National Repository of Grey Literature 14 records found  previous11 - 14  jump to record: Search took 0.02 seconds. 
Development of a new type of lightweight self-levelling floor screed
Šenk, Josef ; Ševčík, Milan (referee) ; Drochytka, Rostislav (advisor)
This thesis is focused on development of a new type of lightweight self-levelling floor screed. The aim of this thesis is to develop lightweight screed with self-levelling function, which could be stored in a dry mixture in bags or silos, designed for use with only addition of water.
Development od flooring systems with usage od lightweight aggregate
Jankovský, Jiří ; Ševčík, Milan (referee) ; Drochytka, Rostislav (advisor)
The work deals with the possibilities of lightening of the flooring system. Flooring system is solved by lightening the material. The surface layer is modified by lightweight fillers made from the waste materials, lightweight waste materials and fillers made from natural substances. Simultaneously is this work dealing with options of lightening the surface layer by microspheric fillers of separated waste fly ash.
Multifunctional building in Drslavice, interior and finishing work
Věrný, Roman ; Hanzelková, Martina (referee) ; Šlanhof, Jiří (advisor)
The subject of the bachelor thesis is a solution of the technological phase of the internal and finishing works of the premises of the multifunctional building in the village Drslavice. This work focuses on the implementation of layers of floor structuers. It is about a new building which is going to serve as a sports hall with a restaurant. The bachelor thesis contains a technical report, technological specification, a statement of measurements, a solution of an organization of building, a mechanical composition, a control and testing plan, occupational safety and a time schedule.
Development of lightweight porous concrete flooring on waste material basis
Šenk, Josef ; Ševčík, Milan (referee) ; Drochytka, Rostislav (advisor)
This thesis is oriented on lightweight building materials and on development of new leightweight porous concrete flooring on waste material basis.

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