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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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Interaction potential function for the deformation analysis of potassium dihydrogen phosphate using molecular dynamics simulation

TL;DR: In this paper, a potential function for describing the mechanical behavior of KDP by using molecular dynamics simulation is proposed, which can reliably predict the mechanical properties of the material including its modulus in different crystal directions and structural changes under various loading conditions.
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Particle fracture and debonding during orthogonal machining of metal matrix composites

TL;DR: In this article, the machining zone was divided into three regions: primary, secondary and tertiary deformation zones, and the tendency of particles to fracture in each deformation zone was investigated.
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Tribological behavior of Ti–6Al–4V alloy: Subsurface structure, damage mechanism and mechanical properties

TL;DR: In this paper, the wear behavior, subsurface damage mechanism with structural change and indentation creep of bioinert Ti-6Al-4V alloy at different applied loads was described.
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Array Design of Piezoelectric Micromachined Ultrasonic Transducers With Low-Crosstalk and High-Emission Performance

TL;DR: The cavity-based array design and its model can be used for further advanced PMUT cell structures in other arrays to improve their performance and can be improved by 259% compared with the traditional PMUTs with a high distribution density of the same size.
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A multi-field analysis of hydrodynamic lubrication in high speed rolling of metal strips

TL;DR: In this paper, a multi-field analysis of full hydrodynamic lubrication in high speed cold rolling of metal strips is presented, where a robust method is developed to solve the fluid field (the lubricant flow at the roll-strip interface) and solid field (elastoplastic deformation of a metal strip) in a simple step.