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About the database ScholarIQanswers from OpenAlex & ORCID
How has Daniel-Alexander Türk's publication output changed over time?
ScholarIQpublication output · 2014–2019
Output grew100% over the shown period — from 1 works in 2014 to 2 in 2019.
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2
2
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2
20142016201720182019
What are the most-cited papers on Daniel-Alexander Türk?
ScholarIQmost cited works
Mechanical characterization of 3D printed polymers for fiber reinforced polymers processing
Daniel-Alexander Türk, Franco Brenni, Markus Zogg, Mirko Meboldt
S8792693. 2017166 Citations
Development of VariLeg, an exoskeleton with variable stiffness actuation: first results and user evaluation from the CYBATHLON 2016
Stefan O. Schrade, Katrin Dätwyler, Marius Stücheli, Kathrin Studer, Daniel-Alexander Türk, Mirko Meboldt, Roger Gassert, Olivier Lambercy
Journal of NeuroEngineering and Rehabilitation. 201867 CitationsOPEN ACCESS
Composites Part Production with Additive Manufacturing Technologies
Daniel-Alexander Türk, Ralph Kussmaul, Markus Zogg, Christoph Klahn, Bastian Leutenecker-Twelsiek, Mirko Meboldt
Procedia CIRP. 201756 CitationsOPEN ACCESS
Design and manufacturing of high-performance prostheses with additive manufacturing and fiber-reinforced polymers
Daniel-Alexander Türk, Halldór Bjarki Einarsson, Christophe Lecomte, Mirko Meboldt
Production Engineering. 201838 Citations
Combining Additive Manufacturing with Advanced Composites for Highly Integrated Robotic Structures
Daniel-Alexander Türk, Lukas Triebe, Mirko Meboldt
Procedia CIRP. 201635 CitationsOPEN ACCESS
Related on ScholarIQ
Technical University of Munich
Institution
Mechanical characterization of 3D printed polymers for fiber reinforced polymers processing
Paper
Development of VariLeg, an exoskeleton with variable stiffness actuation: first results and user evaluation from the CYBATHLON 2016
Paper
Composites Part Production with Additive Manufacturing Technologies
Paper
Design and manufacturing of high-performance prostheses with additive manufacturing and fiber-reinforced polymers
Paper
Combining Additive Manufacturing with Advanced Composites for Highly Integrated Robotic Structures
Paper