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MODEL INTEGRASI DESIGN DAN PROSES MANUFAKTUR PADA PERAKITAN PRODUK MULTI-PEMASOK

In Product design process, aspects related to the manufacturing process and supply chain should be considered. The design is produced not only satisfy for consumers needs but it fulfilled the constraints related to manufacturing and supply chain aspects. This research aims to make a model to determi... Full description

Journal Title: Jurnal Teknosains: Jurnal Ilmiah Sains dan Teknologi 01 December 2013, Vol.3(1)
Main Author: Budi Susanto, Mk Herliansyah, Dan Alva Edy Tontowi
Format: Electronic Article Electronic Article
Language: English
Subjects:
Quelle: Directory of Open Access Journals (DOAJ)
ID: ISSN: 2089-6131 ; E-ISSN: 2443-1311 ; DOI: 10.22146/teknosains.6125
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recordid: doaj_soai_doaj_org_article_60ad17be7cdd4a5eaee83ac9dff2b883
title: MODEL INTEGRASI DESIGN DAN PROSES MANUFAKTUR PADA PERAKITAN PRODUK MULTI-PEMASOK
format: Article
creator:
  • Budi Susanto, Mk Herliansyah, Dan Alva Edy Tontowi
subjects:
  • Process Selection, Supplier Fixed Contact Cost and Quality Improvement Cost
ispartof: Jurnal Teknosains: Jurnal Ilmiah Sains dan Teknologi, 01 December 2013, Vol.3(1)
description: In Product design process, aspects related to the manufacturing process and supply chain should be considered. The design is produced not only satisfy for consumers needs but it fulfilled the constraints related to manufacturing and supply chain aspects. This research aims to make a model to determine the cheapest product design from both of manufacturing process and supply chain. This research uses binary programming as an approach. The cost aspects used in this research are component’s manufacturing cost, supplier fixed contact cost, assembly operation cost and quality improvement cost. The result of research, a physical product design with the lowest total cost by combining components from several designs and adding the value constraint on the quality specification.
language: eng
source: Directory of Open Access Journals (DOAJ)
identifier: ISSN: 2089-6131 ; E-ISSN: 2443-1311 ; DOI: 10.22146/teknosains.6125
fulltext: fulltext_linktorsrc
issn:
  • 2089-6131
  • 20896131
  • 2443-1311
  • 24431311
url: Link


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descriptionIn Product design process, aspects related to the manufacturing process and supply chain should be considered. The design is produced not only satisfy for consumers needs but it fulfilled the constraints related to manufacturing and supply chain aspects. This research aims to make a model to determine the cheapest product design from both of manufacturing process and supply chain. This research uses binary programming as an approach. The cost aspects used in this research are component’s manufacturing cost, supplier fixed contact cost, assembly operation cost and quality improvement cost. The result of research, a physical product design with the lowest total cost by combining components from several designs and adding the value constraint on the quality specification.
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In Product design process, aspects related to the manufacturing process and supply chain should be considered. The design is produced not only satisfy for consumers needs but it fulfilled the constraints related to manufacturing and supply chain aspects. This research aims to make a model to determine the cheapest product design from both of manufacturing process and supply chain. This research uses binary programming as an approach. The cost aspects used in this research are component’s manufacturing cost, supplier fixed contact cost, assembly operation cost and quality improvement cost. The result of research, a physical product design with the lowest total cost by combining components from several designs and adding the value constraint on the quality specification.

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In Product design process, aspects related to the manufacturing process and supply chain should be considered. The design is produced not only satisfy for consumers needs but it fulfilled the constraints related to manufacturing and supply chain aspects. This research aims to make a model to determine the cheapest product design from both of manufacturing process and supply chain. This research uses binary programming as an approach. The cost aspects used in this research are component’s manufacturing cost, supplier fixed contact cost, assembly operation cost and quality improvement cost. The result of research, a physical product design with the lowest total cost by combining components from several designs and adding the value constraint on the quality specification.

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