A strength-model for laser joined hybrid aluminum–titanium transition structures
Author:
Funder
DFG
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Reference6 articles.
1. Joining of Dissimilar Materials;Martinsen;Annals of the CIRP,2015
2. Improving Interfacial Properties of a Laser Beam Welded Dissimilar Joint of Aluminium AA6056 and Titanium Ti6Al4V for Aeronautical Applications;Vaidya;Journal of Materials Science,2010
3. Fracture Analysis of Competing Failure Modes of Aluminum–CFRP Joints Using Three-Layer Titanium Laminates as Transition;Woizeschke;Journal of Materials Engineering and Performance,2015
4. Improving Interfacial Reaction Nonhomogeneity During Laser Welding-Brazing Aluminum to Titanium;Chen;Materials and Design,2011
5. Study on the Fatigue Strength of AA 6082-T6 Adhesive Lap Joints;Pereira;International Journal of Adhesion & Adhesives,2009
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1. Improvement weldability of dissimilar joints (Ti6Al4V/Al6013) for aerospace industry by laser beam welding;The International Journal of Advanced Manufacturing Technology;2021-06-28
2. Laser Joining Processes for Lightweight Aircraft Structures;Revolutionizing Aircraft Materials and Processes;2020
3. The Study on Mechanical Strength of Titanium-Aluminum Dissimilar Butt Joints by Laser Welding-Brazing Process;Materials;2019-02-28
4. Microstructural Modification and High-Temperature Grain Stability of Aluminum in an Aluminum-Titanium Friction Stir Weld with Zinc Interlayer;JOM;2018-09-28
5. Developments for laser joining with high-quality seam surfaces;Lightweight Design worldwide;2017-10
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