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[국내논문] 내부 주름각과 하중 위치가 반복 주름 내부구조체를 가진 경량 플라스틱 샌드위치 판재의 휨 특성에 미치는 영향
Influence of Corrugation Angle and Load Position on the Flexural Characteristics of Lightweight Plastic Sandwich Panel with Corrugated Cores

한국정밀공학회지 = Journal of the Korean Society for Precision Engineering, v.34 no.7, 2017년, pp.493 - 500  

빗리츄아 (조선대학교 기계공학과) ,  장용훈 (조선대학교 기계공학과) ,  안동규 (조선대학교 기계공학과)

Abstract AI-Helper 아이콘AI-Helper

The flexural characteristics of corrugated sandwich panels are anisotropic and depend on its corrugation geometry and load position. The objective of this paper is to examine the influence of corrugation angle and load position on the flexural characteristics of plastic sandwich panels with trapezoi...

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참고문헌 (25)

  1. Djoković, Jelena M., Nikolić, Ružica R., Bujnak, Jan, Živković, Katarina, Andreev, V.. Geometrical parameters influence on behavior of the sandwich plates with corrugated core. MATEC web of conferences, vol.86, 01001-.

  2. Xiong, J., Ghosh, R., Ma, L., Ebrahimi, H., Hamouda, A.M.S., Vaziri, A., Wu, L.. Bending behavior of lightweight sandwich-walled shells with pyramidal truss cores. Composite structures, vol.116, 793-804.

  3. Park, Kyung-Jo, Jung, Kang, Kim, Young-Wann. Evaluation of homogenized effective properties for corrugated composite panels. Composite structures, vol.140, 644-654.

  4. He, W., Liu, J., Tao, B., Xie, D., Liu, J., Zhang, M.. Experimental and numerical research on the low velocity impact behavior of hybrid corrugated core sandwich structures. Composite structures, vol.158, 30-43.

  5. Abdolpour, Hassan, Garzón-Roca, Julio, Escusa, Gonçalo, Sena-Cruz, José M., Barros, Joaquim A.O., Valente, Isabel B.. Development of a composite prototype with GFRP profiles and sandwich panels used as a floor module of an emergency house. Composite structures, vol.153, 81-95.

  6. Fernando, P.L.N., Jayasinghe, M.T.R., Jayasinghe, C.. Structural feasibility of Expanded Polystyrene (EPS) based lightweight concrete sandwich wall panels. Construction & building materials, vol.139, 45-51.

  7. Raj, S., Ramesh Kumar, V., Bharath Kumar, B.H., Gopinath, S., Iyer, N.R.. Flexural studies on Basalt Fiber Reinforced Composite sandwich panel with profile sheet as core. Construction & building materials, vol.82, 391-400.

  8. Lurie, S.A., Solyaev, Yu.O., Volkov-Bogorodskiy, D.B., Bouznik, V.M., Koshurina, A.A.. Design of the corrugated-core sandwich panel for the arctic rescue vehicle. Composite structures, vol.160, 1007-1019.

  9. Hou, S., Zhao, S., Ren, L., Han, X., Li, Q.. Crashworthiness optimization of corrugated sandwich panels. Materials & design, vol.51, 1071-1084.

  10. ArchiExpo, “Building Polycarbonate Panel,” http://www.archiexpo.com/architecture-design-manufacturer/building-polycarbonate-panel-54846.html (Accessed 26 FEB 2017) 

  11. Schürmann, E. D., “Nagelbare, Gepresste Kunststoffplatte aus Langglasfaserverstärktem Polypropylen Mit Einem Integrierten Kantenschutz ohne Metalleinlage,” GER Patent, DE2005100 30842 A1, 2007. 

  12. Stratasys, “Aviradyne Technology - Sandwich Composite Production Cost Reduced 52% with Direct Digital Manufacturing,” http://www.stratasys.com/resources/case-studies/commercial-products/aviradyne (Accessed 15 FEB 2017) 

  13. Yang, K.M., Park, J.H., Choi, T.G., Hwang, J.S., Yang, D.Y., Lyu, M.-Y.. Analysis of Mechanical Characteristics of Polymer Sandwich Panels Containing Injection Molded and 3D Printed Pyramidal Kagome Cores. Elastomers and composites = 엘라스토머 및 콤포지트, vol.51, no.4, 275-279.

  14. Bartolozzi, G., Pierini, M., Orrenius, U., Baldanzini, N.. An equivalent material formulation for sinusoidal corrugated cores of structural sandwich panels. Composite structures, vol.100, 173-185.

  15. Xia, Y., Friswell, M.I., Flores, E.I.S.. Equivalent models of corrugated panels. International journal of solids and structures, vol.49, no.13, 1453-1462.

  16. Zhang, J., Supernak, P., Mueller-Alander, S., Wang, C.H.. Improving the bending strength and energy absorption of corrugated sandwich composite structure. Materials & design, vol.52, 767-773.

  17. Libove, C. and Hubka, R. E., “Elastic Constants for Corrugated-Core Sandwich Plates,” National Advisory Committee for Aeronautics, No. NACA-TN-2289, 1951. 

  18. Boorle, R.K., Mallick, P.K.. Global bending response of composite sandwich plates with corrugated core: Part I: Effect of geometric parameters. Composite structures, vol.141, 375-388.

  19. Chang, Wan-Shu, Ventsel, Edward, Krauthammer, Ted, John, Joby. Bending behavior of corrugated-core sandwich plates. Composite structures, vol.70, no.1, 81-89.

  20. Buannic, Natacha, Cartraud, Patrice, Quesnel, Tanguy. Homogenization of corrugated core sandwich panels. Composite structures, vol.59, no.3, 299-312.

  21. Mohammadi, H., Ziaei-Rad, S., Dayyani, I.. An equivalent model for trapezoidal corrugated cores based on homogenization method. Composite structures, vol.131, 160-170.

  22. Biancolini, M.E.. Evaluation of equivalent stiffness properties of corrugated board. Composite structures, vol.69, no.3, 322-328.

  23. ASTM D790-03, “Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials,” http://mahshahr.aut.ac.ir/lib/exe/fetch.php?media=labs:astm_d790.pdf (Accessed 9 JUN 2017) 

  24. Magnucki, Krzysztof, Magnucka-Blandzi, Ewa, Wittenbeck, Leszek. Elastic bending and buckling of a steel composite beam with corrugated main core and sandwich faces—Theoretical study. Applied mathematical modelling, vol.40, no.2, 1276-1286.

  25. BS EN ISO 178 “Plastics: Determination of Flexural Properties,” http://img42.chem17.com/5/20120529/634738817689531250.pdf (Accessed 9 JUN 2017). 

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