National Repository of Grey Literature 4 records found  Search took 0.01 seconds. 
Cold Spray coatings on high strength steels
Šesták, Stanislav ; Čupera, Jan (referee) ; Řehořek, Lukáš (advisor)
This bachelor’s thesis focuses on possible applications of the Cold Spray additive technology in context of high strength steels. The theoretical part of this work represents an extensive research on the topic of Cold Spray technology, showing connections between many of the mechanisms of this technology. This part also focuses specifically on high strength steels, their types, microstructures and properties. The experimental part of this work examines four samples of Cold Spray coatings on a high strength steel. After depositing these coatings, microstructure and microhardness analysis are provided.
Deposition of MMC-type composite coatings on steel substrates using the Cold Spray method
Šesták, Stanislav ; Doubrava, Marek (referee) ; Řehořek, Lukáš (advisor)
The Cold Spray method is a modern coating method characterized by several interesting advantages and drawbacks. One of the most significant drawbacks is the difficult manufacturing of materials with limited ductility. This work is dedicated to this issue, and its main objective is the development of tribological coatings for high-temperature applications on steel substrates. Extensive research focused on the nature of the chosen deposition method and its specifics in the context of materials with limited ductility is provided and concluded by a set of methodical approaches of deposition, which are verified in the experimental part of this work. The experimental part focused on processing Ni-B4C and Ni-SiC composite coatings, in which the reinforcement particle volume fraction was chosen as 20 and 40 %. All coatings were deposited on 42CrMo4 steel substrates. The analysis of the coatings consisted of microstructure evaluation (using optical and electron microscopy) hardness testing and adhesion testing. The Ni-SiC coating consisting of 40 vol.% SiC particles showed the best properties; compared to other coatings it offered the highest microstructural quality and microhardness values. This coating was found suitable for the chosen application, and further suggestions on improving the quality of this coating were provided in this work’s conclusion.
Interactive learning models for virtual reality
ŠESTÁK, Stanislav
The bachelor's thesis is devoted to the connection of virtual reality and the teaching of this technology in primary schools. The main goal of this work is the creation of three models with methodical creation procedures for teachers, familiarization with the environment of applications for creating virtual reality and applications for content creation. The theoretical work focuses on the relationship between virtual reality and the school environment (use in schools, etc.), further evaluates selected applications from the point of view of use in teaching and compares them with each other. The practical part of the thesis describes the process of creating three models, for which two different creation approaches were used. The first approach was to create a model using 3D scanning, and the second was to work with GIS-type data and edit it in Blender. The models and methodological procedures will be published under an open license. The work procedure and the use of models is applied (tested) in the framework of a sample teaching lesson at a primary school.
Cold Spray coatings on high strength steels
Šesták, Stanislav ; Čupera, Jan (referee) ; Řehořek, Lukáš (advisor)
This bachelor’s thesis focuses on possible applications of the Cold Spray additive technology in context of high strength steels. The theoretical part of this work represents an extensive research on the topic of Cold Spray technology, showing connections between many of the mechanisms of this technology. This part also focuses specifically on high strength steels, their types, microstructures and properties. The experimental part of this work examines four samples of Cold Spray coatings on a high strength steel. After depositing these coatings, microstructure and microhardness analysis are provided.

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