Hessman

M.Sc. Patrick Hessman

  • Robert Bosch GmbH
    Corporate Research and Advance Engineering
    Robert-Bosch-Campus 1
    71272 Renningen

    Telefon: +49 (0)711 811 11430
    E-Mail: patrickarthur.hessman @de.bosch.com

Curriculum Vitae

 

10/2009–03/2013        

Studies of Mechanical Engineering (Bachelor),
Karlsruhe Institute of Technology (KIT), Germany

09/2012–11/2013 Internship, Bachelor Thesis and Student Trainee „Thermomechanical fatigue of turbine wheels built from the nickel base superalloy Inconel 713C", Bosch Mahle Turbo Systems GmbH & Co. KG, Stuttgart
03/2013–12/2015
      

Studies of Mechanical Engineering (Master),
Karlsruhe Institute of Technology (KIT), Germany

09/2014–02/2015

Term abroad at the Instituto Superior Técnico, Lissabon, Portugal

07/2015–12/2015

Masterthesis „Improved failure prediction for short fiber reinforced thermoplastics“, Corporate Research and Advance Engineering, Robert Bosch GmbH, Renningen, Germany

Since 02/2016 

External PhD student,
Institute of Engineering Mechanics,
Chair for Continuum Mechanics,
Karlsruhe Institute of Technology (KIT),
Germany

Forschungsschwerpunkte

Probabilistic Damage Modeling for the Microstructural Failure of Short Fiber Reinforced Thermoplastics
(Probabilistische Schädigungsmodelle für das mikrostrukturelle Versagen kurzfaserverstärkter Thermoplaste)

Publications


On mean field homogenization schemes for short fiber reinforced composites: Unified formulation, application and benchmark
Hessman, P. A.; Welschinger, F.; Hornberger, K.; Böhlke, T.
2021. International journal of solids and structures, 230-231, Art.-Nr. 111141. doi:10.1016/j.ijsolstr.2021.111141
Microstructural analysis of short glass fiber reinforced thermoplastics based on x-ray micro-computed tomography
Hessman, P. A.; Riedel, T.; Welschinger, F.; Hornberger, K.; Böhlke, T.
2019. Composites science and technology, 183, Art.Nr. 107752. doi:10.1016/j.compscitech.2019.107752

Konferenzen

Talks

Please refer to the German page "Vorträge". Thank you.

Lehre

Studies and Teachings

Winter Term 2017/18

  • Rechnerübungen zu Höhere Technische Festigkeitslehre (HTF)
  • Sprechstunden zu Höhere Technische Festigkeitslehre (HTF)

Summer Term 2017

  • Rechnerübungen zu Finite Elemente Methode (FEM)