PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221

Due to the highly brittle structure of polyurethane (PU) foam, a specialized clamping mechanism is required to consider the material's strength and hardness to avoid damaging the workpiece and to withstand the cutting forces during milling and machining. Using a polymer as an alternative for cr...

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Main Authors: Archi Kun Cahyo Utomo, Ubaidillah Ubaidillah, Wijang Wisnu Raharjo, Fitrian Imaduddin, Dikky Kusuma Wijaya
Format: Article
Language:English
Published: University of Brawijaya 2024-12-01
Series:Rekayasa Mesin
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Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1798
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author Archi Kun Cahyo Utomo
Ubaidillah Ubaidillah
Wijang Wisnu Raharjo
Fitrian Imaduddin
Dikky Kusuma Wijaya
author_facet Archi Kun Cahyo Utomo
Ubaidillah Ubaidillah
Wijang Wisnu Raharjo
Fitrian Imaduddin
Dikky Kusuma Wijaya
author_sort Archi Kun Cahyo Utomo
collection DOAJ
description Due to the highly brittle structure of polyurethane (PU) foam, a specialized clamping mechanism is required to consider the material's strength and hardness to avoid damaging the workpiece and to withstand the cutting forces during milling and machining. Using a polymer as an alternative for creating clamping tools with characteristics similar to PU foam offers a promising solution. The slightly harder polymer material is expected to address the need for a gripping tool that will not harm the PU foam upon application. The VDI 2221 method, a structured approach to the design and coordination of evolving design techniques, is employed in this study. The advantage of this methodology lies in its ability to adapt continuously through research. A comparative analysis of two design models produced via 3D printing reveals that Design 5 exhibits superior strength under increased stress. Moreover, Design 5 is more effective in gripping the workpiece, as a single gripper can withstand cutting forces from two directions simultaneously, reducing material deformation. This advancement is expected to minimize the risk of material damage during the machining process. This research's novelty lies in applying an optimized polymer clamping device for PU foam, ensuring improved performance and reduced damage during machining.
format Article
id doaj-art-cd099f3e91f64e5a904c63b717964050
institution Kabale University
issn 2338-1663
2477-6041
language English
publishDate 2024-12-01
publisher University of Brawijaya
record_format Article
series Rekayasa Mesin
spelling doaj-art-cd099f3e91f64e5a904c63b7179640502025-01-21T01:57:48ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412024-12-011531571158910.21776/jrm.v15i3.17981509PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221Archi Kun Cahyo Utomo0Ubaidillah Ubaidillah1Wijang Wisnu Raharjo2Fitrian ImaduddinDikky Kusuma Wijaya3ATMI Surakarta Polytechnic, Sebelas Maret UniversityMechanical Engineering Department, Universitas Sebelas MaretMechanical Engineering Department, Universitas Sebelas MaretProgram Studi Teknik Mesin Industi, Politrknik ATMI SurakartaDue to the highly brittle structure of polyurethane (PU) foam, a specialized clamping mechanism is required to consider the material's strength and hardness to avoid damaging the workpiece and to withstand the cutting forces during milling and machining. Using a polymer as an alternative for creating clamping tools with characteristics similar to PU foam offers a promising solution. The slightly harder polymer material is expected to address the need for a gripping tool that will not harm the PU foam upon application. The VDI 2221 method, a structured approach to the design and coordination of evolving design techniques, is employed in this study. The advantage of this methodology lies in its ability to adapt continuously through research. A comparative analysis of two design models produced via 3D printing reveals that Design 5 exhibits superior strength under increased stress. Moreover, Design 5 is more effective in gripping the workpiece, as a single gripper can withstand cutting forces from two directions simultaneously, reducing material deformation. This advancement is expected to minimize the risk of material damage during the machining process. This research's novelty lies in applying an optimized polymer clamping device for PU foam, ensuring improved performance and reduced damage during machining.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1798polyurethane foamclamping devicevdi 22213d printing
spellingShingle Archi Kun Cahyo Utomo
Ubaidillah Ubaidillah
Wijang Wisnu Raharjo
Fitrian Imaduddin
Dikky Kusuma Wijaya
PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
Rekayasa Mesin
polyurethane foam
clamping device
vdi 2221
3d printing
title PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
title_full PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
title_fullStr PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
title_full_unstemmed PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
title_short PERANCANGAN ALAT PENCEKAM UNTUK PEMESINAN POLYURETHANE FOAM PADA PROSES FACE MILL CUTTING MESIN CNC ROUTER 3 AXIS DENGAN METODE VDI 2221
title_sort perancangan alat pencekam untuk pemesinan polyurethane foam pada proses face mill cutting mesin cnc router 3 axis dengan metode vdi 2221
topic polyurethane foam
clamping device
vdi 2221
3d printing
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1798
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