High cycle fatigue properties of explosively welded laminate AA2519/AA1050/Ti6Al4V
Author:
Publisher
Elsevier BV
Subject
General Engineering,Energy Engineering and Power Technology
Reference19 articles.
1. Structural and mechanical properties of metallic–intermetallic laminate composites produced by explosive welding and annealing;Bataev;Mater. Des.,2012
2. Resistance-curve and fracture behavior of Ti–Al3Ti metallic–intermetallic laminate (MIL) composites;Rohatgi;Acta Mater.,2003
3. Microstructure evolution of Al–Ti liquid–solid inter-face;Shu-ying;Trans. Nonferrous Metals Soc. China,2013
4. Effects of ductile phase volume fraction on the mechanical properties of Ti–Al3Ti metal–intermetallic laminate (MIL) composites;Price;Mater. Sci. Eng. A,2011
5. Damage evolution in Ti6Al4V–Al3Ti metal–intermetallic laminate composites;Li;Mater. Sci. Eng. A,2007
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1. An investigation of the shearing performance and sheared surface characterisation of ultra-strength DP steel-Al explosive welded plate composite;The International Journal of Advanced Manufacturing Technology;2023-03-16
2. Fatigue life and cyclic creep of tantalum/copper/steel layerwise plates under tension loading at room temperature;International Journal of Fatigue;2022-09
3. Low cycle fatigue behavior of zirconium–titanium–steel composite plate;Transactions of Nonferrous Metals Society of China;2022-05
4. Fatigue failure mechanism of explosively welded Ta/Cu/Steel composite;Procedia Structural Integrity;2022
5. Fatigue failure analysis of three-layer Zr–Ti/Zr–Steel composite plates: an insight into the evolution of cracks initiated at the interfaces;Archives of Civil and Mechanical Engineering;2020-11-04
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