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A case study of mechanical and thermal fatigue of press hardening dies

Chantziara, Katerina, 1993- (author)
Karlstads universitet,Institutionen för ingenjörsvetenskap och fysik (from 2013)
Javadzadeh Kalahroudi, Faezeh (author)
Karlstads universitet,Institutionen för ingenjörsvetenskap och fysik (from 2013)
Bergström, Jens, 1954- (author)
Karlstads universitet,Institutionen för ingenjörsvetenskap och fysik (from 2013)
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Grehk, Mikael (author)
Karlstads universitet,Institutionen för ingenjörsvetenskap och fysik (from 2013)
Ulfberg, Petter (author)
Gestamp, Sweden
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 (creator_code:org_t)
IOP Publishing, 2022
2022
English.
In: IOP Conference Series: Materials Science and Engineering. - : IOP Publishing. - 1757-8981 .- 1757-899X. ; , s. 1-10
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • Press hardening provides ultra-high strength steel components, typically boron steels, of complex geometries. In the process, the steel sheet is heated in a furnace to the austenitization temperature, transferred to the press, then simultaneously formed at high temperature and cooled in the die. Life limiting factors for the press hardening dies are mechanical fatigue, thermal fatigue, and wear. In the present case study two die segments were selected where critical damages were mechanical and thermal fatigue, respectively. The dies were made of a H13 type premium hot-work tool steel with complex heated die technology, die design integrating an advanced cooling system, for pressing automotive frame parts.The first die failed due to mechanical loading with a crack initiated from the ejector pin area. The die design, the mechanical loads, the elevated temperature, and the tool steel crack resistance are main factors to consider. In the second die cracks initiated from an ejector pin hole, as well, due to thermal cycles causing alternating compressive and tensile stresses at the surface, which led to crack nucleation because of the accumulation of local plastic strain in the surface.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Materialteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering (hsv//eng)

Keyword

Materialteknik
Materials Engineering

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ref (subject category)
kon (subject category)

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Grehk, Mikael
Ulfberg, Petter
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