National Repository of Grey Literature 8 records found  Search took 0.00 seconds. 
Mobile Lift Table Capacity 300 kg
Kirst, Pavel ; Malášek, Jiří (referee) ; Pokorný, Přemysl (advisor)
Aim of this thesis is construction design of handling mobile scissors lift with a capacity of 300 kg, dimensions 700 x 1500 mm and 1000 mm lifting height. The work will be contain construction design of platform, assembly drawing and some drawings of parts.
Material Handling Platform
Bábek, Tomáš ; Malášek, Jiří (referee) ; Škopán, Miroslav (advisor)
This bachelor thesis is focused on constructional design of workshop handling platform which is driven by linear hydraulic motor. First the types of gripping of linear hydraulic motor are described. Next part contains drafted solutions of handling platform construction. Important part of thesis is composed of statistical computing of machinery parts and their strenght computations within the frame of designed proportions. Afterwards the bearings are chosen according to thickness of shaft and the hydraulic motor and the diagram of hydraulic circuit are designed. At last controlling computations are done and assembly and weldment drawings are created.
Material Handling Platform
Bíza, Pavel ; Kašpárek, Jaroslav (referee) ; Škopán, Miroslav (advisor)
The main subject of this thesis is the construction design of material handling platform with hydraulic drive with a loading capacity of 2 500 kg and lifting capacity of 1 800 mm. First of all, the thesis contains the selection of a suitable variant of lifting mechanism, static analysis and determination of the maximum load of the mechanism. The next section includes strength calculations of particular elements of the mechanism with regard to selected dimensions and loading. In the end, the calculation of the hydraulic drive and design of a hydraulic circuit for this drive are presented. The final output of the thesis is a drawing of the assembly of the platform.
Mobile Lift Table Capacity 300 kg
Mahel, Petr ; Jonák, Martin (referee) ; Škopán, Miroslav (advisor)
Bachelor’s thesis is dealing with mobile lift table - capacity 300kg. The main target is to create mobile lift table. My work aims at the mobile scissor lift electro-hydraulic table. The first part handle technical documentation of the designed table, the second part contents the plot.
Material Handling Platform
Bábek, Tomáš ; Malášek, Jiří (referee) ; Škopán, Miroslav (advisor)
This bachelor thesis is focused on constructional design of workshop handling platform which is driven by linear hydraulic motor. First the types of gripping of linear hydraulic motor are described. Next part contains drafted solutions of handling platform construction. Important part of thesis is composed of statistical computing of machinery parts and their strenght computations within the frame of designed proportions. Afterwards the bearings are chosen according to thickness of shaft and the hydraulic motor and the diagram of hydraulic circuit are designed. At last controlling computations are done and assembly and weldment drawings are created.
Mobile Lift Table Capacity 300 kg
Mahel, Petr ; Jonák, Martin (referee) ; Škopán, Miroslav (advisor)
Bachelor’s thesis is dealing with mobile lift table - capacity 300kg. The main target is to create mobile lift table. My work aims at the mobile scissor lift electro-hydraulic table. The first part handle technical documentation of the designed table, the second part contents the plot.
Mobile Lift Table Capacity 300 kg
Kirst, Pavel ; Malášek, Jiří (referee) ; Pokorný, Přemysl (advisor)
Aim of this thesis is construction design of handling mobile scissors lift with a capacity of 300 kg, dimensions 700 x 1500 mm and 1000 mm lifting height. The work will be contain construction design of platform, assembly drawing and some drawings of parts.
Material Handling Platform
Bíza, Pavel ; Kašpárek, Jaroslav (referee) ; Škopán, Miroslav (advisor)
The main subject of this thesis is the construction design of material handling platform with hydraulic drive with a loading capacity of 2 500 kg and lifting capacity of 1 800 mm. First of all, the thesis contains the selection of a suitable variant of lifting mechanism, static analysis and determination of the maximum load of the mechanism. The next section includes strength calculations of particular elements of the mechanism with regard to selected dimensions and loading. In the end, the calculation of the hydraulic drive and design of a hydraulic circuit for this drive are presented. The final output of the thesis is a drawing of the assembly of the platform.

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