26 Papers
112 Citations
Yang Wang is an academic researcher from Nanjing University of Aeronautics and Astronautics. The author has contributed to research in topics: Chemical vapor deposition & Coating. The author has an hindex of 8, co-authored 26 publications.
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Papers
Ablation behavior and mechanism analysis of C/SiC composites
TL;DR: In this article, the authors summarized the ablation phenomenon and mechanisms and divided the ablated surface of C/SiC composites into three regions from center to external, and showed that the higher the density, the lower the ablating rate; the less the time and less the ablatation rate; and the preparation methods also had a great influence on the ablations.
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Improved sandwich structured ceramic matrix composites with excellent thermal insulation
TL;DR: In this paper, an improved sandwich structured composite with low thermal conductivity used in high temperature is discussed, which have a great potential to be used in thermal protection system, which is composed of compound core material and C/SiC laminates.
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A novel SiC nanowire aerogel consisted of ultra long SiC nanowires
Binbin Li,Yuan Xiaosen,Gao Yan,Yang Wang,Jiahao Liao,Rao Zhiyuan,Mao Bangxiao,Huang Haiquan +7 more
- 16 Jan 2019
TL;DR: SiC nanowire aerogel (SNA) with highly porous 3D nanowires architecture was synthesized by polymer pyrolysis chemical vapor deposition (PPCVD) process to deposit SiC nanowsires in the pores of carbon foam, followed by high temperature oxidation of carbon foams as mentioned in this paper.
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A novel ultra-light reticulated SiC foam with hollow skeleton
TL;DR: In this article, ultra-light reticulated SiC foam (SF) with hollow skeleton was prepared by applying chemical vapor deposition technique to deposit SiC layer on carbon foam (CF) skeleton, followed by high temperature oxidation of CF.
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Characterisation of the wear properties of a single-aggregated cubic boron nitride grain during Ti–6Al–4V alloy grinding
TL;DR: In this article, the authors investigated the wear characteristics and material removal mechanism of aggregated cubic boron nitride (AcBN) grains fabricated by multiple monocrystalline cBN grains.
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