Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment

The article is about press-bolts which are installed by cold forming in sheet metal constructions. Those fasteners belong to functional elements available in form of press-nuts as well as press-bolts. This paper is focused on press-bolt joints, which are equipped with a metric ISO thread according t...

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Main Authors: Christian Denkert, David Kühne, Dietmar Süße, Ralf Glienke, Melanie Fiedler, Maik Dörre, Markus Kästner, Knuth-Michael Henkel
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Journal of Advanced Joining Processes
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666330922000425
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author Christian Denkert
David Kühne
Dietmar Süße
Ralf Glienke
Melanie Fiedler
Maik Dörre
Markus Kästner
Knuth-Michael Henkel
author_facet Christian Denkert
David Kühne
Dietmar Süße
Ralf Glienke
Melanie Fiedler
Maik Dörre
Markus Kästner
Knuth-Michael Henkel
author_sort Christian Denkert
collection DOAJ
description The article is about press-bolts which are installed by cold forming in sheet metal constructions. Those fasteners belong to functional elements available in form of press-nuts as well as press-bolts. This paper is focused on press-bolt joints, which are equipped with a metric ISO thread according to DIN 13-1 and available in defined property classes related to DIN EN ISO 898-1. The introduced studies provides the scientific basis for further investigations with local fatigue approaches on cold forming joints with press-bolts. In this paper the static load bearing behaviour is determined by experimental as well as numerical investigations at first. In order to be able to describe the static load bearing behaviour sufficiently accurate, the forming simulation with its history of forming due to the installation sequence must also be considered.
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spelling doaj.art-49ea91bbef3a4a0a8f764ce49ba06e682022-12-22T02:58:48ZengElsevierJournal of Advanced Joining Processes2666-33092022-11-016100132Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessmentChristian Denkert0David Kühne1Dietmar Süße2Ralf Glienke3Melanie Fiedler4Maik Dörre5Markus Kästner6Knuth-Michael Henkel7Corresponding author.; Fraunhofer - Institute for Large Structure in Production Engineering IGP, A.-Einstein-Str. 30, Rostock 18059, GermanyTechnische Universität Dresden, Institute of Solid Mechanics, George-Bähr-Strabe 3c, Dresden 01069, GermanyTechnische Universität Dresden, Institute of Solid Mechanics, George-Bähr-Strabe 3c, Dresden 01069, GermanyWismar University of Applied Sciences Technology Business and Design, Ph.-Müller-Strabe, Wismar 23966, GermanyTechnische Universität Dresden, Institute of Solid Mechanics, George-Bähr-Strabe 3c, Dresden 01069, GermanyFraunhofer - Institute for Large Structure in Production Engineering IGP, A.-Einstein-Str. 30, Rostock 18059, GermanyTechnische Universität Dresden, Institute of Solid Mechanics, George-Bähr-Strabe 3c, Dresden 01069, GermanyUniversity of Rostock, Faculty of Mechanical Engineering and Marine Engineering, Chair of Joining Technology, A.-Einstein-Str. 30, Rostock 18059, GermanyThe article is about press-bolts which are installed by cold forming in sheet metal constructions. Those fasteners belong to functional elements available in form of press-nuts as well as press-bolts. This paper is focused on press-bolt joints, which are equipped with a metric ISO thread according to DIN 13-1 and available in defined property classes related to DIN EN ISO 898-1. The introduced studies provides the scientific basis for further investigations with local fatigue approaches on cold forming joints with press-bolts. In this paper the static load bearing behaviour is determined by experimental as well as numerical investigations at first. In order to be able to describe the static load bearing behaviour sufficiently accurate, the forming simulation with its history of forming due to the installation sequence must also be considered.http://www.sciencedirect.com/science/article/pii/S2666330922000425Press-bolt jointsMechanical joiningSheet metalForming technologyStatic strength
spellingShingle Christian Denkert
David Kühne
Dietmar Süße
Ralf Glienke
Melanie Fiedler
Maik Dörre
Markus Kästner
Knuth-Michael Henkel
Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
Journal of Advanced Joining Processes
Press-bolt joints
Mechanical joining
Sheet metal
Forming technology
Static strength
title Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
title_full Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
title_fullStr Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
title_full_unstemmed Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
title_short Numerical and experimental studies on press-bolt joints for sheet metal applications - Static strength assessment
title_sort numerical and experimental studies on press bolt joints for sheet metal applications static strength assessment
topic Press-bolt joints
Mechanical joining
Sheet metal
Forming technology
Static strength
url http://www.sciencedirect.com/science/article/pii/S2666330922000425
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AT ralfglienke numericalandexperimentalstudiesonpressboltjointsforsheetmetalapplicationsstaticstrengthassessment
AT melaniefiedler numericalandexperimentalstudiesonpressboltjointsforsheetmetalapplicationsstaticstrengthassessment
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