Shock pressure induced by glass-confined laser shock peening: Experiments, modeling and simulation
Wu XQ(吴先前); Duan ZP(段祝平); Song HW(宋宏伟); Wei YP(魏延鹏); Wang X(王曦); Huang CG(黄晨光)
2011-09-01
会议名称9th Workshop on Piezoresponse Force Microscopy (PFM)/10th International Symposium on Ferroic Domains
会议日期SEP 22-24, 2010
通讯作者邮箱songhw@imech.ac.cn; huangcg@imech.ac.cn
会议地点Prague, CZECH REPUBLIC
关键词Doppler effect Dynamic response Glass Glass lasers Velocimeters Velocity control Velocity measurement Analytical model Diagnostic capabilities Empirical formulas Exponential decays Free surface velocity Free surfaces Laser shock peening LS-DYNA Particle velocities Photonic doppler velocimetry Plasma pressures Shock pressure Short time scale Stress wave Target materials Temporal profile WAVE EXPERIMENTS STRESS WAVES PLASMA GENERATION ALUMINUM GEOMETRY ALLOYS METALS
卷号110
期号5
页码053112
通讯作者Wu, XQ (reprint author), Chinese Acad Sci, Inst Mech, Key Lab Hydrodynam & Ocean Engn, Beijing 100190, Peoples R China
中文摘要The shock pressure generated by the glass confined regime in laser shock peening and its attenuation in the target material are investigated. First, the particle velocity of the target back free surface induced by laser generated shock pressure of this regime is measured using a photonic Doppler velocimetry system. The temporal profile of the particle velocity at the back free surface, where the elastic precursor is captured, manifests a powerful diagnostic capability of this newly developed photonic Doppler velocimetry system for tracking the velocity on short time scales in shock-wave experiments. Second, a coupling pressure analytical model, in which the material constitutive models of confined layers and target material are considered, is proposed to predict the plasma pressure profile at the surface of target. Furthermore, using the predicted shock pressure profile as the input condition, the dynamic response of the target under the shock pressure is simulated by LS-DYNA. The simulated back free surface velocity profile agrees well with that measured by the photonic Doppler velocimetry system. Finally, the attenuation behavior of stress waves and particle velocities in the depth of the target is analyzed, and it indicates an exponential decay. The corresponding empirical formulas for the attenuation behavior are given based on the numerical results.
收录类别CPCI ; EI
产权排序[Wu, XQ; Song, HW; Wei, YP; Wang, X; Huang, CG] Chinese Acad Sci, Inst Mech, Key Lab Hydrodynam & Ocean Engn, Beijing 100190, Peoples R China; [Duan, ZP] Chinese Acad Sci, Inst Mech, State Key Lab Nonlinear Mech, Beijing 100190, Peoples R China
会议网址http://dx.doi.org/10.1063/1.3633266
会议录JOURNAL OF APPLIED PHYSICS
会议录出版者AMER INST PHYSICS
会议录出版地CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1, MELVILLE, NY 11747-4501 USA
学科主题Physics ; Applied
语种英语
ISSN号0021-8979
内容类型会议论文
源URL[http://dspace.imech.ac.cn/handle/311007/46854]  
专题力学研究所_水动力学与海洋工程重点实验室(2009-2011)
推荐引用方式
GB/T 7714
Wu XQ,Duan ZP,Song HW,et al. Shock pressure induced by glass-confined laser shock peening: Experiments, modeling and simulation[C]. 见:9th Workshop on Piezoresponse Force Microscopy (PFM)/10th International Symposium on Ferroic Domains. Prague, CZECH REPUBLIC. SEP 22-24, 2010.http://dx.doi.org/10.1063/1.3633266.
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