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- W3211365015 abstract "An experimental study is preformed to investigate the in-situ damage sensing capabilities of intra-ply hybrid carbon/glass laminate and epoxy composites under quasi-static interlaminar shear loading. A three-dimensional electrical sensory network is generated inside the composites through embedded carbon nanotubes (CNTs) in an epoxy matrix along with the carbon fibers in the intra-ply hybrid laminates. CNTs are dispersed in the epoxy matrix using a combination of ultrasonication and shear mixing techniques. Four circumferential ring probes are used to examine the electrical response under interlaminar shear load. The effect of four different intra-ply orientations (((0–90) C , where carbon fibers are oriented along the loading direction), ((0–90) G , where glass fibers are oriented along the loading direction), ((45/−45, where glass and carbon fibers are oriented at 45 o /−45 o and the laminates are repeated), and ((45/−45) A , where glass and carbon fibers are oriented at 45 o /−45 o and the laminates are alternated)) on the shear constitutive behavior and the damage detection are discussed. Intra-ply orientations of (45/−45) and (45/−45) A showed higher interlaminar shear strength and shear strain at break compared to (0/90) C and (0/90) G orientations. Out of all four orientations, (45/−45) A provided a better resolution of electrical response for damage sensing applications." @default.
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- W3211365015 date "2021-11-10" @default.
- W3211365015 modified "2023-09-26" @default.
- W3211365015 title "In-situ damage sensing in intra-ply glass/carbon laminate composites under interlaminar shear loading" @default.
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- W3211365015 doi "https://doi.org/10.1177/00219983211049291" @default.
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