National Repository of Grey Literature 70 records found  beginprevious61 - 70  jump to record: Search took 0.01 seconds. 
Design of heated print bed for FDM 3D printer with FEM simulation
Bartoš, Radko ; Slaný, Martin (referee) ; Zemčík, Oskar (advisor)
Master´s thesis deals with desing of a heated bed for FDM 3D printer using the finite element method. It is briefly described the history of RepRap printers, construction and mechanical parts. Are discussed two methods of heating, heated by PCB boards and using power resistors. Furthermore is work closely focused on power resistors. There are presented methods and procedures which leads to an optimal distribution of heated components on the board of heated bed. In conclusion are presented results of testing which are compared with the simulations in ANSYS.
Design and efficiency of FDM printing parameters
Sysel, Karel ; Sedlák, Josef (referee) ; Zemčík, Oskar (advisor)
The essence of the work is to test the possibilities specific type of simple 3D printing device, which has recently been getting more and more into the awareness of professionals and the general public. First, the work is focused on presentation 3D printing technology and current professional equipment, in the second part are experimentally evaluated possibilities of of a simple kind of 3D printers followed by assessment of the applicability of the device in engineering practice.
Design of delta pi 3D printer with tempered bed using CAE systems
Koudela, Ondřej ; Maxa, Jiří (referee) ; Vyroubal, Petr (advisor)
This master's thesis deals with 3D printing using non-commercial 3D RepRap type printers. This work briefly describes development trends of non-commercial RepRap printers, theory of FDM print with analysis and comparison of materials, which are used in printing and the issue of the finite volume method and theory of heat diffusion. The practical part based on simulations from SolidWorks Flow Simulation discussed two basic methods of heating hot bed, then the temperature profile of hot end and the heat flow in full assembly of the printer. Outcome of this work is design an optimized model and the physical assembly of 3D printer delta pi type.
Analysis of temperature profile of 3D printer hot bed and hot end by using CAE
Severa, Tomáš ; Maxa, Jiří (referee) ; Vyroubal, Petr (advisor)
This master‘s thesis deals with 3D printing for non-commercial RepRap 3D printer type and materials used in printing. The outcome of this work is a brief introduction to 3D printing, the theory of heat transfer and analysis of the two most important parts of the printer hot bed and hot end. To analyze and optimize the temperature profile of the hot bed and hot end are used Computer Aided Engineering systems CAD and CAE, SolidWorks and SolidWorks Flow Simulation.
Production of designed quadracopter using rapid prototyping
Melša, Jan ; Fiala, Zdeněk (referee) ; Zemčík, Oskar (advisor)
Design and manufacturing of a quadrocopter prototype using the Rapid Prototyping additive technology – the Fused Deposition Modeling method – is the goal of this Bachelor’s Thesis. The Thesis describes the process the prototype has to go through from the 3D computer model, through production settings down to the production itself. The individual prototype models have been created using the Creo Parametric software and they are adapted to the real components of a functional quadrocopter. The Thesis ends with a technical-economic assessment.
Reprap, 3D FDM printer
Minařík, Miroslav ; Madaj, Martin (referee) ; Zemčík, Oskar (advisor)
The essence of this bachelor’s thesis is describe RepRap, 3D FDM printer. First, the work is focused on presentation some posibilities of rapid prototyping and explain basic mechanics of FDM technology. In the second part, several types of RepRap printers are described and use 3D printer in practice.
Production of replacement cogwheel using RP methods
Světlík, David ; Pekárková, Eva (referee) ; Zemčík, Oskar (advisor)
This bachelor thesis deals with problems of spare cogwheel production using Fused Deposition Modeling technology, compares produced part by FDM technology with part produced by conventional technologies and economical comparison of those technologies. Model, which is made using Autodesk Inventor, is created according to real gearbox of electric whisk. Spare cogwheel was printed in printer of REPRAP standard.
Design of Vacuum Clamping System for Students 3D Printer
Mück, Jonáš ; Brada, Michal (referee) ; Koutný, Daniel (advisor)
This thesis is about the structural design of the vacuum clamping worktop in a 3D printer. The first part reviews existing levels of worktops in 3D printers, their applications and extensions. Also, it describes the principle of vacuum and its technical applications. The next section analyzes the principles of vacuum and proposes a solution for its technical use. The last part describes the implementation of the optimal solution, which is applied to the student 3D printer.
Construction and production of cooling element for open source FDM printer
Lutera, Ladislav ; Sedlák, Josef (referee) ; Zemčík, Oskar (advisor)
The work is focused on "Analysis of the issue FDM printing with regard to the temperature control point print. The intention is to design cooling element selected FDM printer. Production of body cooling on FDM printert. Part of this work is the testing and evaluation of the cooling function space printing.
Possibilities and limitations of RepRap 3D printers and their use in the market
Žižka, Ondřej ; Sigmund, Tomáš (advisor) ; Jetenský, Pavel (referee)
Theoretical part of the thesis is devoted to the relationship of open source licensing to innovation, rapid prototyping and technologies used for 3D printing. There is also a comparison of selected RepRap printers. The main objective is to explore the possibilities and limitations of RepRap 3D printers while also analyzing their use in the Czech market. The aim of the application part is to test selected RepRap printer and explore the possibilities of 3D printing on these devices. In the last part of the thesis research has been conducted on the use of 3D printers. It's objective is to answer the main research question - who and for what purpose uses and aquires 3D printers

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