Simultaneous enhancements in thermal insulation and toughness of resorcinol-formaldehyde/polydimethylsiloxane micro-foams
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s10934-022-01390-3.pdf
Reference49 articles.
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3. J. Choe, M. Kim, J. Kim, D.G. Lee, A microwave foaming method for fabricating glass fiber reinforced phenolic foam. Compos. Struct. 152, 239–246 (2016)
4. J. Ding, Z. Huang, Y. Qin, M. Shi, C. Huang, J. Mao, Improved ablation resistance of carbon–phenolic composites by introducing zirconium silicide particles. Compos. Part B 82, 100–107 (2015)
5. L. Asaro, L.B. Manfredi, S. Pellice, R. Procaccini, E.S. Rodriguez, Innovative ablative fire resistant composites based on phenolic resins modified with mesoporous silica particles. Polym. Degrad. Stab. 144, 7–16 (2017)
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1. High enrichment and measurement of heterocyclic aromatic hydrocarbons from environmental waters with magnetic resorcinol-formaldehyde nanocomposites coupled with high performance liquid chromatography;Talanta;2024-06
2. Facile Synthesis of Hollow Glass Microsphere Filled PDMS Foam Composites with Exceptional Lightweight, Mechanical Flexibility, and Thermal Insulating Property;Molecules;2023-03-13
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