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Kunkun Cui

Researcher at Anhui University of Technology

Publications -  35
Citations -  837

Kunkun Cui is an academic researcher from Anhui University of Technology. The author has contributed to research in topics: Microstructure & Coating. The author has an hindex of 9, co-authored 19 publications receiving 179 citations.

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Pyrometallurgical recovery of zinc and valuable metals from electric arc furnace dust – A review

TL;DR: In this paper, the physical and chemical properties of electric arc furnace dust are discussed from the micro and macro perspectives, the microstructure, chemical composition and phase composition of EAFD in various countries are summarized in detail.
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Toughening Mechanism of Mullite Matrix Composites: A Review

TL;DR: In this article, the second phase of the mullite matrix composites has been used to improve the strength and toughness of the matrix, and the reinforcement mechanism of second phase has been discussed.
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Oxidation protection of tungsten alloys for nuclear fusion applications: A comprehensive review

TL;DR: In this article, the application of various alloys and coatings in the oxidation protection of tungsten is reviewed, and their microstructure, oxidation behavior, and failure mechanism are analyzed and summarized.
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Evolution of surface morphology, roughness and texture of tungsten disilicide coatings on tungsten substrate

TL;DR: In this paper, the evolution behavior of surface and interface morphologies, roughness and texture of tungsten disilicide coatings was studied using SEM, TEM, AFM combining with EBSD methodology.
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Microstructure evolution and growth mechanism of Si-MoSi2 composite coatings on TZM (Mo-0.5Ti-0.1Zr-0.02 C) alloy

TL;DR: In this paper, the evolution behavior of microstructure and phase composition of Si-MoSi2 composite coatings with different diffusion times were studied, and a typical three-layer diffusion structure was observed at cross-section of coatings, the MoSi2 phase and carbide phases formed in the outer layers, and the intermediate layer only consisted of MoSi 2 phase.