Effect of thin skin architecture and curing process on the mechanical response of composite sandwiches under low velocity-impact loading
Author:
Publisher
Elsevier BV
Subject
Civil and Structural Engineering,Ceramics and Composites
Reference32 articles.
1. Experimental and numerical study on the low-velocity impact behavior of foam-core sandwich panels;Wang;Compos Struct,2013
2. Effect of core density on the low-velocity impact response of foam-based sandwich composites;Feng;Compos Struct,2020
3. On the mechanical response of CFRP composite with embedded optical fibre when subjected to low velocity impact and CAI tests;Salvetti;Compos Struct,2017
4. Internal strain assessment using FBGs in a thermoplastic composite subjected to quasi-static indentation and low-velocity impact;Mulle;Compos Struct,2019
5. Full-field transient 3D deformation measurement of 3D braided composite panels during ballistic impact using single-camera high-speed stereo-digital image correlation;Pan;Compos Struct,2016
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1. Experimental characterization of impact damage in foam-core sandwich structures using acoustic emission, optical scanning and X-ray computed tomography techniques;Composites Part B: Engineering;2023-10
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