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A Study of 100 tonf Tensile Load for SMART Mooring Line Monitoring System Considering Polymer Fiber Creep Characteristics
Joseph Chul Chung, Michael Myung-Sub Lee, Sung Ho Kang
J. Ocean Eng. Technol.. 2021;35(4):266-272.   Published online August 30, 2021
DOI: https://doi.org/10.26748/KSOE.2021.009

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A Study of 100 tonf Tensile Load for SMART Mooring Line Monitoring System Considering Polymer Fiber Creep Characteristics
Journal of Ocean Engineering and Technology. 2021;35(4):266-272   Crossref logo
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Tensile creep behavior of unidirectional glass-fiber polymer composites
Polymer Composites. 2005;26(3):287-292   Crossref logo
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Time and temperature dependence of transverse tensile failure of unidirectional carbon fiber-reinforced polymer matrix composites
Creep and Fatigue in Polymer Matrix Composites. 2019;253-268   Crossref logo
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Experimental study on creep characteristics of infiltrated coal-rock under load
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Smart self-sensing fiber-reinforced polymer sheet with woven carbon fiber line sensor for structural health monitoring
Advances in Structural Engineering. 2020;24(1):17-24   Crossref logo
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Tensile creep study and mechanical properties of carbon fiber nano-composites
Journal of Polymer Research. 2012;19(7):   Crossref logo
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Tensile creep behaviour of polymethylpentene-silica nanocomposites
Polymer International. 2010;59(6):719-724   Crossref logo
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Non-linear tensile creep of polypropylene: Time-strain superposition and creep prediction
Polymer. 2006;47(1):346-356   Crossref logo
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Mechanical properties of aligned long glass fiber reinforced polypropylene. II: Tensile creep behavior
Polymer Composites. 1999;20(2):207-215   Crossref logo
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Tensile failure load and fiber diameter as stochastic variables in the determination of fiber strength statistics
Reliability Engineering & System Safety. 1992;35(1):73-76   Crossref logo
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