Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle

Spindle is the main component in machine tools. As the main component, spindle playing important role to improve accuracy and productivity of the machine tools. Spindle design determines those qualities. Rotational speed and stiffness is the main parameter in designing spindle. Static stiffness of a...

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Main Author: Anggara Yudha Nurtjahjana - 13114129, Calvin
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/26183
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:26183
spelling id-itb.:261832018-09-24T11:31:51ZStatic Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle Anggara Yudha Nurtjahjana - 13114129, Calvin Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/26183 Spindle is the main component in machine tools. As the main component, spindle playing important role to improve accuracy and productivity of the machine tools. Spindle design determines those qualities. Rotational speed and stiffness is the main parameter in designing spindle. Static stiffness of a spindle is one of the most important parameter to be appraised in spindle design process. Static stiffness would determine how spindle would deform under certain load such as cutting force and feeding force. <br /> <br /> Spindle analysis uses finite element method software. The first step of the analysis to define the two spindle model in the finite element software, for radial stiffness analysis and for axial stiffness analysis. Then, through simulation the radial and axial static stiffness of spindle are determined with two different bearing stiffness value input, constant and linear. <br /> <br /> The simulation result would show that the spindle would be deflected for 6.90 &#956;m if subjected to 3080 N radial load and has a radial stiffness of 450 N/&#956;m. On the other side, the spindle would be deflected for 5.30 &#956;m if subjected to 2310 N axial load and has an axial stiffness of 600 N/&#956;m. Spindle deflection is not affected by bearing stiffness value input. In contrast, spindle stiffness is affected by bearing stiffness value input. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Spindle is the main component in machine tools. As the main component, spindle playing important role to improve accuracy and productivity of the machine tools. Spindle design determines those qualities. Rotational speed and stiffness is the main parameter in designing spindle. Static stiffness of a spindle is one of the most important parameter to be appraised in spindle design process. Static stiffness would determine how spindle would deform under certain load such as cutting force and feeding force. <br /> <br /> Spindle analysis uses finite element method software. The first step of the analysis to define the two spindle model in the finite element software, for radial stiffness analysis and for axial stiffness analysis. Then, through simulation the radial and axial static stiffness of spindle are determined with two different bearing stiffness value input, constant and linear. <br /> <br /> The simulation result would show that the spindle would be deflected for 6.90 &#956;m if subjected to 3080 N radial load and has a radial stiffness of 450 N/&#956;m. On the other side, the spindle would be deflected for 5.30 &#956;m if subjected to 2310 N axial load and has an axial stiffness of 600 N/&#956;m. Spindle deflection is not affected by bearing stiffness value input. In contrast, spindle stiffness is affected by bearing stiffness value input.
format Final Project
author Anggara Yudha Nurtjahjana - 13114129, Calvin
spellingShingle Anggara Yudha Nurtjahjana - 13114129, Calvin
Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
author_facet Anggara Yudha Nurtjahjana - 13114129, Calvin
author_sort Anggara Yudha Nurtjahjana - 13114129, Calvin
title Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
title_short Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
title_full Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
title_fullStr Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
title_full_unstemmed Static Characteristic Analysis of Okuma-Howa ACT-3 CNC Lathe Machine Spindle
title_sort static characteristic analysis of okuma-howa act-3 cnc lathe machine spindle
url https://digilib.itb.ac.id/gdl/view/26183
_version_ 1821933994497802240