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Huidi Zhou

Researcher at Chinese Academy of Sciences

Publications -  223
Citations -  5895

Huidi Zhou is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Coating & Microstructure. The author has an hindex of 41, co-authored 200 publications receiving 4538 citations.

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Low temperature preparation of transparent, antireflective TiO2 films deposited at different O2/Ar ratios by microwave electron cyclotron resonance magnetron sputtering

TL;DR: A serial of crystalline titanium oxide ceramic films were deposited at low temperature using microwave electron cyclotron resonance (MW-ECR) magnetron sputtering with different O2/Ar ratios as discussed by the authors.
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A systematic study on Na2SO4-induced hot corrosion behavior of plasma-sprayed La2(Zr0.75Ce0.25)2O7 coating

TL;DR: In this article, three series of hot corrosion tests were performed from the perspectives of Na2SO4 content, corrosion duration and corrosion temperature, and different corrosion products of La2O2S and Ce7O12 were identified depending on the hot corrosion conditions and the probable reaction mechanisms.
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Green waterborne PAI-graphite bonded solid-lubricating coatings: Promising lubricating materials with robust mechanical and tribological properties

TL;DR: In this article, a green waterborne PAI-graphite bonded solid-lubricating coatings (BSLCs) with superior mechanical and tribological properties was proposed.
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High temperature induced “glaze” layer formed in HVOF-sprayed NiCrWMoCuCBFe coating and its wear reduction mechanism

TL;DR: In this article , the effect of the mechanical properties and microstructures of the NiCrWMoCuCBFe coating on tribological performance was discussed in detail, and the results showed both its friction coefficient (0.37) and wear rate (5.067 × 10 −6 mm 3 ·N −1 ·m −1 ) at 800 °C were the lowest, which was mainly related to the formation of a glaze layer on the coating surface at high temperature.
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Regulating Vacuum Tribological Behavior of a-C:H Film by Interfacial Activity

TL;DR: In this article, the vacuum tribological behaviors of a hydrogenated amorphous carbon (a-C:H) film can be regulated by interfacial activity, which is beneficial to form spherical-like carbon at the sliding interface, which shields the interaction of dangling bonds and contributes to lower friction coefficient.