National Repository of Grey Literature 2 records found  Search took 0.00 seconds. 
Innovation of guide rail production technology
Zlínská, Marie ; Ohnišťová, Petra (referee) ; Píška, Miroslav (advisor)
This bachelor's thesis provides the new plan of technological process of production of the guide rail used on the splitting machine type SVIT 06155. The current process of component production, which was designed more than 40 years ago, is proving inefficient with regard to current production possibilities. The first part of the work describes the process of splitting the leather, further explains the principle of operation of the machine and then defines the required properties of the guide rail in terms of operating conditions. The analysis of the issue reveals two possible solutions. The first is a change of the material of the guide rail and the second is a change of the coating technology and its composition. The introduction of the experimental part presents the solution, together with the newly designed production process and drawing documentation of the guide rail. The correctness of the design is further verified by the production of the component itself and by the evaluation of the surface condition of the Alicona device using the surface and profile method. Finally, an evaluation is made and recommendations for future production of the component are discussed.
Innovation of guide rail production technology
Zlínská, Marie ; Ohnišťová, Petra (referee) ; Píška, Miroslav (advisor)
This bachelor's thesis provides the new plan of technological process of production of the guide rail used on the splitting machine type SVIT 06155. The current process of component production, which was designed more than 40 years ago, is proving inefficient with regard to current production possibilities. The first part of the work describes the process of splitting the leather, further explains the principle of operation of the machine and then defines the required properties of the guide rail in terms of operating conditions. The analysis of the issue reveals two possible solutions. The first is a change of the material of the guide rail and the second is a change of the coating technology and its composition. The introduction of the experimental part presents the solution, together with the newly designed production process and drawing documentation of the guide rail. The correctness of the design is further verified by the production of the component itself and by the evaluation of the surface condition of the Alicona device using the surface and profile method. Finally, an evaluation is made and recommendations for future production of the component are discussed.

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