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Experimental study of the high-power laser resistance of ablative material-filled sandwich panels with truss cores under hypersonic airflow 期刊论文
COMPOSITE STRUCTURES, 2022, 卷号: 301, 页码: 116139
作者:  Yuan W(袁武);  Wang JT(王江涛);  Wang RX(王睿星);  Wang Z(王喆);  Song HW(宋宏伟);  Huang CG(黄晨光)
Adobe PDF(9765Kb)  |  收藏  |  浏览/下载:181/44  |  提交时间:2022/10/23
Sandwich panel  Thermal insulation  Lightweight structure  Failure point  
Repeatable mechanical energy absorption of ZnO nanopillars 期刊论文
MATERIALS TODAY COMMUNICATIONS, 2021, 卷号: 29, 页码: 8
作者:  Wang J(王军);  Zhou M;  Yang R(杨荣);  Xiao P(肖攀);  Ke FJ(柯孚久);  Lu CS(卢春生)
Adobe PDF(6444Kb)  |  收藏  |  浏览/下载:189/50  |  提交时间:2022/01/12
ZnO nanopillars  Repeatable energy absorption  Phase transformation  Inversion domain boundary  Molecular dynamics  
The role of material and geometric nonlinearities and damping effects in designing mechanically tunable acoustic metamaterials 期刊论文
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2021, 卷号: 197, 页码: 16
作者:  Ning, Shaowu;  Chu, Dongyang;  Jiang H(姜恒);  Yang, Fengyuan;  Liu, Zhanli;  Zhuang, Zhuo
Adobe PDF(9277Kb)  |  收藏  |  浏览/下载:256/71  |  提交时间:2021/05/31
Mechanically tunable acoustic metamaterials  Locally resonant  Bragg scattering  Band gaps  Material and geometrical nonlinearities  Damping effect  
Characteristics of Band Gap and Low-Frequency Wave Propagation of Mechanically Tunable Phononic Crystals With Scatterers in Periodic Porous Elastomeric Matrices 期刊论文
JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 2021, 卷号: 88, 期号: 5, 页码: 14
作者:  Ning Shaowu;  Chu Dongyang;  Yang Fengyuan;  Jiang H(姜恒);  Liu Zhanli;  Zhuang Zhuo
Adobe PDF(2351Kb)  |  收藏  |  浏览/下载:261/63  |  提交时间:2021/05/17
mechanically tunable phononic crystals  scatterer  periodic porous elastomeric matrix  band structure  directionality of wave propagation  geometric and material nonlinearities  wave propagation  
Band Gaps and Vibration Isolation of a Three-dimensional Metamaterial with a Star Structure 期刊论文
MATERIALS, 2020, 卷号: 13, 期号: 17, 页码: 14
作者:  Jiang H(姜恒);  Zhang MG;  Liu Y(刘宇);  Pei DL(裴东亮);  Chen M(陈猛);  Wang YR(王育人)
Adobe PDF(3168Kb)  |  收藏  |  浏览/下载:248/70  |  提交时间:2020/11/30
metamaterials  Poisson ratio  band gaps  vibration isolation  3D star structure  
Synchrotron X-ray micro-computed tomography imaging of 3D re-entrant micro lattice during in situ micro compression experimental process 期刊论文
MATERIALS & DESIGN, 2020, 卷号: 192, 页码: 9
作者:  Wu WW;  Qi DX;  Hu WX;  Xi L;  Sun LJ(孙立娟);  Liao BB;  Berto F;  Qian GA(钱桂安);  Xiao DB
Adobe PDF(3820Kb)  |  收藏  |  浏览/下载:197/39  |  提交时间:2020/11/30
3D re-entrant  Synchrotron X-ray tomography  Mechanical properties  Projection Micro Litho Stereo Exposure (P mu LSE)  
Cyclic plastic zone-based notch analysis and damage evolution model for fatigue life prediction of metals 期刊论文
MATERIALS & DESIGN, 2020, 卷号: 191, 页码: 10
作者:  Taddesse AT;  Zhu SP(朱顺鹏);  Liao D;  Keshtegar B
Adobe PDF(1731Kb)  |  收藏  |  浏览/下载:220/87  |  提交时间:2020/07/06
Notch  Fatigue  Cyclic plastic zone  Damage mechanics  Life prediction  
A phase-field model of thermo-elastic coupled brittle fracture with explicit time integration 期刊论文
COMPUTATIONAL MECHANICS, 2020, 页码: 17
作者:  Wang T;  Y YX(Y叶璇);  Liu ZL;  Liu XM(刘小明);  Chu DY;  Zhuang Z
Adobe PDF(2156Kb)  |  收藏  |  浏览/下载:785/446  |  提交时间:2020/04/07
Phase-field model  Explicit time integration  Abaqus VUEL  Multi-field coupling  Thermal shock  
Fatigue model of domestic 316LN steel in simulated primary coolant environment of CAP1400 期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2020, 卷号: 130, 页码: 6
作者:  Zhong WH;  Qian GA(钱桂安);  Tong ZF;  Wu WW;  Zhu SP;  Wang CL
Adobe PDF(716Kb)  |  收藏  |  浏览/下载:525/91  |  提交时间:2020/03/21
Primary coolant pipe  Low cycle fatigue  Corrosion fatigue  Fatigue model  Environmental fatigue life  
Weibull stress analysis in local approach to fracture 期刊论文
THEORETICAL AND APPLIED FRACTURE MECHANICS, 2019, 卷号: 104, 页码: 11
作者:  Li YB;  Wang ZH;  Lei YB;  Qian GA(钱桂安);  Zhou MJ;  Gao ZL;  Berto F
Adobe PDF(2892Kb)  |  收藏  |  浏览/下载:222/77  |  提交时间:2020/03/11
Weibull stress  Local approach  Fracture  T-stress  Constraint effect