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Nanograin formation in dimple ridges due to local severe-plastic-deformation during ductile fracture 期刊论文
Scripta Materialia, 2021, 卷号: 194, 页码: 113631
作者:  Pan XN(潘向南);  Qian GA(钱桂安);  Hong YS(洪友士)
Adobe PDF(2120Kb)  |  收藏  |  浏览/下载:504/115  |  提交时间:2020/11/23
nanograins  ductile fracture  dimple ridge  severe plastic deformation (SPD)  titanium alloy  
The mechanism of internal fatigue-crack initiation and early growth in a titanium alloy with lamellar and equiaxed microstructure 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2020, 卷号: 798, 页码: 140110
作者:  Pan XN(潘向南);  Xu SW(徐守文);  Qian GA(钱桂安);  Alexander N;  Andrey S;  Thierry PL;  Hong YS(洪友士)
Adobe PDF(27976Kb)  |  收藏  |  浏览/下载:516/98  |  提交时间:2020/08/26
Very-high-cycle fatigue behavior of Ti-6Al-4V manufactured by selective laser melting: Effect of build orientation 期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2020, 卷号: 136, 页码: 13
作者:  Qian GA(钱桂安);  Li YF(李彦峰);  Paolino DS;  Tridello A;  Berto F;  Hong YS(洪友士)
Adobe PDF(6442Kb)  |  收藏  |  浏览/下载:413/160  |  提交时间:2020/07/06
High-cycle fatigue (HCF)  Very-high-cycle fatigue (VHCF)  Selective laser melting (SLM)  Titanium alloy  Building direction  Fatigue design  
Fatigue Behavior of Inorganic-Organic Hybrid "Lunar Cement" 期刊论文
SCIENTIFIC REPORTS, 2019, 卷号: 9, 页码: AR002238
作者:  Su H(苏杭);  Hong YS(洪友士);  Chen TH;  Kou R;  Wang M;  Zhong Y;  Qiao Y
浏览  |  Adobe PDF(2835Kb)  |  收藏  |  浏览/下载:224/40  |  提交时间:2019/04/11
Special Issue on 'Modern Imaging Techniques in Fracture and Damage Analyses': Selected papers from the 21st European Conference of Fracture (ECF 21), held in Catania, Sicily, Italy, on 20-24 June 2016 期刊论文
ENGINEERING FRACTURE MECHANICS, 2017, 卷号: 183, 页码: III-IV
作者:  Spagnoli, Andrea;  Hong YS(洪友士);  Risitano, Giacomo;  Susmel, Luca;  Withers, Philip J.;  Di Cocco, Vittorio;  Spagnoli, A (reprint author), Univ Parma, Parma, Italy.
浏览  |  Adobe PDF(144Kb)  |  收藏  |  浏览/下载:280/58  |  提交时间:2017/11/29
Fatigue crack growth behavior in gradient microstructure of hardened surface layer for an axle steel 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 卷号: 700, 页码: 66-74
作者:  Zhang, Shijia;  Xie JJ(谢季佳);  Jiang, Qingqing;  Zhang, Xiaole;  Sun CQ(孙成奇);  Hong YS(洪友士);  Hong, YS (reprint author), Chinese Acad Sci, Inst Mech, LNM, Beijing 100190, Peoples R China.
浏览  |  Adobe PDF(2607Kb)  |  收藏  |  浏览/下载:395/143  |  提交时间:2017/11/29
Fatigue Crack Growth  Surface Strengthening  Gradient Microstructure  Residual Stress  Crack Arrest  
Effects of stress ratio on high-cycle and very-high-cycle fatigue behavior of a Ti-6Al-4V alloy 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2015, 卷号: 622, 页码: 228-235
作者:  Liu XL(刘小龙);  Sun CQ(孙成奇);  Hong YS(洪友士);  Hong, YS (reprint author), Chinese Acad Sci, Inst Mech, State Key Lab Nonlinear Mech, Beijing 100190, Peoples R China.
浏览  |  Adobe PDF(3165Kb)  |  收藏  |  浏览/下载:386/113  |  提交时间:2015/03/17
Ti-6al-4v Alloy  Stress Ratio  Crack Initiation Type  Crack Growth Threshold  Very-high-cycle Fatigue  
应力比对疲劳裂纹扩展速率和疲劳强度的影响 会议论文
中国力学大会——2013, 中国北京, 2013-08-19
作者:  孙成奇;  李亚波;  雷铮强;  洪友士
浏览  |  Adobe PDF(800Kb)  |  收藏  |  浏览/下载:808/213  |  提交时间:2014/04/02
应力比  疲劳强度  裂纹扩展速率  门槛值  超高周疲劳  影响关系  裂纹萌生  裂纹稳定扩展  Goodman  平均应力  低周  实验结果:公式:常数:0  
超高周疲劳裂纹萌生和初始扩展的机理与模型 会议论文
中国力学大会——2013, 中国北京, 2013-08-19
作者:  洪友士;  孙成奇;  雷铮强
浏览  |  Adobe PDF(903Kb)  |  收藏  |  浏览/下载:571/128  |  提交时间:2014/04/02
超高周疲劳  裂纹萌生  扩展的  机理  细晶区  模型分析  裂纹源  疲劳寿命估算  “鱼眼  高强钢  高强材料  夹杂物  加载  应力比  实验结果分析  材料强度  恒定  变化趋势  应力强度因子  尺寸:0  
Effects of strength level and loading frequency on very-high-cycle fatigue behavior for a bearing steel 期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2012, 卷号: 38, 页码: 46-56
作者:  Zhao AG(赵爱国);  Xie JJ(谢季佳);  Sun CQ(孙成奇);  Lei ZQ(雷铮强);  Hong YS(洪友士);  Hong, YS;  Chinese Acad Sci, Inst Mech, State Key Lab Nonlinear Mech, Beijing 100190, Peoples R China.
Adobe PDF(1871Kb)  |  收藏  |  浏览/下载:1063/380  |  提交时间:2013/01/18
Very-high-cycle Fatigue  Strength Level  Frequency Effect  Crack Initiation  Fatigue Mechanism  S-n Curve  Subsurface Crack Initiation  Low-alloy Steel  Gigacycle Fatigue  Life Regime  Mechanism  Failure  Khz