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Two-Steps Method to Prepare Multilayer Sandwich Structure Carbon Fiber Composite with Thermal and Electrical Anisotropy and Electromagnetic Interference Shielding
Carbon fiber (CF) composites performance enhancement is a research hotspot at present. In this work, first, a sandwich structure composite, CF@(carbon nanotube/Fe(3)O(4))/epoxy (CF@(CNT/Fe(3)O(4))/EP), is prepared by the free arc dispersion-CFs surface spraying-rolling process method, herein, CFs in...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865468/ https://www.ncbi.nlm.nih.gov/pubmed/36676416 http://dx.doi.org/10.3390/ma16020680 |
Sumario: | Carbon fiber (CF) composites performance enhancement is a research hotspot at present. In this work, first, a sandwich structure composite, CF@(carbon nanotube/Fe(3)O(4))/epoxy (CF@(CNT/Fe(3)O(4))/EP), is prepared by the free arc dispersion-CFs surface spraying-rolling process method, herein, CFs in the middle layer and (CNT/Fe(3)O(4))/EP as top and substrate layer. Then, CF@(CNT/Fe(3)O(4))/EP (on both sides) and CFs (in the middle) are overlapped by structure design, forming a multilayer CF@(CNT/Fe(3)O(4))/EP-CFs composite with a CFs core sheath. A small amount of CNT/Fe(3)O(4) is consumed, (CNT/Fe(3)O(4))/EP and CFs core sheath realize thermal and electrical anisotropy and directional enhancement, and multilayer sandwich structure makes the electromagnetic interference (EMI) shielding performance better strengthened by multiple absorption–reflection/penetration–reabsorption. From CF-0 to CF-8, CNT/Fe(3)O(4) content only increases by 0.045 wt%, axial thermal conductivity (λ(‖)) increases from 0.59 W/(m·K) to 1.1 W/(m·K), growth rate is 86%, radial thermal conductivity (λ(⊥)) only increases by 0.05 W/(m·K), the maximum λ(‖)/λ(⊥) is 2.9, axial electrical conductivity (σ(‖)) increases from 6.2 S/cm to 7.7 S/cm, growth rate is 24%, radial electrical conductivity (σ(⊥)) only increases by 0.7 × 10(−4) S/cm, the total EMI shielding effectiveness (EMI SE(T)) increases by 196%, from 10.3 dB to 30.5 dB. This provides a new idea for enhancing CFs composite properties. |
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