Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder

Precision feeding is essential for micro-stamping, especially in multi-stage progressive forming operations, where necessary feeding rates also have to be maintained. Research in micro-stamping of thinner sheet metals (<100 microns) led to investigations of the performance of existing sheet-metal...

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Main Authors: Nazrul Idzham, Kasim, A. R., Razali, Mohd Azam, Musa
Format: Article
Izdano: Trans Tech Publications Inc. 2014
Teme:
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author Nazrul Idzham, Kasim
A. R., Razali
Mohd Azam, Musa
author_facet Nazrul Idzham, Kasim
A. R., Razali
Mohd Azam, Musa
author_sort Nazrul Idzham, Kasim
collection UMP
description Precision feeding is essential for micro-stamping, especially in multi-stage progressive forming operations, where necessary feeding rates also have to be maintained. Research in micro-stamping of thinner sheet metals (<100 microns) led to investigations of the performance of existing sheet-metal feeders, regarding their accuracy and repeatability in high speed micro-stamping. The results indicated that the pursuance of higher feeding accuracy and repeatability which aimed at 5-15% of the strip thickness was unachievable with the existing micro-feeders. A new high-precision and high-speed feeder was, therefore, developed for micro-sheet-forming. Initial non-optimized experimental results had showed high accuracy and repeatability were achieved.
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spelling UMPir83632018-01-10T03:40:16Z http://umpir.ump.edu.my/id/eprint/8363/ Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder Nazrul Idzham, Kasim A. R., Razali Mohd Azam, Musa TJ Mechanical engineering and machinery Precision feeding is essential for micro-stamping, especially in multi-stage progressive forming operations, where necessary feeding rates also have to be maintained. Research in micro-stamping of thinner sheet metals (<100 microns) led to investigations of the performance of existing sheet-metal feeders, regarding their accuracy and repeatability in high speed micro-stamping. The results indicated that the pursuance of higher feeding accuracy and repeatability which aimed at 5-15% of the strip thickness was unachievable with the existing micro-feeders. A new high-precision and high-speed feeder was, therefore, developed for micro-sheet-forming. Initial non-optimized experimental results had showed high accuracy and repeatability were achieved. Trans Tech Publications Inc. 2014 Article PeerReviewed Nazrul Idzham, Kasim and A. R., Razali and Mohd Azam, Musa (2014) Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder. Applied Mechanics and Materials, 680. pp. 311-314. ISSN 1662-7482. (Published) http://www.scientific.net/AMM.680.311 DOI: 10.4028/www.scientific.net/AMM.680.311
spellingShingle TJ Mechanical engineering and machinery
Nazrul Idzham, Kasim
A. R., Razali
Mohd Azam, Musa
Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title_full Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title_fullStr Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title_full_unstemmed Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title_short Positional Accuracy Based on a Load Identification Optimization on a Linear Motor Sheet Forming Feeder
title_sort positional accuracy based on a load identification optimization on a linear motor sheet forming feeder
topic TJ Mechanical engineering and machinery
work_keys_str_mv AT nazrulidzhamkasim positionalaccuracybasedonaloadidentificationoptimizationonalinearmotorsheetformingfeeder
AT arrazali positionalaccuracybasedonaloadidentificationoptimizationonalinearmotorsheetformingfeeder
AT mohdazammusa positionalaccuracybasedonaloadidentificationoptimizationonalinearmotorsheetformingfeeder