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Thickness Effect of Pulse Shaper on Dynamic Stress Equilibrium and Dynamic Deformation Behavior in the Polycarbonate Using SHPB Technique
作者姓名:O.S.Lee  S.H.Kim  Y.H.Han
作者单位:School of Mechanical Engineering InHa University Incheon Korea,Department of Mechanical Engineering InHa University Incheon Korea,Department of Mechanical Engineering InHa University Incheon Korea
基金项目:ThisresearchissupportedbyKoreaResearchFoundation(KRF2004041D00001).Theauthorswishtothankforthefinancialsupportandtheirencouragements.
摘    要:0Introduction Thehighstrainratestress strainresponsesofpolymersandpolymericcompositematerialshave receivedincreasedscientificandindustrialattentioninrecentyears.Polymericmaterialsaresubjected todynamicloadingandhighstrainratedeformationinavarietyofimporta…

关 键 词:厚度效应  脉冲整形器  动态应力平衡  聚碳酸酯  
文章编号:1001-4888(2006)01-0051-10
收稿时间:2005-05-09
修稿时间:2005年5月9日

Thickness Effect of Pulse Shaper on Dynamic Stress Equilibrium and Dynamic Deformation Behavior in the Polycarbonate Using SHPB Technique
O.S.Lee,S.H.Kim,Y.H.Han.Thickness Effect of Pulse Shaper on Dynamic Stress Equilibrium and Dynamic Deformation Behavior in the Polycarbonate Using SHPB Technique[J].Journal of Experimental Mechanics,2006,21(1):51-60.
Authors:OSLee  SHKim and YHHan
Institution:1. School of Mechanical Engineering,InHa University,Incheon,Korea
2. Department of Mechanical Engineering,InHa University,Incheon,Korea
Abstract:The Split Hopkinson Pressure Bar(SHPB) technique with a special experimental apparatus can be used to obtain the material behaviors under high strain rate loading condition. Attempts to apply the Split Hopkison Pressure Bar in measurement on polymeric materials suffer from limitations on the maximum achievable strain and from high noise to signal ratios. This paper introduces a Split Hopkinson Pressure Bar technique, to overcome these limitations. The proposed method uses aluminum pressure bars to achieve a closer impedance match between the pressure bars and the specimen materials, thus providing both data having a low noise to signal ratio and a longer input pulse at higher maximum strain. In addition, a pulse shaper technique was used for increasing the rise time of the incident pulse to ensure stress equilibrium and homogeneous deformation in the specimen under dynamic compression. A pulse shaper is utilized to lengthen the rising time of the incident pulse to ensure stress equilibrium and homogeneous deformation of polycarbonate. The dynamic deformation behaviors of Polymeric material under compressive high strain rate are evaluated using the modified SHPB technique.
Keywords:SHPB(Split Hopkinson Pressure Bar)  dynamic deformation  high strain rate  pulse shaper  polycarbonate  aluminum  
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