Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method

Low Rigidity Part is a type of component in aircraft construction. Low Rigidity is designed with thin thickness dimensions so that the weight of the aircraft becomes lighter. The components are derived from prismatic blocks, then carried out with milling process. However, due to the cutting force du...

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Main Author: Sugesti, Putra
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/43049
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:43049
spelling id-itb.:430492019-09-25T13:28:48ZDeformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method Sugesti, Putra Indonesia Final Project cutting force, deformation, low rigidity. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/43049 Low Rigidity Part is a type of component in aircraft construction. Low Rigidity is designed with thin thickness dimensions so that the weight of the aircraft becomes lighter. The components are derived from prismatic blocks, then carried out with milling process. However, due to the cutting force during the process, Low Rigidity components often rejected because deformation that exceeds the tolerance limit. One of the solution is to create a fixturing system that has a support element to resist deformation and have modular characteristic in order to be more economical. In this study the positioning of the support elements is based on the location of the deformed product that exceeds the tolerance limit. Deformation due to cutting forces can be determined by static analysis, to get the magnitude and direction of the deformation that occurs. For the cutting force itself is obtained by carrying out numerical simulations of the three-dimensional finite element method with Smoothed Particle Hydrodynamics. Simulation results can represent the actual cutting force and deflection with a range of error values of 25–40%. The simulation results also show the analysis of the use of support elements with the finite element method in the landing gear case study can reduce product deflection, from 117 ?m to 20 ?m, which means the product can be accepted based on tolerance criteria. 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 Low Rigidity Part is a type of component in aircraft construction. Low Rigidity is designed with thin thickness dimensions so that the weight of the aircraft becomes lighter. The components are derived from prismatic blocks, then carried out with milling process. However, due to the cutting force during the process, Low Rigidity components often rejected because deformation that exceeds the tolerance limit. One of the solution is to create a fixturing system that has a support element to resist deformation and have modular characteristic in order to be more economical. In this study the positioning of the support elements is based on the location of the deformed product that exceeds the tolerance limit. Deformation due to cutting forces can be determined by static analysis, to get the magnitude and direction of the deformation that occurs. For the cutting force itself is obtained by carrying out numerical simulations of the three-dimensional finite element method with Smoothed Particle Hydrodynamics. Simulation results can represent the actual cutting force and deflection with a range of error values of 25–40%. The simulation results also show the analysis of the use of support elements with the finite element method in the landing gear case study can reduce product deflection, from 117 ?m to 20 ?m, which means the product can be accepted based on tolerance criteria.
format Final Project
author Sugesti, Putra
spellingShingle Sugesti, Putra
Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
author_facet Sugesti, Putra
author_sort Sugesti, Putra
title Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
title_short Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
title_full Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
title_fullStr Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
title_full_unstemmed Deformation Analysis of Low Rigidity Part Due to Cutting Force of Milling Process for Modular Fixture Design Using Finite Element Method
title_sort deformation analysis of low rigidity part due to cutting force of milling process for modular fixture design using finite element method
url https://digilib.itb.ac.id/gdl/view/43049
_version_ 1822926457967476736