Simulation-based determination of disassembly forces

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

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OriginalspracheEnglisch
Seiten (von - bis)13-18
Seitenumfang6
FachzeitschriftProcedia CIRP
Jahrgang76
Frühes Online-Datum23 Aug. 2018
PublikationsstatusVeröffentlicht - 2018
Veranstaltung7th CIRP Conference on Assembly Technologies and Systems, CATS 2018 - Tianjin, China
Dauer: 10 Mai 201812 Mai 2018

Abstract

While joining tolerances, and therefore forces, are known in the assembly process, the determination of disassembly forces is not possible. This is caused by changes of the product properties during the product operation, which has multiple reasons like thermal or mechanical stress on the product. Regarding the planning of disassembly tasks, disassembly times and tools cannot be planned properly. They have to be determined in the process or stay undefined, which can result in damaging of the product. This article shows an approach to describe the necessary disassembly forces without having to investigate the complex physical influences caused by the usage of the product. A solidifying force that has to be overcome in the disassembly process is defined. To make the solidifying force transferable within the huge amounts of individual products, it is split into a usage factor (e.g. hours of operation) and a product specific factor (e.g. geometry of connection), which specify the influences on the joint properties. The transferability of usage factor to product variants is investigated using a FEM-Simulation.

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Simulation-based determination of disassembly forces. / Wolff, Julius; Kolditz, Torge; Fei, Yangyang et al.
in: Procedia CIRP, Jahrgang 76, 2018, S. 13-18.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Wolff J, Kolditz T, Fei Y, Raatz A. Simulation-based determination of disassembly forces. Procedia CIRP. 2018;76:13-18. Epub 2018 Aug 23. doi: 10.1016/j.procir.2018.01.022, 10.15488/5203
Wolff, Julius ; Kolditz, Torge ; Fei, Yangyang et al. / Simulation-based determination of disassembly forces. in: Procedia CIRP. 2018 ; Jahrgang 76. S. 13-18.
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title = "Simulation-based determination of disassembly forces",
abstract = "While joining tolerances, and therefore forces, are known in the assembly process, the determination of disassembly forces is not possible. This is caused by changes of the product properties during the product operation, which has multiple reasons like thermal or mechanical stress on the product. Regarding the planning of disassembly tasks, disassembly times and tools cannot be planned properly. They have to be determined in the process or stay undefined, which can result in damaging of the product. This article shows an approach to describe the necessary disassembly forces without having to investigate the complex physical influences caused by the usage of the product. A solidifying force that has to be overcome in the disassembly process is defined. To make the solidifying force transferable within the huge amounts of individual products, it is split into a usage factor (e.g. hours of operation) and a product specific factor (e.g. geometry of connection), which specify the influences on the joint properties. The transferability of usage factor to product variants is investigated using a FEM-Simulation.",
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author = "Julius Wolff and Torge Kolditz and Yangyang Fei and Annika Raatz",
note = "Acknowledgments: The authors kindly thank the German Research Foundation (DFG) for the financial support to accomplish the research project A5 {"}Adaptable and Component-Protecting Disassembly in the Regeneration Path{"} within the Collaborative Research Center (CRC) 871 - Regeneration of Complex Capital Goods.; 7th CIRP Conference on Assembly Technologies and Systems, CATS 2018 ; Conference date: 10-05-2018 Through 12-05-2018",
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Download

TY - JOUR

T1 - Simulation-based determination of disassembly forces

AU - Wolff, Julius

AU - Kolditz, Torge

AU - Fei, Yangyang

AU - Raatz, Annika

N1 - Acknowledgments: The authors kindly thank the German Research Foundation (DFG) for the financial support to accomplish the research project A5 "Adaptable and Component-Protecting Disassembly in the Regeneration Path" within the Collaborative Research Center (CRC) 871 - Regeneration of Complex Capital Goods.

PY - 2018

Y1 - 2018

N2 - While joining tolerances, and therefore forces, are known in the assembly process, the determination of disassembly forces is not possible. This is caused by changes of the product properties during the product operation, which has multiple reasons like thermal or mechanical stress on the product. Regarding the planning of disassembly tasks, disassembly times and tools cannot be planned properly. They have to be determined in the process or stay undefined, which can result in damaging of the product. This article shows an approach to describe the necessary disassembly forces without having to investigate the complex physical influences caused by the usage of the product. A solidifying force that has to be overcome in the disassembly process is defined. To make the solidifying force transferable within the huge amounts of individual products, it is split into a usage factor (e.g. hours of operation) and a product specific factor (e.g. geometry of connection), which specify the influences on the joint properties. The transferability of usage factor to product variants is investigated using a FEM-Simulation.

AB - While joining tolerances, and therefore forces, are known in the assembly process, the determination of disassembly forces is not possible. This is caused by changes of the product properties during the product operation, which has multiple reasons like thermal or mechanical stress on the product. Regarding the planning of disassembly tasks, disassembly times and tools cannot be planned properly. They have to be determined in the process or stay undefined, which can result in damaging of the product. This article shows an approach to describe the necessary disassembly forces without having to investigate the complex physical influences caused by the usage of the product. A solidifying force that has to be overcome in the disassembly process is defined. To make the solidifying force transferable within the huge amounts of individual products, it is split into a usage factor (e.g. hours of operation) and a product specific factor (e.g. geometry of connection), which specify the influences on the joint properties. The transferability of usage factor to product variants is investigated using a FEM-Simulation.

KW - Automation

KW - Disassembly

KW - Process Planning

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U2 - 10.1016/j.procir.2018.01.022

DO - 10.1016/j.procir.2018.01.022

M3 - Conference article

AN - SCOPUS:85061964611

VL - 76

SP - 13

EP - 18

JO - Procedia CIRP

JF - Procedia CIRP

SN - 2212-8271

T2 - 7th CIRP Conference on Assembly Technologies and Systems, CATS 2018

Y2 - 10 May 2018 through 12 May 2018

ER -

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