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Liangchi Zhang

Researcher at Southern University of Science and Technology

Publications -  553
Citations -  16152

Liangchi Zhang is an academic researcher from Southern University of Science and Technology. The author has contributed to research in topics: Grinding & Machining. The author has an hindex of 62, co-authored 523 publications receiving 13759 citations. Previous affiliations of Liangchi Zhang include Center for Advanced Materials & Harbin Institute of Technology.

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Behaviors of the interface and matrix for the Ag/Cu bimetallic laminates prepared by roll bonding and diffusion annealing

TL;DR: In this article, the microstructure, composition and hardness of bimetallic laminates were investigated in the matrix or diffusion zone of the Laminates, and they were prepared by roll bonding at different temperatures and annealing for different times at 673 and 1023 K.
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A reliable method for predicting serrated chip formation in high-speed cutting: analysis and experimental verification

TL;DR: In this article, a systematic finite element analysis was carried out and a series of high-speed cutting (HSC) experiments were conducted on a heat treated AISI 1045 steel, where the integrative use of the Johnson-Cook thermal-viscoplastic constitutive equation, Johnson-cook damage criterion for chip separation, and the modified Zorev's friction model can precisely predict the serrated chip formation in HSC without artificial assumptions.
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Effective Mechanical Properties and Thickness Determination of Boron Nitride Nanosheets Using Molecular Dynamics Simulation

TL;DR: A comprehensive analysis on the effect of vital factors which can result in variations of the effective mechanical properties of BNNS is presented and the computation of the correct wall thickness of BnnS from elastic theory equations is presented.
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A fuzzy model for predicting burns in surface grinding of steel

TL;DR: In this article, a fuzzy rule-based model for estimating the grinding conditions at which burn limits occur is presented, which has a wide range of applications over many types of steels, Alundum wheels, and grinding conditions.
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Amorphous structures induced in monocrystalline silicon by mechanical loading

TL;DR: In this article, the authors used high-resolution transmission electron microscopy and nanodiffraction to find the structures of amorphous silicon formed at slow and fast loading/unloading rates and inherit the nearest-neighbor distance of the crystal in which they are formed.