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    "title": "Frequency Based Damage Detection and Localization of Propeller Shaft of a Ship Using Experimental Modal Analysis",
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            "value": ": The whole ship is dependent on the propeller shaft for its movement, the vibrations produced from the shaft destabilizes the whole ship and may lead to accidents. With this objective in mind, in this paper, we describe a methodology to detect and locate the crack present in the intermediate simply supported shaft using experimental modal analysis. In the present work, 304 stainless steel material shaft is taken as the specimen as it is one of the most versatile and widely used steels in the world for making different shafts used in any machinery equipment like ships propeller shaft, engine shafts, motor shafts. Initially, analytical analysis is done on the simply supported shaft then numerical modal analysis using ANSYS 2019 R3 software. Results obtained from the numerical modal analysis are compared with the experimental modal analysis which is done using FFT analyzer. Finally, the first three natural frequencies are used as a tool to detect damage detection and location in the propeller intermediate shaft",
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                "unstructured": "RafalGradzki, ZbigniewKulesza&BlazejBartoszewicz,Method of shaft crack detection based on squared gain of vibration amplitude.Nonlinear Dyn (2019) 98:671–690"
            },
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                "key": "ref2",
                "doi": "10.1111/j.1747-1567.2012.00823.x",
                "unstructured": "Z.C. Ong, A.G.A. Rahman, Z. Ismail,Determination of Damage Severity on Rotor Shaft Due to Crack Using Damage Index Derived from Experimental Modal Data.Experimental Techniques.(2014); 38:18–30"
            },
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                "key": "ref3",
                "doi": "10.1007/s00419-018-1352-3",
                "unstructured": "Meilong Chen,Shuying Li,Hongliang Li,Tao Peng,Siyuan Liu,New analytic method for free torsional vibration analysis of a shaft Mech.(2018). with multiple disks and elastic supports.Arch Appl"
            },
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                "key": "ref4",
                "unstructured": "Aiko FURUKAWA and Junji KIYONO,Identification of Structural Damage Based on Vibration Responses.13th World Conference on Earthquake Engineering Vancouver, B.C., Canada. (2004); Paper No. 132"
            },
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                "key": "ref5",
                "doi": "10.1007/s12206-017-0715-y",
                "unstructured": "HyungSuk Han, KyoungHyun Lee, Soo Hong Jeon and SungHo Park,Lateral-torsional coupled vibration of a propulsion shaft with a diesel engine supported by a resilient mount,Journal of Mechanical Science and Technology;31 (8) :3727~3735"
            },
            {
                "key": "ref6",
                "doi": "10.1016/j.mechmachtheory.2008.01.007",
                "unstructured": "Hosseini, S.A.A., Khadem, S.E.: Free vibrations analysis of a rotating shaft with nonlinearities in curvature and inertia. Mech. Mach. Theory. (2009); 44(1):272–288"
            },
            {
                "key": "ref7",
                "doi": "10.1016/j.ijmecsci.2006.01.008",
                "unstructured": "Salarieh, H., Ghorashi, M.: Free vibration of Timoshenko beam with finite mass rigid tip load and flexural-torsional coupling. Int. J. Mech. Sci. (2006);48(7):763–779"
            },
            {
                "key": "ref8",
                "doi": "10.1243/09544062jmes167",
                "unstructured": "Wu, T.X.: Analytical study on torsional vibration of circular and annular plate. Proc. Inst. Mech Eng. Part C J. Mech. Eng. Sci. (2006); 220(4):393–401"
            },
            {
                "key": "ref9",
                "doi": "10.1177/0954410012465712",
                "unstructured": "Shirazi, A.A.R.H., Hematiyan, M.R.: Closed-form formulation for torsional analysis of beams with open or closed cross sections having a crack. Proc. Inst. Mech. Eng. Part G J. Aerosp. Eng. (2013); 227(12):1953–1967"
            },
            {
                "key": "ref10",
                "doi": "10.1016/s0045-7825(97)00013-3",
                "unstructured": "Wang Z, Lin RM, Lim MK. “Structural damage detection using measured FRF data.” Computer methods in applied mechanics and engineering 1997; 147:187-197"
            },
            {
                "key": "ref11",
                "doi": "10.1006/jsvi.1997.1308",
                "unstructured": "Thyagarajan SK, Schulz MJ, Pai PF. ”Detecting structural damage using frequency response functions.” Journal of Sound and Vibration 1998; 210(1): 162-170"
            },
            {
                "key": "ref12",
                "doi": "10.1016/s0045-7949(01)00170-5",
                "unstructured": "Lee U, Shin J. “A frequency response function-based structural damage identification method.” Computers and Structures 2002; 80:117-132"
            },
            {
                "key": "ref13",
                "doi": "10.1016/s0041-624x(97)00091-7",
                "unstructured": "Ohtsu M, Shigeishi M, Sakata Y. “Nondestructive evaluation of defects in concrete by quantitative acoustic emission and ultrasonics.” Ultrasonics 1998; 36:187-195"
            },
            {
                "key": "ref14",
                "doi": "10.1061/(asce)0733-9445(2001)127:4(418)",
                "unstructured": "Peterson ST, McLean DI, Symans MD, Pollock DG, Cofer WF, Emerson RN, Gridley KJ. “Application of dynamic system identification to timber beams. I.” Journal of Structural Engineering 2001;127:418-425"
            },
            {
                "key": "ref15",
                "doi": "10.1006/jsvi.1999.2445",
                "unstructured": "Narayana, K.L., and Jebaraj, C., ‘‘Sensitivity Analysis of Local/Global Modal Parameter for Identification of a Crack in a beam,’’ Journal of Sound and Vibration (1999);5(228):977–994"
            },
            {
                "key": "ref16",
                "doi": "10.1006/jsvi.2002.5132",
                "unstructured": "Kim, J.T., and Stubbs, N., ‘‘Crack Detection in Beam Type Structure Using Frequency Data,’’ Journal of Sound and Vibration (2003);1(259):145–160"
            },
            {
                "key": "ref17",
                "doi": "10.1006/jsvi.1996.0160",
                "unstructured": "Banks HT, Inman DJ, Leo DJ, Wang Y. “An experimentally validated damage detection theory in smart structures.” Journal of Sound and Vibration 1996; 191(5): 859-880"
            },
            {
                "key": "ref18",
                "unstructured": "SurgwonSohn, “Experimental Modal Analysis of a Cantilever Beam Using a Wireless"
            },
            {
                "key": "ref19",
                "unstructured": "Sensor Node For Structural Health Monitoring”, International Journal of Latest Trends In Engineering and Technology,2016;8(4) :112-115"
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