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  4. Basic material and technology investigations for material bonded hybrids by continuous hybrid profile fabrication
 
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2021
Conference Paper
Title

Basic material and technology investigations for material bonded hybrids by continuous hybrid profile fabrication

Abstract
The development of multi-material hybrids by injection molding has been studied very intensively at the IPF in the past. For that, a material bonding between the different substrates was achieved by using a newly eveloped two-step curing powder coating material as latent reactive adhesive. The aim of the project ""Hybrid Pultrusion"" was to perform a novel approach for the fabrication of material bonded metal-plastic joints profiles) in a modified pultrusion process. Therefore, powder pre-coated steel coil is combined with a glass-fiber reinforced epoxy resin matrix. For initial basic studies, the impregnated fiber material has been applied on the pre-coated steel sheets using the Resin Transfer Molding process (RTMprocess). It was proved via lap shear tests, that this procedure resulted in very high adhesive strengths up to 35 MPa resulting from the formation of a covalent matrix-steel bonding as well. In addition, the failure mechanism was subsequently studied. Furthermore, by adapting the successful material combination to the pultrusion process it was demonstrated that material bonded hybrids can be achieved even under these continuous processing conditions.
Author(s)
Schubert, K.
IPF
Gedan-Smolka, M.
IPF
Marschner, A.
IPF
Rietzschel, T.
IPF
Uhlig, K.
IPF
Löpitz, D.
IWU
Wagner, D.
IWU
Knobloch, M.
IWU
Mainwork
Modern Materials and Manufacturing, MMM 2021  
Conference
Conference "Modern Materials and Manufacturing" (MMM) 2021  
International DAAAM Baltic Conference 2021  
International Baltic Conference on Engineering Materials & Tribology (BALTMATTRIB) 2021  
Open Access
DOI
10.1088/1757-899X/1140/1/012030
Additional full text version
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Language
English
Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik IWU  
Keyword(s)
  • hybrid

  • Pultrusion

  • FKV

  • Metall

  • Oberflächenbeschichtung

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