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《Explosion and Shock Waves》 2003-01
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Strain rate effect on the p roperties foam materials

HU Shi sheng 1 , WAN G Wu 1,2 , PAN Yi 1 , ZHOU Jing 1 , LI Ying hua 2 [HT5SS][ST5BZ][WT5BX](1.Key Laboratory of Mechanica l Behavior and Design of Materials, University of Scienceand Technology of Chi na, Chinese Academy of Science, Hefei 230027, Anhui, China; 2.Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics , China Academy of Engineering Physics, Mianyang 621900, Sichuan, China)  
HT5SS][ST5BZ] Improved SH PB method and seim conductive gauges were used to investigate strain rate effec ts on the properties of foam materials. Experiments results involve quasi stati c and dynamic stress strain curves of three densities of rigid fiber polyureth ane foams, four cell sizes aluminum foams of the same density, and four densitie s aluminum alloy foam. All experimental results indicate that strain rate effect on foam materials is evident, although matrix, some of which are strain sensiti ve and some are not, cell sizes and relative density are different. It is the ex isting of cells that cause strain rate effect on foam materials. It can be concl uded that crushing stress will be enhanced under high strain rate because of the following two reasons: (1) as impact velocity increases, the cells near the im pact surface instantly are tightly compressed and therefor strain rate will inc rease and the colliding speed of cell wall will enlarge, causing the crushing st ress to increase; (2) The highly localized nature of crushing results in very large strain rate in crushing band and therefor micro inertia will play a more important role causing crushing stress to increase. Another conclusion is that s train rate sensitivities of matrix and cell morphology themselves are not the ma in reasons for strain rate sensitivities of foam materials.
【Fund】: 国家基金委和中国工程物理研究院联合基金项目(10076020)
【CateGory Index】: TB34
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