Indexed by:Journal Papers
Date of Publication:2020-01-01
Journal:THIN-WALLED STRUCTURES
Included Journals:EI、SCIE
Volume:146
ISSN No.:0263-8231
Key Words:Honeycomb structure; Equivalent method; Embedded part; Digital image correlation; Finite element method
Abstract:The deformation and failure behavior of a regular hexagonal honeycomb sandwich structure with an embedded part under axial pullout loading are studied. The deformation process of the honeycomb sandwich structure was recorded using a noncontact full-field optical measurement method based on three-dimensional digital image correlation. A corresponding finite element numerical model of the honeycomb sandwich structure with embedded parts is established. A cohesive zone model is used to simulate the interface failure of the honeycomb sandwich structure with the embedded part. The four groups of interface parameters were characterized by standard testing procedures including the flatwise tensile test, single-lap test, double cantilever beam test and three-point bending test. The numerical results accurately predicted the ultimate load of the structure. The failure process and failure mechanism of the honeycomb sandwich structure with the embedded part are obtained. The combination of an experiment and numerical methods effectively revealed the deformation and failure behavior of honeycomb sandwich structures with an embedded part under axial pullout loading.
Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Gender:Male
Alma Mater:Dalian University of Technology (DUT)
Degree:Doctoral Degree
School/Department:State Key Laboratory of Industrial Equipment for Structral Analysis, Department of Engineering Mechanics
Discipline:Solid Mechanics. Applied and Experimental Mechanics. Engineering Mechanics. Mechanical Manufacture and Automation. Vehicle Engineering. Aerospace Mechanics and Engineering. mechanics of manufacturing process
Business Address:Room 321, Department of Engineering Mechanics
Contact Information:Tel.: 86 0411-84708406 Email: leizk@dlut.edu.cn
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