Q
Qian Yu
Researcher at Beijing Institute of Technology
Publications - 29
Citations - 137
Qian Yu is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Machining & Coating. The author has an hindex of 4, co-authored 19 publications receiving 61 citations. Previous affiliations of Qian Yu include Keio University.
Papers
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Journal ArticleDOI
Preparation of graphene-enhanced nickel-phosphorus composite films by ultrasonic-assisted electroless plating
Qian Yu,Tianfeng Zhou,Yonggang Jiang,Xing Yan,Zhonglie An,Xibin Wang,Deyuan Zhang,Takahito Ono +7 more
TL;DR: In this paper, an ultrasonic-assisted electroless plating method is proposed for the synthesis of graphene-enhanced nickel-phosphorus (G-Ni-P) composite films on heat-resistant stainless steel (06Cr25Ni20).
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A review of the techniques for the mold manufacturing of micro/nanostructures for precision glass molding
Tianfeng Zhou,He Yupeng,Tianxing Wang,Zhanchen Zhu,Ruzhen Xu,Qian Yu,Zhao Bin,Wenxiang Zhao,Liu Peng,Xibin Wang +9 more
TL;DR: A detailed survey of the existing micro-nanostructured mold manufacturing techniques and their corresponding mold materials, including nonmechanical and mechanical methods, is provided in this article.
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Annealed high-phosphorus electroless Ni–P coatings for producing molds for precision glass molding
TL;DR: In this paper, an annealed high-phosphorus electroless Ni-P coating was developed as the mold material for precision glass molding, which was prepared on heat-resistant stainless steel via an intermittent ultrasonic-assisted electroless plating method.
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Defect Analysis in Microgroove Machining of Nickel-Phosphide Plating by Small Cross-Angle Microgrooving
TL;DR: In this paper, a small cross-angle microgrooving method is proposed to test the critical adjacent amount range efficiently, and it is found that an acute ridge of the microgroove is formed with a small enough adjacent amount; when this amount is in the range of 570nm~720nm in the micro-groove machining process, fracture pits begin to arise on the gradient edge.
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Diffraction manipulation of visible light with submicron structures for structural coloration fabrication.
He Yupeng,Tianfeng Zhou,Dong Xiaobin,Zhanchen Zhu,Qian Yu,Liu Peng,Wenxiang Zhao,Xibin Wang,Yao Hu,Jiwang Yan +9 more
TL;DR: Methods of optical diffraction manipulation, flexible manufacturing of submicron structures, and structural color image construction proposed in this paper for the production of a structural color pattern are beneficial to a wide range of fields.