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A comparative study of different failure modeling strategies on a laboratory scale test component
Luleå tekniska universitet, Institutionen för teknikvetenskap och matematik, Material- och solidmekanik.ORCID-id: 0000-0002-5099-6462
Gestamp HardTech.
DYNAmore, Linköping.
Scania AB, Södertälje.
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2017 (Engelska)Ingår i: 6th International Conference Hot Sheet Metal Forming of High-Performance Steel CHS2: June 4-7 2017, Atlanta, Georgia, USA : proceedings / [ed] Mats Oldenburg, Braham Prakash, Kurt Steinhoff, Warrendale, PA: Association for Iron & Steel Technology, AIST , 2017, s. 37-46Konferensbidrag, Publicerat paper (Refereegranskat)
Abstract [en]

Ultra-high strength steel (UHSS) has become a common material in the automotive industry during the last decades. The technique of press hardening allows modifying and tailoring the material properties of the blank in accordance with desired performance.

In the present work, a laboratory scale test component is developed. On basis of tests on the component it is intended to investigate the deformation and fracture behavior of a boron alloyed steel after different heat treatments. The tooling is developed to allow the production of single phase microstructures like martensite and bainite as well as mixed microstructures containing ferrite. Testing of the component is performed in a standard tensile testing machine with additional digital speckle measurements to determine the strain to fracture in the critical cross section. The initial geometry shape introduces bending in the critical cross-section during tensile loading of the specimen.

The aim of this work is to compare different material models on a component like level, including the prediction of failure. A finite element model of a laboratory scale component is analyzed using LS-Dyna. To compare different failure modeling approaches a set of damage models is calibrated to full hardened, martensitic steel. The deformation and fracture behavior of the component is presented in terms of load-displacement, plastic strain-stress triaxiality as well as in principal strain space.

Ort, förlag, år, upplaga, sidor
Warrendale, PA: Association for Iron & Steel Technology, AIST , 2017. s. 37-46
Serie
CHS2-series ; 6
Nationell ämneskategori
Annan maskinteknik Teknisk mekanik
Forskningsämne
Hållfasthetslära
Identifikatorer
URN: urn:nbn:se:ltu:diva-64049ISBN: 978-1-935117-66-7 (tryckt)OAI: oai:DiVA.org:ltu-64049DiVA, id: diva2:1110087
Konferens
6th International Conference Hot Sheet Metal Forming of High-Performance Steel CHS2, Atlanta, Georgia, 4-7 June 2017
Tillgänglig från: 2017-06-15 Skapad: 2017-06-15 Senast uppdaterad: 2017-11-24Bibliografiskt granskad

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Golling, StefanOldenburg, Mats

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