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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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A New Method for Stress and Deformation Analysis from Nano to Macro Dimensional Scales

TL;DR: In this paper, a concurrent multiscale method for the stress analysis of solids using a coupled meshless and molecular dynamic analysis was presented, and a transition algorithm using transition particles was employed to ensure the compatibility of both displacements and their gradients.
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An Investigation into the Microstructure of Adiabatic Shear Banding in AISI 1045 Hardened Steel due to High Speed Machining

TL;DR: In this article, the microstructure of adiabatic shear bands (ASBs) in the serrated chips produced during the high speed machining of AISI 1045 hardened steel was investigated.
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Implementation of Glass Transition Physics in Glass Molding Simulation

TL;DR: In this paper, the authors used Monte-Carlo approach to approximately solve the master equations and further implemented the Monte Carlo method in the finite element simulation, and found that the geometrical replication quality is the best when the forming is performed at the viscosity around 105~106 Pa×s.
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Energy efficiency in rock cutting

TL;DR: In this paper, a simple analytical model for an optimal geometry design of a cutting pick with the criteria of greater energy efficiency was proposed for indentation or symmetric cutting condition based on the cavity model, and the ratio of the elastic strain energy to the total energy was introduced as a measure of the energy efficiency.
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An investigation on the friction, wear and deformation of potassium dihydrogen phosphate

TL;DR: In this paper, the authors investigated the friction, wear and deformation of potassium dihydrogen phosphate (KDP) using the nano-scratching technique with both Berkovich and conical indenters.