The aim of this paper is to investigate the cause of nonlinear behavior mechanism of change in electrical resistance of 3D printed carbon fiber reinforced plastics (CFRP) due to tensile loading. The electrical resistance change method is a nondestructive testing method that helps detect strain and damage. In previous research for electrical resistance change method applied to 3D printed CFRP, the change in electrical resistance is different compared with the one of conventional CFRP. The behavior makes health monitoring difficult, and the phenomenon needs to be clarified. In this research, we focused on the electrode fabrication method and viscoelasticity effect during cyclic tests. Polishing and laser processing are used as surface treatments for electrode fabrication. Consequently, the treatments are found to affect the reverse piezo-resistivity. In addition, the decrease in electrical resistance depends on the test speeds of cyclic test. The viscoelasticity is found to affect the nonlinear behavior.
机构:
Department of Production Engineering, National Institute of Technology, TiruchirappalliDepartment of Production Engineering, National Institute of Technology, Tiruchirappalli
Salve S.
Jagadesh T.
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Department of Production Engineering, National Institute of Technology, TiruchirappalliDepartment of Production Engineering, National Institute of Technology, Tiruchirappalli
机构:
Nihon Univ, Dept Mech Engn, Chiyoda Ku, Tokyo, Japan
Nihon Univ, Coll Sci & Technol, Dept Mech Engn, 1-8-14 Kanda Surugadai,Chiyoda, Tokyo 1018308, JapanNihon Univ, Dept Mech Engn, Chiyoda Ku, Tokyo, Japan
Ueda, Masahito
Nakayama, Daisuke
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Fujifilm Business Innovat Corp, Ebina, JapanNihon Univ, Dept Mech Engn, Chiyoda Ku, Tokyo, Japan
Nakayama, Daisuke
Katsuta, Nobuhiro
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Fujifilm Business Innovat Corp, Ebina, JapanNihon Univ, Dept Mech Engn, Chiyoda Ku, Tokyo, Japan
Katsuta, Nobuhiro
Okoshi, Masayuki
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Fujifilm Business Innovat Corp, Ebina, Japan
Gifu Univ, Gifu, JapanNihon Univ, Dept Mech Engn, Chiyoda Ku, Tokyo, Japan
机构:
Romanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, RomaniaRomanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, Romania
Maier, Raluca
Bucaciuc, Sebastian-Gabriel
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Romanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, RomaniaRomanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, Romania
Bucaciuc, Sebastian-Gabriel
Mandoc, Andrei Cristian
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Romanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, RomaniaRomanian Res & Dev Inst Gas Turbines COMOTI, Composite Mat Lab Aeronaut Field, 220D Iuliu Maniu Av, Bucharest 061126, Romania