National Repository of Grey Literature 6 records found  Search took 0.00 seconds. 
Experimental chamber for testing of special materials using SLM technology
Malý, Martin ; Dočkal, Aleš (referee) ; Koutný, Daniel (advisor)
The thesis deals with the influence of process temperature and pressure on 3D printing using Selective Laser Melting. The aim of the thesis is the design, manufacture and testing of the experimental chamber for SLM 280HL from company SLM Solutions. The main task of the experimental chamber is to increase the temperature of the preheating of the powder bed from the original 200 °C to at least at 400 °C. The device will be used to investigate the influence of high process temperature on the properties of printed materials. The thesis also deals with the design of the powder applicator for elevated temperatures.
Design of device for powder recoating at elevated temperatures for thin-walled parts
Hertl, David ; Červinek, Ondřej (referee) ; Malý, Martin (advisor)
The thesis deals with the influence and methods of preheating on 3D printing using Selective Laser Melting. The aim of the thesis is to design of powder coating device for printing thin-walled parts at elevated temperatures for SLM 280HL by SLM Solutions. New device was designed based on the research of current methods of preheating. Designed device is capable of preheating temperatures up to 400 °C.
Fiber joints and their protection
Galovič, Dominik ; Dejdar, Petr (referee) ; Münster, Petr (advisor)
The bachelor thesis deals with the issue of optical fiber joining. The theoretical part describes the methods of optical fiber splicing, protection of optical splices and possible errors that affect the quality of the optical splice. Also described are methods for measuring important optical joint parameters, such as attenuation or reflection attenuation. An important part of the work is a description of the restoration of primary protection of spliced fiber. The theory is further applied in the practical part, where the attenuation of the optical links was measured using the mentioned methods. It also includes a comparison of the mechanical strength of optical splice and a joint formed by optical connectors. This knowledge is then applied in a proposal for minimizing the optical splice and proposals for restoring the primary protection of the optical splice was described.
Fiber joints and their protection
Galovič, Dominik ; Dejdar, Petr (referee) ; Münster, Petr (advisor)
The bachelor thesis deals with the issue of optical fiber joining. The theoretical part describes the methods of optical fiber splicing, protection of optical splices and possible errors that affect the quality of the optical splice. Also described are methods for measuring important optical joint parameters, such as attenuation or reflection attenuation. An important part of the work is a description of the restoration of primary protection of spliced fiber. The theory is further applied in the practical part, where the attenuation of the optical links was measured using the mentioned methods. It also includes a comparison of the mechanical strength of optical splice and a joint formed by optical connectors. This knowledge is then applied in a proposal for minimizing the optical splice and proposals for restoring the primary protection of the optical splice was described.
Design of device for powder recoating at elevated temperatures for thin-walled parts
Hertl, David ; Červinek, Ondřej (referee) ; Malý, Martin (advisor)
The thesis deals with the influence and methods of preheating on 3D printing using Selective Laser Melting. The aim of the thesis is to design of powder coating device for printing thin-walled parts at elevated temperatures for SLM 280HL by SLM Solutions. New device was designed based on the research of current methods of preheating. Designed device is capable of preheating temperatures up to 400 °C.
Experimental chamber for testing of special materials using SLM technology
Malý, Martin ; Dočkal, Aleš (referee) ; Koutný, Daniel (advisor)
The thesis deals with the influence of process temperature and pressure on 3D printing using Selective Laser Melting. The aim of the thesis is the design, manufacture and testing of the experimental chamber for SLM 280HL from company SLM Solutions. The main task of the experimental chamber is to increase the temperature of the preheating of the powder bed from the original 200 °C to at least at 400 °C. The device will be used to investigate the influence of high process temperature on the properties of printed materials. The thesis also deals with the design of the powder applicator for elevated temperatures.

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