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Dongyang Zhang

Researcher at Harbin Institute of Technology

Publications -  31
Citations -  683

Dongyang Zhang is an academic researcher from Harbin Institute of Technology. The author has contributed to research in topics: Ceramic & Composite number. The author has an hindex of 11, co-authored 31 publications receiving 476 citations.

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In Situ Growth of Core–Sheath Heterostructural SiC Nanowire Arrays on Carbon Fibers and Enhanced Electromagnetic Wave Absorption Performance

TL;DR: The SiCnws-CF/PPy nanocomposites in this study are very promising as absorber materials with strong electromagnetic wave absorption performance.
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Strong effect of atmosphere on the microstructure and microwave absorption properties of porous SiC ceramics

TL;DR: In this paper, the microwave absorption properties of porous SiC ceramics were successfully synthesized using SiC/camphene slurries with various polycarbosilane (PCS) contents related to the SiC powder.
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Carbon Nanofiber Arrays Grown on Three-Dimensional Carbon Fiber Architecture Substrate and Enhanced Interface Performance of Carbon Fiber and Zirconium Carbide Coating

TL;DR: The prepared CNFs-CF/ZrC ceramic nanocomposite is one of the potential candidate materials for the thermal protection application and its thermal stability and mechanical property have been promoted obviously compared with the CF/ zirconium carbide ceramic nancomposite.
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Oxidation behavior and ablation mechanism of Cf/ZrB2-SiC composite fabricated by vibration-assisted slurry impregnation combined with low-temperature hot pressing

TL;DR: In this article, the Cf/ZrB2-SiC composite was fabricated by vibration assisted slurry impregnation and low-temperature hot pressing and exhibited an excellent thermal shock resistance and oxidation resistance with a dense SiO2-rich glassy layer exposing at 1500 °C/1 h condition for static oxidation.
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A novel vibration-assisted slurry impregnation to fabricate Cf/ZrB2-SiC composite with enhanced mechanical properties

TL;DR: In this paper, a needle-punched carbon fiber reinforced ZrB2-SiC composite with highly uniform distribution was fabricated successfully via a novel vibration-assisted slurry impregnation and low-temperature (1450 °C) hot pressing technique using nanosized ZrBs powders.