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Hongyuan Jiang

Researcher at Harbin Institute of Technology

Publications -  114
Citations -  1887

Hongyuan Jiang is an academic researcher from Harbin Institute of Technology. The author has contributed to research in topics: Dielectrophoresis & Voltage. The author has an hindex of 22, co-authored 92 publications receiving 1350 citations.

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Synthesis of tubular silica fiber via all‐aqueous microfluidics for geopolymer regulation

TL;DR: In this paper , an all-aqueous microfluidic method was proposed to prepare tubular polymeric fiber as the preceramic template and the relevant dimensional parameters could be promptly regulated via simple flow rate control.
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Predicting Nonlinear and Anisotropic Mechanics of Metal Rubber Using a Combination of Constitutive Modeling, Machine Learning, and Finite Element Analysis.

TL;DR: In this paper, a numerical constitutive model of metal rubber (MR) was proposed to express the mechanics of MR materials and developed an efficient finite element method (FEM) to calculate the performance of MR components.
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Ketone Body Improves Neurological Outcomes after Cardiac Arrest by Inhibiting Mitochondrial Fission in Rats

TL;DR: β-HB beneficially affected the neurological function of rats after global cerebral ischemia, associated with decreased mitochondrial fission, and improved mitochondrial function, suggesting that β-HB might benefit patients suffering from neurological dysfunction after CA.
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Analysis of Output Performance of a Novel Symmetrical T-Shaped Trapezoidal Micro Piezoelectric Energy Harvester Using a PZT-5H

TL;DR: In this article , a symmetrical T-shaped trapezoidal micro piezoelectric energy harvester (STTM-PEH) is proposed to supply energy for wireless sensors monitoring the vibrations of mechanical equipment.
Proceedings ArticleDOI

Determination of the Accumulated Location of Microparticle Collection Caused by AC EO

TL;DR: In this paper, the velocity field of AC EO in microchannel is explored and the process of microparticles accumulated is explained based on the numerical simulation results, at the same time, the rate relation between the accumulated location and the width of microelectrode, which offers the theoretic base for further analyzing and detecting micro-articles.