eBiltegia

    • Zer da eBiltegia? 
    •   eBiltegiari buruz
    •   Argitaratu irekian zure ikerketa
    • Sarbide Irekia MUn 
    •   Zer da Zientzia Irekia?
    •   Mondragon Unibertsitatearen dokumentu zientifikoetara eta irakaskuntza-materialetara Sarbide Irekia izateko politika instituzionala
    •   Mondragon Unibertsitatearen ikerketa-datuetara Sarbide Irekia izateko Politika instituzionala
    •   Babes digitalerako jarraibideak
    •   Zure argitalpenak jaso eta zabaldu egiten ditu Bibliotekak
    • Euskara
    • Español
    • English

Laguntzailea:

  • Kontaktua
  • Euskara 
    • Euskara
    • Español
    • English
  • eBiltegia buruz  
    • Zer da eBiltegia? 
    •   eBiltegiari buruz
    •   Argitaratu irekian zure ikerketa
    • Sarbide Irekia MUn 
    •   Zer da Zientzia Irekia?
    •   Mondragon Unibertsitatearen dokumentu zientifikoetara eta irakaskuntza-materialetara Sarbide Irekia izateko politika instituzionala
    •   Mondragon Unibertsitatearen ikerketa-datuetara Sarbide Irekia izateko Politika instituzionala
    •   Babes digitalerako jarraibideak
    •   Zure argitalpenak jaso eta zabaldu egiten ditu Bibliotekak
  • Hasi saioa
Ikusi itema 
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Ikerketa-Artikuluak
  • Artikuluak-Ingeniaritza
  • Ikusi itema
  •   eBiltegia MONDRAGON UNIBERTSITATEA
  • Ikerketa-Artikuluak
  • Artikuluak-Ingeniaritza
  • Ikusi itema
JavaScript is disabled for your browser. Some features of this site may not work without it.
Thumbnail
Ikusi/Ireki
Numerical simulation of U-Drawing test of Fortiform 1050 steel using different material models.pdf (765.7Kb)
Erregistro osoa
Eragina

Web of Science   

Google Scholar
Partekatu
EmailLinkedinFacebookTwitter
Gorde erreferentzia
Mendely

Zotero

untranslated

Mets

Mods

Rdf

Marc

Exportar a BibTeX
Izenburua
Numerical simulation of U-Drawing test of Fortiform 1050 steel using different material models
Egilea
GALDOS, Lander
Sáenz de Argandoña, Eneko
Mendiguren, Joseba
Mugarra Fernandez, Endika
Ulibarri Hernández, Unai
Ikerketa taldea
Procesos avanzados de conformación de materiales
Bertsioa
Bertsio argitaratua
Eskubideak
© 2017 The Authors
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/1135
Argitaratzailearen bertsioa
http://dx.doi.org/10.1016/j.proeng.2017.10.751
Non argitaratua
Procedia Engineering  Vol. 207. Pp. 37-142, Noviembre.
Lehenengo orria
137
Azken orria
142
Argitaratzailea
Elsevier Ltd.
Gako-hitzak
Third generation steels
Friction
Hardening
Elastic -modulus ... [+]
Third generation steels
Friction
Hardening
Elastic -modulus
Springback
U-Drawing test [-]
Laburpena
Steel has been used in vehicles from the automotive industry's inception. Different steel grades are continually being developed in order to satisfy new fuel economy requirements. For examp ... [+]
Steel has been used in vehicles from the automotive industry's inception. Different steel grades are continually being developed in order to satisfy new fuel economy requirements. For example, advanced high strength steel grades (AHSS) are widely used due to their good strength/weight ratio. Because each steel grade has a different microstructure composition and hardness, they show different behaviors when they are subjected to different strain paths. Similarly, the friction behavior when using different contact pressures and sliding velocities is considerably altered. Third generation steels present high yield strength together with high elongation capacity and strain hardening. Thus, it is logical to think that elastic modulus reduction and Bauschinger effect are important aspects when stamping these materials. Furthermore, high contact pressures arise when forming these steels and friction coefficient may significantly influence the numerical results. Stamping forming processes are nowadays usually optimized by numerical tools such as Finite Element Models. In order to get reliable results, these numerical tools require proper material and contact models in order to correctly predict the real behavior and flow of the materials. In the present paper, Fortiform 1050 material is deeply characterized using uniaxial and cyclic tension-compression tests. Friction coefficient is obtained using strip drawing tests. These results have been used to calibrate mixed kinematic-hardening material models as well as the friction. Finally, the geometrical accuracy of the different material models has been obtained by means of the comparison of the numerical predictions with experimental demonstrators obtained using a U-Drawing tester. [-]
Bildumak
  • Artikuluak - Ingeniaritza [735]

Zerrendatu honako honen arabera

eBiltegia osoaKomunitateak & bildumakArgitalpen dataren araberaEgileakIzenburuakMateriakIkerketa taldeakNon argitaratuaBilduma hauArgitalpen dataren araberaEgileakIzenburuakMateriakIkerketa taldeakNon argitaratua

Nire kontua

SartuErregistratu

Estatistikak

Ikusi erabilearen inguruko estatistikak

Nork bildua:

OpenAIREBASERecolecta

Nork balioztatua:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Biblioteka
Kontaktua | Iradokizunak
DSpace
 

 

Nork bildua:

OpenAIREBASERecolecta

Nork balioztatua:

OpenAIRERebiun
MONDRAGON UNIBERTSITATEA | Biblioteka
Kontaktua | Iradokizunak
DSpace