479.575 PEOPLE
People | Locations | Statistics |
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Ziakopoulos, Apostolos | Athens |
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Vigliani, Alessandro | Turin |
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Catani, Jacopo | Rome |
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Statheros, Thomas | Stevenage |
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Utriainen, Roni | Tampere |
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Guglieri, Giorgio | Turin |
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Martínez Sánchez, Joaquín |
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Tobolar, Jakub |
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Volodarets, M. |
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Piwowar, Piotr |
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Tennoy, Aud | Oslo |
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Matos, Ana Rita |
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Cicevic, Svetlana |
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Sommer, Carsten | Kassel |
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Liu, Meiqi |
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Pirdavani, Ali | Hasselt |
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Niklaß, Malte |
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Lima, Pedro | Braga |
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Turunen, Anu W. |
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Antunes, Carlos Henggeler |
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Krasnov, Oleg A. |
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Lopes, Joao P. |
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Turan, Osman |
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Lučanin, Vojkan | Belgrade |
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Tanaskovic, Jovan |
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Beeh, Elmar
in Cooperation with on an Cooperation-Score of 37%
Topics
- automobile
- crash
- weight
- behavior
- crash test
- seat
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- magnesium
- alloy
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- axial compression
- simulation
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- aluminum alloy
- crashworthiness
- e-mobility
- deformation curve
- metal heating
- ultimate strength
- vehicle
- velocity
- security
- deformation
- property
- crash characteristic
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- kinetic energy
- design method
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- material selection
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- casting
- physical property
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- energy absorption
- structural material
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- assessment
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- sea shell
- specimen
- magnesium alloy
- vehicle weight
- buckling
- work hardening
- polyurethane foam
- strain hardening
- highway traffic
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- light metal
- research project
- automotive engineering
- poison
- injury
- construction management
- deceleration
- protection
- milepost
- static load
- steel structure
- alloy steel
- show 113 more
Publications (22/22 displayed)
- 2022New technological developments for applying Magnesium in crash related vehicle structures
- 2020Methodology to simulate veneer based structural components for static and crash load cases
- 2020Strukturbaugruppen auf Basis nachhaltiger holzbasierter Materialsysteme zur Reduzierung von Masse und Umweltauswirkungen im Straßen- und Schienenfahrzeugbau - Synonym: For(s)tschritt; Teilprojekt: Bauteilkonzeption und -Auslegung, Entwicklung Simulationsmethode, Versuche an Teilstrukturen und Prototypen : Schlussbericht zum Vorhaben For(s)tschritt : Laufzeit: 01.03.2017-31.08.2020
- 2020Verbundprojekt: Strukturbaugruppen auf Basis nachhaltiger holzbasierter Materialsysteme zur Reduzierung von Masse und Umweltauswirkungen im Straßen- und Schienenfahrzeugbau - Synonym: For(s)tschritt : Schlussbericht zum Vorhaben For(s)tschritt : Laufzeit: 01.03.2017-31.08.2020
- 2019Active energy absorbers - improved safety through intelligent vehicle structures,Aktive energieabsorber - verbesserte sicherheit durch intelligente fahrzeugstrukturen
- 2019Proof of the potential of new non-heat treated aluminum high-pressure die-cast alloys for crash-impact areas
- 2019Aktive Energieabsorber - Verbesserte Sicherheit durch intelligente Fahrzeugstrukturen
- 2018Function Integration for Lightweight Chassis Based on Axiomatic Design and Design Structure Matrixcitations
- 2018Solutions for next generation automotive lightweight concepts based on material selection and functional integrationcitations
- 2018Solutions for Next Generation Automotive Lightweight Concepts based on MaterialSelection and Functional Integrationcitations
- 2016Novel procedure model for an improved comparison of simulation and component crash test results
- 2016Crash Absorbing Structures for Different Vehicle Concepts
- 2015Novel Concepts to apply magnesium in crash-related vehicle structures
- 2015Crashworthiness Evaluation of Empty and Foam-Filled AZ31B Magnesium Beams under Three-Point Bending
- 2013Crashsicherheitspotentiale durch leichte, funktionsintegrierte Fahrzeugstrukturen
- 2012Lightweight Design by Functional Integration Using Magnesium Castings
- 2011Specific mechanical properties of superplastically formed components and resulting applications for vehicles
- 2009Super Light Car—lightweight construction thanks to a multi-material design and function integrationcitations
- 2009Super Light Car - Leichtbau in der Fahrzeugkarosserie durch Multi-Material-Design
- 2008High Efficient Crash Energy Absorption Method for Automotive Engineering
- 2008Super Light Car—lightweight construction thanks to a multi-material design and function integrationcitations
- 2007Highly integrated lightweight solutions for the vehicle structure and new concepts for crash-energy-absorption
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