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Study on adhesively-bonded surface of tapered double cantilever specimen made of aluminum foam affected with shear force

Study on adhesively-bonded surface of tapered double cantilever specimen made of aluminum foam affected with shear force
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摘要 Aluminum foam is widely used in diverse areas to minimize the weight and maximize the absorption of shock energy in lightweight structures and various bio-materials.It presents a number of advantages,such as low density,incombustibility,non-rigidity,excellent energy absorptivity,sound absorptivity and low heat conductivity.The aluminum foam with an air cell structure was placed under the TDCB Mode II tensile load by using Landmark equipment manufactured by MTS to examine the shear failure behavior.The angle of the tapered adhesively-bonded surfaces of specimens was designated as a variable,and three models were developed with the inclined angles differing from one another at 6°,8° and 10°.The specimens with the inclined angles of 6°,8° and 10° have the maximum reaction forces of 168 N,194 N when the forced displacements are 6,5 and 4.2 mm respectively.There are three specimens with the inclined angles of 10°,8° and 6° in the order of maximum reaction force.As the analysis result,the maximum equivalent stresses of 0.813 MPa and 0.895 MPa happened when the forced displacements of 6 mm and 5 mm proceeded at the models of 6° and 8°,respectively.A simulation was carried out on the basis of finite element method and the experimental design.The results of the experiment and the simulation analysis are shown not different from each other significantly.Thus,only a simulation could be confirmed to be performed in substitution of an experiment,which is costly and time-consuming in order to determine the shearing properties of materials made of aluminum foam with artificial data. Aluminum foam is widely used in diverse areas to minimize the weight and maximize the absorption of shock energy in lightweight structures and various bio-materials.It presents a number of advantages,such as low density,incombustibility,non-rigidity,excellent energy absorptivity,sound absorptivity and low heat conductivity.The aluminum foam with an air cell structure was placed under the TDCB Mode II tensile load by using Landmark equipment manufactured by MTS to examine the shear failure behavior.The angle of the tapered adhesively-bonded surfaces of specimens was designated as a variable,and three models were developed with the inclined angles differing from one another at 6°,8° and 10°.The specimens with the inclined angles of 6°,8° and 10° have the maximum reaction forces of 168 N,194 N when the forced displacements are 6,5 and 4.2 mm respectively.There are three specimens with the inclined angles of 10°,8° and 6° in the order of maximum reaction force.As the analysis result,the maximum equivalent stresses of 0.813 MPa and 0.895 MPa happened when the forced displacements of 6 mm and 5 mm proceeded at the models of 6° and 8°,respectively.A simulation was carried out on the basis of finite element method and the experimental design.The results of the experiment and the simulation analysis are shown not different from each other significantly.Thus,only a simulation could be confirmed to be performed in substitution of an experiment,which is costly and time-consuming in order to determine the shearing properties of materials made of aluminum foam with artificial data.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4521-4527,共7页 中南大学学报(英文版)
基金 Project(2011-0006548)supported by Basic Science Research Program through the National Research Foundation of Korea
关键词 ADHESIVE DISPLACEMENT force reaction shearing fracture characteristic tapered double cantilever beam(TDCB) adhesive displacement force reaction shearing fracture characteristic tapered double cantilever beam(TDCB)
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  • 1ROBERTSON D I, BRETHERTON R D. Optimizing networks of traffic signals in real time-the SCOOT method [J]. IEEE Transaction on Vehicular Technology, 1991, 40(1): 11-15.
  • 2LOWRIE P R. SCATS: A traffic responsive method of controlling urban traffic control JR]. Roads and Traffic Authority, 1992.
  • 3HEAD K L. Event-based short-term traffic flow prediction model [J]. Transportation Research Record, 1995, 1510: 45-52.
  • 4MIRCHANDANI P M, WANG F Y. RHODES to intelligent transportation systems [J]. IEEE Intelligent Systems, 2005, 20(1): 10-15.
  • 5CAREY M, GE Ying-en, MCCARTNEY M. A whole-link travel-time model with desirable properties [J]. Transportation Science, 2003, 37(1): 89-96.
  • 6ZHENG Xing, RECKER W, CHU Lian-yu. Optimization of control parameters for adaptive traffic-actuated signal control [J]. Journal of Intelligent Transportation Systems, 2010, 14(2): 95-108.
  • 7MAHER M J. Estimating the turning flows at a junction: A comparison of three models [J]. Traffic Engineering and Control, 1984, 25: 19-22.
  • 8DAVIS G A, LAN C J. Estimating intersection turning movement proportions from less-than-complete sets of traffic counts [J]. Transportation Research Record, 1995, 1510: 53-59.
  • 9CHANG G L, TAO X. Estimation of time-dependent turning fractions at signalized intersections [J]. Transportation Research Record, 1997, 1644: 142-149.
  • 10NOBE S. On-line estimation of traffic split parameters based on lane counts [D]. The University of Arizona, 1997.

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