National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Design of grinding spindl
Slavíček, Josef ; Jaroš, Zdeněk (referee) ; Blecha, Petr (advisor)
The subject of this bachelor thesis is the construction of grinding machine spindle. The work is divided into two main parts. The first part is engaged with the general description of the spindles, their design components, the accuracy requirements and modern trends in the spindles. The second part is engaged with the design calculations of selected grinding spindle. The conclusion of this work is drawing and 3D model of that selected spindle, is created by using Autodesk Inventor 10.
Design of spindle for lathe
Sovadina, František ; Marek, Tomáš (referee) ; Pavlík, Jan (advisor)
The thesis deals with the design and construction of headstocks of a turning centre. The aim is to design a spindle with an output of 20 kW and a maximum speed of 5000 1/min. The research part of the thesis is focused on the description of the basic parameters of the headstock and turning centres needed for the construction of the headstock and contains an analysis of the available spindles on the market. The next part of the thesis deals with the selection and calculation of cutting conditions and the necessary parameters. Analytical calculations are then verified using FEM analysis. At the end of the thesis, a 3D model was developed and headstock drawing documentation.
Designe of spindel for miling centre
Žebrák, Matěj ; Marek, Tomáš (referee) ; Pavlík, Jan (advisor)
The thesis deals with the design and construction of the spindle of the milling centre. The aim of the thesis is to design an indirect drive spindle with an output power of about 25 kW and a tool interface HSK 63. In the design part, first the selection of the drive method and spindle mounting is made. The selected structural design is then elaborated in detail using the necessary structural calculations supported by strength-deformation and modal FEM analysis. The output of this work is a 3D model of the spindle and drawings of the selected nodes.
Designe of spindel for miling centre
Žebrák, Matěj ; Marek, Tomáš (referee) ; Pavlík, Jan (advisor)
The thesis deals with the design and construction of the spindle of the milling centre. The aim of the thesis is to design an indirect drive spindle with an output power of about 25 kW and a tool interface HSK 63. In the design part, first the selection of the drive method and spindle mounting is made. The selected structural design is then elaborated in detail using the necessary structural calculations supported by strength-deformation and modal FEM analysis. The output of this work is a 3D model of the spindle and drawings of the selected nodes.
Design of spindle for lathe
Sovadina, František ; Marek, Tomáš (referee) ; Pavlík, Jan (advisor)
The thesis deals with the design and construction of headstocks of a turning centre. The aim is to design a spindle with an output of 20 kW and a maximum speed of 5000 1/min. The research part of the thesis is focused on the description of the basic parameters of the headstock and turning centres needed for the construction of the headstock and contains an analysis of the available spindles on the market. The next part of the thesis deals with the selection and calculation of cutting conditions and the necessary parameters. Analytical calculations are then verified using FEM analysis. At the end of the thesis, a 3D model was developed and headstock drawing documentation.
Design of grinding spindl
Slavíček, Josef ; Jaroš, Zdeněk (referee) ; Blecha, Petr (advisor)
The subject of this bachelor thesis is the construction of grinding machine spindle. The work is divided into two main parts. The first part is engaged with the general description of the spindles, their design components, the accuracy requirements and modern trends in the spindles. The second part is engaged with the design calculations of selected grinding spindle. The conclusion of this work is drawing and 3D model of that selected spindle, is created by using Autodesk Inventor 10.

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