PSI - Issue 27

Tuswan Tuswan et al. / Procedia Structural Integrity 27 (2020) 22–29 Tuswan et al. / Structural Integrity Procedia 00 (2019) 000 – 000

29

8

Bragagnolo, G., Crocombe, A.D., Ogin, S.L., Mohagheghian, I., Sordon, A., Meeks, G., Santoni, C., 2020. Investigation of skin-core debonding in sandwich structures with foam cores. Materials & Design 186, 2020, 1-10. Burlayenko, V.N., Sadowski, T., 2010. Influence of skin/core debonding on free vibration behavior of foam and honeycomb cored sandwich plates. International Journal Non-Linear Mechanics 45(10), 959-968. Burlayenko, V.N., Sadowski, T., 2011a. Dynamic behaviour of sandwich plates containing single/multiple debonding. Computational Materials Science 50(4), 1263 – 1268. Burlayenko, V.N., Sadowski, T., 2011b. Numerical Modeling of Sandwich Plates with Partially Dedonded Skin-to-Core Interface for Damage Detection, The 8th International Conference on Structural Dynamics. Leuven, Belgium. Burlayenko, V.N., Sadowski, T., 2018. Linear and Nonlinear Dynamic Analyses of Sandwich Panels with Face Sheet-to-Core Debonding. Shock and Vibration 2018, 1-26. Cao, M.S., Sha, G.G., Gao, Y.F., Ostachowicz, W., 2017. Structural damage identification using damping: a compendium of uses and features. Smart Materials and Structures 2 6, 1-14. Chen, Y., Hou, S., Fu, K., Han, X., Ye, L., 2017. Low-velocity impact response of composite sandwich structures: modelling and experiment. Composite Structures 168, 322 – 334. Dayyani, I., Shaw, A.D., Flores, E.I., Friswell, M.I., 2015. The mechanics of composite corrugated structures: a review with applications in morphing aircraft. Composite Structures 133, 358 – 380. DNV-GL: Steel sandwich panel construction, DNV-GL, Norway, 2016. Fatt, M.S.H., Sirivolu, D., 2017. Marine composite sandwich plates under air and water blasts. Marine Structures 56, 163 – 185. Gaiotti, M., Rizzo, C.M., 2013. Finite element modeling strategies for sandwich composite laminates under compressive loading. Ocean Engineering 63, 44-51. Hou, J.P., Jeronimidis, G., 1999. Vibration of delaminated thin composite plates. Composites Part A: Applied Science and Manufacturing 30(8), 989 - 995. Ismail, A., Zubaydi, A., Piscesa, B., Ariesta, R.C., Tuswan, 2020. Vibration - based damage identification for ship sandwich plate using finite element method. Open Engineering 10(1). Jian, S.H., Hwu, C., 1995. Free vibration of delaminated composite sandwich beams. AIAA Journal 33(10), 1911-1918. Kaveh, A., Zolghadr, A., 2015. An improved CSS for damage detection of truss structures using changes in natural frequencies and mode shapes. Advances in Engineering Software 80, 93 – 100. Krueger, R., O’Brien, T.K., 2001. A shell/3D modeling technique for the analysis of delaminated composite laminates. Composit es Part A: Applied Science and Manufacturing 32(1), 25-44. Lou, J., Wu, L., Ma, L., Xiong, J., Wang, B., 2014. Effects of local damage on vibration characteristics of composite pyramidal truss core sandwich structure. Composites Part B: Engineering 62, 73 – 87. Lu, L., Song, H., Huang, C., 2017. Effects of random damages on dynamic behavior of metallic sandwich panel with truss core. Composites Part B: Engineering 116, 278 – 290. Paolozzi, A., Peroni, I., 1990. Detection of debonding damage in a composite plate through natural frequency variations. Jour nal o f Reinforced Plastics and Composites 9(4), 369 -3 88. Pardoen, G.C., 1989. Effect of delamination on the natural frequencies of composite laminates. Journal of Composite Materials 23(12), 1200 – 1215. Saeid, A.A., Donaldson, S.L., 2016. Experimental and finite element evaluations of debonding in composite sandwich structure with core thickness variations. Advances in Mechanical Engineering 8, 1 – 18. Savin-Barcan, M., Beznea, E.F., Chirica, I., 2018. Influence of fabrication imperfections on dynamic response of a sandwich composite panel of a ship deck structure. IOP Conference Series: Materials Science and Engineering 400, 1-6. Sujiatanti, S.H., Zubaydi, A., Budipriyanto, A., 2018. Finite element analysis of ship deck sandwich panel. Applied Mechanics and Materials 874, 134- 139. Tuswan, T., Abdullah, K., Zubaydi, A., Budipriyanto A., 2019. Finite-element Analysis for Structural Strength Assessment of Marine Sandwich Material on Ship Side-shell Structure. Material Today: Proceedings 13(1), 109-114. Tuswan, Zubaydi, A., Piscesa, B., Ismail, A., 2020. Dynamic characteristic of partially debonded sandwich of ferry ro- ro’s car deck: a numerical modeling. Open Engineering 10(1), 424-433. Wang, Y., Zhang, Z., Xue, X., Zhang, L., 2019. Free vibration analysis of composite sandwich panels with hierarchical honeycomb sandwich core. Thin-Walled Structures 145, 1-10. Yang, C., Hou, X.B., Wang, L., Zhang, X.H., 2016. Applications of different criteria in structural damage identification based on natural frequency and static displacement. Science China Technological Sciences 59, 1746 – 1758. Zhao, B., Xu, Z., Kan, X., Zhong, J., Guo, T., 2016. Structural damage detection by using single natural frequency and the corresponding mode shape. Shock and Vibration 2016, 1 - 8.

Made with FlippingBook Digital Publishing Software