Yong Deng

ORCID: 0000-0001-5082-0814
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About
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Research Areas
  • Advanced ceramic materials synthesis
  • Aluminum Alloys Composites Properties
  • Advanced materials and composites
  • Mechanical Behavior of Composites
  • Innovative concrete reinforcement materials
  • Microstructure and mechanical properties
  • Seismic Imaging and Inversion Techniques
  • Natural Fiber Reinforced Composites
  • Rock Mechanics and Modeling
  • Structural Behavior of Reinforced Concrete
  • Structural Load-Bearing Analysis
  • Microstructure and Mechanical Properties of Steels
  • nanoparticles nucleation surface interactions
  • Metal and Thin Film Mechanics
  • High Temperature Alloys and Creep
  • Hydraulic Fracturing and Reservoir Analysis
  • Metallurgy and Material Forming
  • Fatigue and fracture mechanics
  • High-Velocity Impact and Material Behavior
  • Tunneling and Rock Mechanics
  • Fiber-reinforced polymer composites
  • Powder Metallurgy Techniques and Materials
  • MXene and MAX Phase Materials
  • Numerical methods in engineering
  • Drilling and Well Engineering

Henan University of Science and Technology
2025

Northwestern Polytechnical University
2020-2024

Yangtze River Delta Physics Research Center (China)
2021-2024

Chongqing University
2016-2023

China University of Petroleum, Beijing
2015-2023

China National Offshore Oil Corporation (China)
2023

South China Institute of Collaborative Innovation
2021-2023

Nantong University
2017-2022

University of Science and Technology Beijing
2020

Shantou University
2020

10.1016/j.jngse.2016.05.020 article EN publisher-specific-oa Journal of Natural Gas Science and Engineering 2016-05-10

We report a novel theoretical model without any fitting parameters for the temperature dependence of band gap energy in semiconductors. This relates at elevated to that arbitrary reference temperature. As examples, energies Si, Ge, AlN, GaN, InP, InAs, ZnO, ZnS, ZnSe and GaAs temperatures below 400 K are calculated good agreement with experimental results. Meanwhile, high (T > K) predicted, which greater than results, reasonable analysis is carried out as well. Under low temperatures, effect...

10.1088/1361-6463/aa85ad article EN Journal of Physics D Applied Physics 2017-08-11

The objective of this paper is to study the fatigue performance concrete beams strengthened with carbon fiber sheets bonded by an inorganic matrix. Large size reinforced (RC) were three layers and tested under loading. relationship between strength, crack width, number cycles was studied analyzed. Results showed that both load capacity RC significantly increased sheets. strength as much 55% compared control beams. Fatigue failure matrix started steel rupturing followed rupture. It observed...

10.1061/(asce)0899-1561(2006)18:1(28) article EN Journal of Materials in Civil Engineering 2006-01-17

High entropy alloys have excellent wear resistance, so they great application prospects in the fields of resistance and surface protection. In this study, FeNiCrCoCu high alloy coating was systematically analyzed by molecular dynamics method. used as a material to adhere Cu matrix. The friction nanoindentation simulation were carried out controlling ambient temperature. influence temperature on its properties five aspects: lattice structure, dislocation evolution, coefficient, hardness,...

10.3390/ma17163911 article EN Materials 2024-08-07
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