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Shaohui Yin

Researcher at Hunan University

Publications -  66
Citations -  1104

Shaohui Yin is an academic researcher from Hunan University. The author has contributed to research in topics: Grinding & Surface roughness. The author has an hindex of 16, co-authored 56 publications receiving 735 citations.

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Profile error compensation in ultra-precision grinding of aspheric surfaces with on-machine measurement

TL;DR: In this paper, a compensation approach based on the on-machine measurement was developed for the grinding of tungsten carbide aspheric molds, which was employed to eliminate the profile error caused by the re-installation of the workpiece.
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Robust platform for water harvesting and directional transport

TL;DR: In this article, a new water harvesting platform for dropwise condensation and dropwise transportation is developed to realize both water collection and spontaneously directional transport over long-distance at low temperatures, which can directly and continuously capture moisture from the air in a low temperature environment.
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Online monitoring of surface roughness and grinding wheel wear when grinding Ti-6Al-4V titanium alloy using ANFIS-GPR hybrid algorithm and Taguchi analysis

TL;DR: In this paper, a model for monitoring grinding wheel wear conditions using the grinding force signal obtained at the processing time in combination with the adaptive neural fuzzy inference system - Gaussian process regression and Taguchi analysis to predict the abrasive wear in different stages of grinding process.
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ELID grinding characteristics of glass-ceramic materials

TL;DR: In this paper, the authors proposed a new grinding mode in which top surface and sides of zerodur block were ground by cylindrical surface and side surface of grinding wheel, and the results showed that grinding was stable without severe clogging for wheels by choosing suitable ELID parameters and grinding conditions.
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A review on recent advances in machining methods based on abrasive jet polishing (AJP)

TL;DR: Abrasive jet polishing (AJP) is a new non-conventional machining technology for applying to polish the complex surfaces and small areas as discussed by the authors, which has the following advantages: high precision, easy to control, small machining force, good flexibility, without thermal distortion, etc.