National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Monitoring of FDM printing process
Rafaja, Hynek ; Čížek, Petr (referee) ; Zatočilová, Aneta (advisor)
The target of this work is the development of a monitoring system for 3D printing by the Fused Deposition Modeling method, which will be able to identify printing error conditions. During the solving process the needed error conditions were identified. Then, an algorithm was programmed to identify the error condition using the criterion. The resulting Monitoring Hardware was implemented in the printer and experimentally verified. A system has been developed that can identify error conditions with an accuracy of 94.7%. The main benefit of this work is the automatic identification of error conditions that stop printing if necessary. This leads to a reduction in scrap and cost savings. In the future, the software could automatically adjust the print parameters when identifying an error condition. This would prevent or completely eliminate the error condition without user intervention.
Design of coating system with integrated milling head for 3D printing of metal prototypes
Rafaja, Hynek ; Vrána, Radek (referee) ; Koutný, Daniel (advisor)
The bachelor thesis deals with conceptual and design solution of coating system with integrated milling head for 3D printing of metal prototypes. It contains a simple overview of produced machines with similar technology. Further, the thesis contains conceptual solutions from which the final version is selected according to the specified parameters. Based onthe selected variant, a design of the application system with a built-in milling head for SLM280HL is created and detailed.
Monitoring of FDM printing process
Rafaja, Hynek ; Čížek, Petr (referee) ; Zatočilová, Aneta (advisor)
The target of this work is the development of a monitoring system for 3D printing by the Fused Deposition Modeling method, which will be able to identify printing error conditions. During the solving process the needed error conditions were identified. Then, an algorithm was programmed to identify the error condition using the criterion. The resulting Monitoring Hardware was implemented in the printer and experimentally verified. A system has been developed that can identify error conditions with an accuracy of 94.7%. The main benefit of this work is the automatic identification of error conditions that stop printing if necessary. This leads to a reduction in scrap and cost savings. In the future, the software could automatically adjust the print parameters when identifying an error condition. This would prevent or completely eliminate the error condition without user intervention.
Design of coating system with integrated milling head for 3D printing of metal prototypes
Rafaja, Hynek ; Vrána, Radek (referee) ; Koutný, Daniel (advisor)
The bachelor thesis deals with conceptual and design solution of coating system with integrated milling head for 3D printing of metal prototypes. It contains a simple overview of produced machines with similar technology. Further, the thesis contains conceptual solutions from which the final version is selected according to the specified parameters. Based onthe selected variant, a design of the application system with a built-in milling head for SLM280HL is created and detailed.

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