Design and fabrication of aluminum honeycomb sandwich structures by atmosphere protect brazing: Microstructural evolution and mechanical behavior
Author:
Funder
Jilin Provincial Science and Technology Department
Jilin Province Key Research Development Plan Project
Publisher
Elsevier BV
Subject
General Materials Science
Reference23 articles.
1. Axial and lateral crushing responses of aluminum honeycombs filled with EPP foam;Liu;Compos. Part B,2017
2. Experimental study on out-of-plane mechanical and energy absorption properties of combined hexagonal aluminum honeycombs under dynamic impact;Li;Mater. Des.,2020
3. Compression, bending, energy absorption properties, and failure modes of composite Kagome honeycomb sandwich structure reinforced by PMI foams;Song;Compos. Struct.,2021
4. Experimental investigation of the mechanical behavior of aluminum honeycombs under quasi-static and dynamic indentation;Ashab;Mater. Des.,2015
5. Collapse modes in aluminium honeycomb sandwich panels under bending and impact loading;Crupi;Int. J. Impact. Eng.,2012
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1. Friction stir seam- and spot-welded aluminium honeycombs: Enhanced structural integrity eliminating adhesive bonding challenges;Journal of Materials Processing Technology;2024-09
2. Deformation and failure of asymmetric sandwich structures under low-velocity impact;Engineering Failure Analysis;2024-07
3. A novel method of fabricating aluminium honeycomb core by friction stir welding;Thin-Walled Structures;2023-12
4. Enhancing interfacial strength of T-joint for vacuum-brazed thin-walled structures comprising TiAl and GH3536 alloys via in-situ synthesis of Al2TiO5 ceramic coatings;Journal of Materials Research and Technology;2023-11
5. Study on three-point bending behavior of sandwich beams with novel auxetic honeycomb core;Materials Today Communications;2023-06
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