High-velocity impact damage in CFRP laminates
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Publisher
Elsevier
Reference28 articles.
1. The impact of structural composite materials. Part 2: hypervelocity impact and shock;Appleby-Thomas;J. Strain Anal. Eng. Des.,2012
2. Ultrasonic evaluation of matrix damage in impacted composite laminates;Aymerich;Composites Part B,2000
3. Impact of thick CFRP laminates: the effect of impact velocity;Breen;Composites Part A,2005
4. Comparison of the low and high velocity impact response of CFRP;Cantwell;Composites,1989
5. The influence of varying projectile mass on the impact response of CFRP;Cantwell;Compos. Struct.,1989
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1. Hygrothermal effects on ballistic behavior of toughened CFRP laminates;International Journal of Mechanical Sciences;2024-10
2. Development of advanced fiber‐reinforced polymer composites by polymer hybridization technique: Emphasis on cure kinetics, mechanical, and thermomechanical performance;Journal of Applied Polymer Science;2020-04-30
3. An experimental investigation on high velocity impact behavior of hygrothermal aged CFRP composites;Composite Structures;2018-11
4. Characterization of microscopic damage due to low-velocity and high-velocity impact in CFRP with toughened interlayers;Mechanical Engineering Journal;2016
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