Die Design of Flexible Multi-Point Forming Process

Multi-point forming (MPF) is an advanced flexible manufacture technology, and the technology results from the idea that the whole die is separated into small punches that can be adjusted height. This idea is applied to the traditional rigid blank-holder, so flexible blank-holder (FBH) idea can be o...

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Main Authors: Tahseen Fadhel Abaas, Karem Mohsen Younis, Khalida kadhim Mansor
Format: Article
Language:English
Published: Al-Khwarizmi College of Engineering – University of Baghdad 2019-03-01
Series:Al-Khawarizmi Engineering Journal
Online Access:http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/380
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spelling doaj-91370f72ae6e436bbea4bdd8b3e780152020-11-24T22:05:14Zeng Al-Khwarizmi College of Engineering – University of BaghdadAl-Khawarizmi Engineering Journal1818-11712312-07892019-03-0114210.22153/kej.2018.12.002Die Design of Flexible Multi-Point Forming ProcessTahseen Fadhel Abaas0Karem Mohsen Younis1Khalida kadhim Mansor2Department of Production Engineering and Metallurgy / University of TechnologyDepartment of Production Engineering and Metallurgy / University of TechnologyDepartment of Production Engineering and Metallurgy / University of Technology Multi-point forming (MPF) is an advanced flexible manufacture technology, and the technology results from the idea that the whole die is separated into small punches that can be adjusted height. This idea is applied to the traditional rigid blank-holder, so flexible blank-holder (FBH) idea can be obtained. In this work, the performance of a multi-point die is investigated with pins in square matrix and suitable blank holder. Each pin in the punch holder can be a significant moved according to the die high and at different load that applied with spring with respect to spring stiffness. The results shows the reduction in setting time with respect to traditional single point incremental forming process that lead to (90%). and also show during the forming process, the deformation of the interpolator can induce a shape error in the formed work-piece and the blank holder can reduce/eliminate dimples that sometimes arise in the work-piece. The minimum force applied using multi-point die is 28.556KN, while the load when complete the forming process is 30.8KN that caused displacement of die to 32.8mm. http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/380
collection DOAJ
language English
format Article
sources DOAJ
author Tahseen Fadhel Abaas
Karem Mohsen Younis
Khalida kadhim Mansor
spellingShingle Tahseen Fadhel Abaas
Karem Mohsen Younis
Khalida kadhim Mansor
Die Design of Flexible Multi-Point Forming Process
Al-Khawarizmi Engineering Journal
author_facet Tahseen Fadhel Abaas
Karem Mohsen Younis
Khalida kadhim Mansor
author_sort Tahseen Fadhel Abaas
title Die Design of Flexible Multi-Point Forming Process
title_short Die Design of Flexible Multi-Point Forming Process
title_full Die Design of Flexible Multi-Point Forming Process
title_fullStr Die Design of Flexible Multi-Point Forming Process
title_full_unstemmed Die Design of Flexible Multi-Point Forming Process
title_sort die design of flexible multi-point forming process
publisher Al-Khwarizmi College of Engineering – University of Baghdad
series Al-Khawarizmi Engineering Journal
issn 1818-1171
2312-0789
publishDate 2019-03-01
description Multi-point forming (MPF) is an advanced flexible manufacture technology, and the technology results from the idea that the whole die is separated into small punches that can be adjusted height. This idea is applied to the traditional rigid blank-holder, so flexible blank-holder (FBH) idea can be obtained. In this work, the performance of a multi-point die is investigated with pins in square matrix and suitable blank holder. Each pin in the punch holder can be a significant moved according to the die high and at different load that applied with spring with respect to spring stiffness. The results shows the reduction in setting time with respect to traditional single point incremental forming process that lead to (90%). and also show during the forming process, the deformation of the interpolator can induce a shape error in the formed work-piece and the blank holder can reduce/eliminate dimples that sometimes arise in the work-piece. The minimum force applied using multi-point die is 28.556KN, while the load when complete the forming process is 30.8KN that caused displacement of die to 32.8mm.
url http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/380
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