Národní úložiště šedé literatury Nalezeno 5 záznamů.  Hledání trvalo 0.00 vteřin. 
Shear strength of the fiber-reinforced polymer composite
Jurko, Michal ; Knob, Antonín (oponent) ; Čech, Vladimír (vedoucí práce)
The diploma thesis deals with the study of Inter-Laminar Shear Strength (ILSS) of polymer composites, based on unsaturated polyester resin with unidirectionally oriented basalt or glass fibers. The basis of the experimental part is the preparation of composite samples with different types of surface treatment of a fibers (a reinforcement) as well as the surface treatment itself. The untreated, the commercially treated fibers and the plasmatreated fibers used as reinforcement in the polymer composites were analysed by a short beam shear test and their ILSS was determined. The effect of various deposition conditions during Plasma-Enhanced Chemical Vapour Deposition (PECVD) on the value of ILSS of the composite with originally unsized glass or basalt fibers was studied. The impact of aging on the interlaminar shear strength of the composites was investigated for commercially treated glass fibers. The Scanning Electron Microscopy (SEM) is also used in the thesis together with the Energy Dispersive Spectroscopy (EDS). Based on all the results a proposal was made to correct and improve the deposition conditions and thus improve the interphase to achieve the required shear properties of polymer composites.
Polymer composites with controlled interphase
Zvonek, Milan ; Knob, Antonín (oponent) ; Čech, Vladimír (vedoucí práce)
The aim of the diploma thesis is preparation of glass fiber-reinforced polymer composites with controlled interphase using the method of plasma-enhanced chemical vapour deposition (PECVD) and tetravinylsilane as the monomer. The theoretical part focuses on literature recherché on plasma and plasma polymerization, thin films and composites. Experimental part deals with materials and equipment used for fiber surface modification and preparation of fiber-reinforced composites. The fiber surface modification was done using different deposition conditions. The chemical and mechanical analysis of formed interlayers was done using FTIR spectrometry and scratch test. The effect of surface modification was evaluated by acquired interlaminar shear strength using short beam shear test.
Shear strength of the fiber-reinforced polymer composite
Jurko, Michal ; Knob, Antonín (oponent) ; Čech, Vladimír (vedoucí práce)
The diploma thesis deals with the study of Inter-Laminar Shear Strength (ILSS) of polymer composites, based on unsaturated polyester resin with unidirectionally oriented basalt or glass fibers. The basis of the experimental part is the preparation of composite samples with different types of surface treatment of a fibers (a reinforcement) as well as the surface treatment itself. The untreated, the commercially treated fibers and the plasmatreated fibers used as reinforcement in the polymer composites were analysed by a short beam shear test and their ILSS was determined. The effect of various deposition conditions during Plasma-Enhanced Chemical Vapour Deposition (PECVD) on the value of ILSS of the composite with originally unsized glass or basalt fibers was studied. The impact of aging on the interlaminar shear strength of the composites was investigated for commercially treated glass fibers. The Scanning Electron Microscopy (SEM) is also used in the thesis together with the Energy Dispersive Spectroscopy (EDS). Based on all the results a proposal was made to correct and improve the deposition conditions and thus improve the interphase to achieve the required shear properties of polymer composites.
Polymer composites with controlled interphase
Zvonek, Milan ; Knob, Antonín (oponent) ; Čech, Vladimír (vedoucí práce)
The aim of the diploma thesis is preparation of glass fiber-reinforced polymer composites with controlled interphase using the method of plasma-enhanced chemical vapour deposition (PECVD) and tetravinylsilane as the monomer. The theoretical part focuses on literature recherché on plasma and plasma polymerization, thin films and composites. Experimental part deals with materials and equipment used for fiber surface modification and preparation of fiber-reinforced composites. The fiber surface modification was done using different deposition conditions. The chemical and mechanical analysis of formed interlayers was done using FTIR spectrometry and scratch test. The effect of surface modification was evaluated by acquired interlaminar shear strength using short beam shear test.
Interlaminar shear strength of textile reinforced carbon-carbon composite
Kotek, Jiří ; Glogar, Petr ; Černý, Martin
Interlaminar fracture of carbon fabric reinforced carbon composites with different volume fractions of reinforcement (Vf = 36 - 60 %) was investigated by tensile loading of double-notched specimens. Dynamic tensile and in-plane shear moduli of all materials increased with increasing Vf. The interlaminar shear strength yielded maximum values for specimens with volume fraction Vf ~ 48 %. After graphitisation, the in-plane shear modulus fell remarkably which is probably due to "stress graphitisation" of the matrix.

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