National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Utilization of Nanofibres in the Traditional Ceramics Body
Sedláček, Daniel ; Stančík,, Hynek (referee) ; Sokolář, Radomír (advisor)
This thesis summarizes the current knowledge about ceramic composites with nanofibers. So far, most research focused on the reinforcement of hi-tech ceramics, such as carbides and nitrides, however, this traditional ceramics left behind. Due to the improving the efficiency of production of nanofibers and thus a drop in prices, companies consider their use even in a cheaper ceramic materials. Reinforcement of traditional ceramic shard could theoretically improve many characteristics, but there are absolute minimum of practical researches.
Transparent fibre reinforced ceramics
Lövy, Vít ; Drdlík, Daniel (referee) ; Chlup, Zdeněk (advisor)
This bachelor thesis summarizes possibilities of toughening of ceramic materials with various types of fibres and describes the basic principles for preparation of transparent fibre-reinforced composite materials. The role of fibre-matrix interface and the measurement methods enabling estimation of the interfacial strength and other characteristics are explained. The single fibre push-out test using a standard indentation technique was chosen for interfacial parameters determination of the composite consisting from a borosilicate matrix reinforced by SiC fibres in the practical part of this work.
Transparent fibre reinforced ceramics
Lövy, Vít ; Drdlík, Daniel (referee) ; Chlup, Zdeněk (advisor)
This bachelor thesis summarizes possibilities of toughening of ceramic materials with various types of fibres and describes the basic principles for preparation of transparent fibre-reinforced composite materials. The role of fibre-matrix interface and the measurement methods enabling estimation of the interfacial strength and other characteristics are explained. The single fibre push-out test using a standard indentation technique was chosen for interfacial parameters determination of the composite consisting from a borosilicate matrix reinforced by SiC fibres in the practical part of this work.
Utilization of Nanofibres in the Traditional Ceramics Body
Sedláček, Daniel ; Stančík,, Hynek (referee) ; Sokolář, Radomír (advisor)
This thesis summarizes the current knowledge about ceramic composites with nanofibers. So far, most research focused on the reinforcement of hi-tech ceramics, such as carbides and nitrides, however, this traditional ceramics left behind. Due to the improving the efficiency of production of nanofibers and thus a drop in prices, companies consider their use even in a cheaper ceramic materials. Reinforcement of traditional ceramic shard could theoretically improve many characteristics, but there are absolute minimum of practical researches.
Elastic and fracture properties of refractory ceramic matrix composites at 900-1300řC
Černý, Martin ; Glogar, Petr ; Dusza, J.
Young's modulus of refractory ceramic matrix composites with unidirectional reinforcement by Nextel 720 or Nicalon NL202 fibers was measured in air at 900-1300řC. Above 1200řC the modulus decreases remarkably and it depends also on the strain rate.
Lomové chování kompozitů s křehkou (skelnou) matricí
Dlouhý, Ivo ; Chlup, Zdeněk ; Boccaccini, A. R.
A number of examples exist that indicate the potential for increasing the toughness of brittle matrix by dispersing different reinforcements. For further development of these advanced materials the real material response during mechanical loading under presence of flaws appears to be important. Theoretical and experimental knowledge sampled on different kinds of brittle matrix composites is summarised in the paper. These include glass matrix with metallic particles, alumina platelets, continuous Nicalon fibres, both the chopped fibres and ZrO2 particles (hybrid composite). Almost all of these composites were tested in as received state but also after thermal exposition and/or thermal shocking applied according to supposed composite application. Chevron notch technique was mainly used for the fracture toughness evaluation. Damage will be explained on base of fracture micromechanism

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