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Featured researches published by Björn Eichler.


IABSE Symposium Bangkok 2009. Sustainable Infrastructure. Environment Friendly, Safe and Resource EfficientInternational Association for Bridge and Structural EngineeringChulalongkorn University, ThailandAsian Institute of Technology | 2009

An Upper Shelf Criterion for the Choice of Steel based on Fracture Mechanics

Markus Feldmann; Björn Eichler; Dirk Schäfer

Steel members which are designed plastically require sufficient strain capacity to ensure the formation of the plastic resistance. In case of earthquake loading brittle fracture of welded connections in steel moment frames may occur prior to the formation of plastic hinges. However, the utilization of material reserves plays an important role especially in seismic design due to its energy dissipation. Yet, the minimum required strain capacity still cannot be quantified. Thus, the objective of the research project “PLASTOTOUGH” was to establish an approach for the quantification of the upper shelf toughness to allow for a safe plastic design of steel structures using modern construction steels and to develop a sustainable method for the choice of steel material. Once the steel material provides adequate ductility values, the service life of structures can be extended effectively. Therewith the need to replace damaged structures with insufficient material properties will be minimized and the maintenance costs for buildings or bridges will be decreased in the future. This paper is the first of two parts giving an overview over the research work performed within the project for monotonic loading. The second part concerning seismic loading is presented in the subsequent paper “An Upper Shelf Criterion for the Choice of Steel for Seismic Loading”.


Engineering Fracture Mechanics | 2009

Numerical and experimental analyses of damage behaviour of steel moment connection

Wolfgang Bleck; Winfried Dahl; A. Nonn; L. Amlung; Markus Feldmann; Dirk Schäfer; Björn Eichler


Stahlbau | 2009

Vorhersage duktilen Festigkeitsversagens von Stahlbauteilen mit Hilfe schädigungsmechanischer Methoden

Markus Feldmann; Dirk Schäfer; Björn Eichler


Steel Construction | 2011

Toughness requirements for plastic design with structural steel

Markus Feldmann; Björn Eichler; Dirk Schäfer; Gerhard Sedlacek; Ioannis Vayas; Vasilis Karlos; Andreas Spiliopoulos


Stahlbau | 2016

Ein hochlagenorientiertes und duktilitätsgesteuertes Stahlgütewahlkonzept

Björn Eichler; Markus Feldmann


Stahlbau | 2013

Modellierungsvarianten und Empfehlungen bei der Ermittlung von Struktur‐ und Kerbspannungen auf Basis Finiter Element‐Berechnungen

Markus Feldmann; Björn Eichler; Bernd Boos; Joachim Henkel; Benjamin Mack


Stahlbau | 2012

Zähigkeitsdargebote kaltgefertigter Hohlprofile bei tiefen Temperaturen

Björn Eichler; Markus Feldmann; Gerhard Sedlacek


Archive | 2017

Zähigkeitsbasierte Stahlsortenwahl nach DIN EN 1993 - Stand der Normung und neue Entwicklungen

Markus Feldmann; Björn Eichler; Bertram Kühn; Sandro Citarelli; Simon Schaffrath


Archive | 2015

Hochlagenorientierte Werkstoffgütewahl für die plastische Bemessung von Stahlbauteilen

Björn Eichler; Natalie Stranghöner; Markus Feldmann


Stahlbau | 2013

Modellierungsvarianten und Empfehlungen bei der Ermittlung von Struktur- und Kerbspannungen auf Basis Finiter Element-Berechnungen / Modeling variations and recommendations for the evaluation of structural and notch stresses based on finite element simulations

Markus Feldmann; Björn Eichler; B Boos; Joachim Henkel; B Mack

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Andreas Spiliopoulos

National Technical University of Athens

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Ioannis Vayas

National Technical University of Athens

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L. Amlung

RWTH Aachen University

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Natalie Stranghöner

University of Duisburg-Essen

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