8 Papers
1 Citations
Yu Dai is an academic researcher from China Academy of Engineering Physics. The author has contributed to research in topics: Interfacial thermal resistance & Thermal conductivity. The author has an hindex of 4, co-authored 8 publications.
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Papers
Multilevel core-shell strategies for improving mechanical properties of energetic polymeric composites by the “grafting-from” route
Guansong He,Xin Li,Liangfei Bai,Meng Li,Yu Dai,Sun Yinshuang,Chengcheng Zeng,Zhijian Yang,Guangcheng Yang +8 more
TL;DR: In this paper, a series of designed multilevel core-shell 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) particles by in-situ grafting HBPs on polydopamine (PDA) surface via “grafting-from” route was reported.
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Constructing bioinspired hierarchical structure in polymer based energetic composites with superior thermal conductivity
TL;DR: In this paper, a thermally conductive polymer based energetic composite constructed with an alternating micro-layered structure, in which the one-dimensional CNTs filled layer acted as bridge to link the adjacent two-dimensional (2D) graphene filled layer was similar to the hierarchical "brick-and-mortar" structure of nacre.
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Bioinspired interfacial engineering of polymer based energetic composites towards superior thermal conductivity via reducing thermal resistance
TL;DR: In this article, a bio-inspired interfacial engineering strategy was proposed to construct a multi-dimensional filler structure composed of 2D graphene nanoplatelets (GNPs), 0D AgNPs and bio inspired interfacial PDA layer, namely pGNPs@Ag.
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Bioinspired hierarchical interface design for improved mechanical and safety properties in energetic polymer composites
TL;DR: In this article, a bioinspired hierarchical-structured 2,6-diamino-3,5-dinitropyrazine-1oxide particles through in situ grafting from the polymerization of hyperbranched polyurethane (HBPU) on polydopamine surface.
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Carbon nanofillers repair strategy for high-efficiency thermal conductivity enhancement of PBX composites at ultralow mass fraction
TL;DR: In this article, the structural defects of carbon nanofillers (CNFs) via selective deposited of Ag nanoparticles were repaired by the repair of natural spider web and the morphology and microstructure of obtained CNFs@Ag were detailed characterized.
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