turbulent noise  Propulsion pump  Indirect acoustics variable  Lamb vector divergence  Acoustic FEM  
On the kinetics of structural evolution in metallic glasses 期刊论文
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2024, 卷号: 205, 页码: 16./通讯作者:Wang, Yun-Jiang, Qiao, J. C.
Authors:  Liang, SY;  Zhu, F;  Wang YJ(王云江);  Pineda, E;  Wada, T;  Kato, H;  Qiao, JC
Favorite  |  View/Download:47/0  |  Submit date:2024/11/01
Metallic glasses  Modified hierarchically correlated model  Creep  Annealing time  beta relaxation  
Ferritic-Martensitic Steels in Power Industry: Microstructure, Degradation Mechanism, and Strengthening Methods 期刊论文
STEEL RESEARCH INTERNATIONAL, 2024, 页码: 18./通讯作者:Peng, Guangjian
Authors:  Jiang, Hanyang;  Huang, Xin;  Feng YH(冯义辉);  Xiong, Wei;  Jin, Zhenyu;  Peng, Guangjian
Favorite  |  View/Download:33/0  |  Submit date:2024/10/08
degradation mechanisms  ferritic-martensitic steels  microstructures  strengthening methods  
真空环境下无柄胶体液滴在微腔表面蒸发及颗粒沉积现象 会议论文
第十三届全国流体力学学术会议(下), 中国黑龙江哈尔滨, 2024-08-09
Authors:  何宜繁;  徐文帅;  姜恒
Adobe PDF(1002Kb)  |  Favorite  |  View/Download:1028/22  |  Submit date:2025/01/22
真空环境  胶体液滴  微腔表面  自组装  
聚合物液滴在微腔表面润湿中气液界面演化协同机理 会议论文
第十三届全国流体力学学术会议(下), 中国黑龙江哈尔滨, 2024-08-09
Authors:  徐文帅;  何宜繁;  姜恒
Adobe PDF(990Kb)  |  Favorite  |  View/Download:1035/25  |  Submit date:2025/01/22
聚合物液滴  微腔表面  气液界面  润湿协同  唯象模型  
Impact fatigue behavior of laser metal deposition 316L stainless steel with an automated impact fatigue system based on split Hopkinson bar technique 期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2024, 卷号: 185, 页码: 13./通讯作者:Wang, Jianjun, Li, Penghui, Guo, Weiguo, Guo, Chunhuan
Authors:  Li, Boli;  Zhao, Sihan;  Wang, Jianjun;  Li PH(李鹏辉);  Liu, Yuanmeng;  Wang, Ruifeng;  Yuan, Kangbo;  Gao, Meng;  Guo, Weiguo;  Guo, Chunhuan;  Jiang, Fengchun
Favorite  |  View/Download:59/0  |  Submit date:2024/07/04
Impact fatigue  High loading rates  Laser metal deposition 316L stainless steel  Microstructure