OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN

<b>Abstrak</b>: <p align=\"justify\"><br /> Assembly sequence generation is one among phases in assembly planning. Several researchs have been conducted in the area for automatic assembly sequence generation (Delchambre,1992; Ben-Arieh and Kramer,1994; Onozuka, et...

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Main Author: Alfadhlani
Format: Theses
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/5387
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:5387
spelling id-itb.:53872006-03-02T14:13:46ZOTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN Alfadhlani Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Theses <i>Assembly, assembly model, CAD,mating<p align=\ INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/5387 <b>Abstrak</b>: <p align=\"justify\"><br /> Assembly sequence generation is one among phases in assembly planning. Several researchs have been conducted in the area for automatic assembly sequence generation (Delchambre,1992; Ben-Arieh and Kramer,1994; Onozuka, et al., 1994; Kanai, et al., 1996; Laperriere and ElMaraghy, 1996, Ariastuti, et al., 1998; Tseng and Li, 1999; Toha, et al., 2004). However, common automatic assembly planning methods could not be used directly by a planner. This is so because of intermediate process that has to be done before assembly sequence planning is not obtained. Generally, the necessary input for assembly planning is an engineering drawing of 3D solid. In addition, the feasibility of the sequence should be assured through the process.<p align=\"justify\"><br /> This research proposes the development of assembly modelling, data extraction algorithm from CAD system, and assembly sequence generation algorithm. Feasibility of the assembly sequence is obtained by considering component and sub-assembly stability in assembly process, geometrical interference, accessibility, and fasteners. Automatic assembly sequence generation is done by using 3D solid input in the form of stacked drawing. Component selection priority rule is based on mating quantity, volume, and mating point location criteria. Application of the model and algorithm on sample products shows that the model can generate a feasible assembly sequence plan for each product. <br /> <br /> 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
topic Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Alfadhlani
OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
description <b>Abstrak</b>: <p align=\"justify\"><br /> Assembly sequence generation is one among phases in assembly planning. Several researchs have been conducted in the area for automatic assembly sequence generation (Delchambre,1992; Ben-Arieh and Kramer,1994; Onozuka, et al., 1994; Kanai, et al., 1996; Laperriere and ElMaraghy, 1996, Ariastuti, et al., 1998; Tseng and Li, 1999; Toha, et al., 2004). However, common automatic assembly planning methods could not be used directly by a planner. This is so because of intermediate process that has to be done before assembly sequence planning is not obtained. Generally, the necessary input for assembly planning is an engineering drawing of 3D solid. In addition, the feasibility of the sequence should be assured through the process.<p align=\"justify\"><br /> This research proposes the development of assembly modelling, data extraction algorithm from CAD system, and assembly sequence generation algorithm. Feasibility of the assembly sequence is obtained by considering component and sub-assembly stability in assembly process, geometrical interference, accessibility, and fasteners. Automatic assembly sequence generation is done by using 3D solid input in the form of stacked drawing. Component selection priority rule is based on mating quantity, volume, and mating point location criteria. Application of the model and algorithm on sample products shows that the model can generate a feasible assembly sequence plan for each product. <br /> <br />
format Theses
author Alfadhlani
author_facet Alfadhlani
author_sort Alfadhlani
title OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
title_short OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
title_full OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
title_fullStr OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
title_full_unstemmed OTOMASI PERENCANAAN URUTAN PERAKITAN PRODUK DENGAN MEMPERTIMBANGKAN TITIK LOKASI MATING DAN VOLUME KOMPONEN
title_sort otomasi perencanaan urutan perakitan produk dengan mempertimbangkan titik lokasi mating dan volume komponen
url https://digilib.itb.ac.id/gdl/view/5387
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