Tufan, MurşitAkbaş, Selçuk2021-09-212021-09-212016Tufan, M., Akbas, S., & Aslan, M. (2016). Decay resistance, thermal degradation, tensile and flexural properties of sisal carbon hybrid composites. Maderas. Ciencia y tecnología, 18(4), 599-606.https://hdl.handle.net/11494/3447This study was supported by BAP (Directory of Scientific Research Projects of Artvin Coruh University) under grant number 2014.F11.02.03.Sisal-carbon hybrid composites were produced from mixtures having different weight ratios of sisal, carbon fibers and recycled polypropylene. All formulations were tested and evaluated for tensile and flexural properties. In addition, the thermal stability of the sisal-carbon hybrid composites were examined via thermogravimetric analysis and decay tests were conducted to determine the degradation of the hybrid composites. Results showed that the biological durability and mechanical and thermal properties improved with the increasing weight ratios of carbon fiber in the hybrid composites. According to the mechanical tests, the optimum hybrid composite formulation was found to be 12% sisal fiber +28% carbon fiber +60% rPP.eninfo:eu-repo/semantics/openAccessConiophora puteanaModulus of rupturePinus sylvestrisThermogravimetric analysisTrametes versicolorConiophora puteanaMechanical propertiesModulus of elasticityDecay resistance, thermal degradation, tensile and flexural properties of sisal carbon hybrid compositesArticle18459960610.4067/S0718-221X2016005000052Q2N/A