Chang Cai

ORCID: 0009-0007-0816-5132
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About
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Research Areas
  • Concrete and Cement Materials Research
  • Rock Mechanics and Modeling
  • Wind Energy Research and Development
  • Aluminum Alloys Composites Properties
  • Aluminum Alloy Microstructure Properties
  • Innovative concrete reinforcement materials
  • Tailings Management and Properties
  • Wave and Wind Energy Systems
  • Metallurgy and Material Forming
  • Innovations in Concrete and Construction Materials
  • Metallurgy and Material Science
  • Catalysis for Biomass Conversion
  • Fluid Dynamics and Turbulent Flows
  • Structural Behavior of Reinforced Concrete
  • Multicomponent Synthesis of Heterocycles
  • Fluid Dynamics and Vibration Analysis
  • Metallurgical Processes and Thermodynamics
  • Geophysical Methods and Applications
  • Synthesis of Indole Derivatives
  • Magnesium Alloys: Properties and Applications
  • Erosion and Abrasive Machining
  • Materials Engineering and Processing
  • Thermal Analysis in Power Transmission
  • Recycling and utilization of industrial and municipal waste in materials production
  • Metal and Thin Film Mechanics

Institute of Engineering Thermophysics
2023-2025

Chinese Academy of Sciences
2023-2025

Southwest Jiaotong University
2022-2024

Sichuan Institute of Building Research
2022-2024

Liaoning Normal University
2022-2024

Xihua University
2024

Xuzhou Medical College
2023

University of Chinese Academy of Sciences
2023

Institute of High Energy Physics
2023

Soochow University
2021

In the complex and harsh working environment of wind turbines, horizontal axis turbine blade is increasingly confronted with issue surface roughening. It leads to a decrease instability in output power turbine. Vortex generator have emerged as potential solution this problem by regulating flow patterns on surface. This research focuses exploring impact vortex aerodynamic performance blades under rough wall condition tunnel experiment computational fluid dynamics simulation. important improve...

10.3390/jmse13030397 article EN cc-by Journal of Marine Science and Engineering 2025-02-21

A cost-effective approach is urgently needed to utilize molybdenum tailings (MoT), a mining byproduct with rising output. This study explored the preparation of collaborative fly ash (FA) geopolymers (MFG) from mechanically activated MoT and FA raw materials. Orthogonal experiments investigated impacts various parameters on compressive strengths MFG. The macroscopic properties MFG different mixture ratios were evaluated. microstructures components characterized using methods. Fractal...

10.1016/j.cscm.2024.e03608 article EN cc-by-nc-nd Case Studies in Construction Materials 2024-08-06

Major contributions of this study are to reveal mechanism SF dosage on setting time cement paste, rheological, mechanical, and microstructure properties mortar with SCM nano-silica, obtain optimal mix proportion shotcrete mortar.

10.1039/d3ra02635c article EN cc-by-nc RSC Advances 2023-01-01

The flow behaviors of molten Al alloy in sand mould cavity with varied gating system were simulated under vacuum counter-pressure casting and the ingate velocity was predicted using a software package. At same process conditions, investigated electrode contact method. comparison between results shows that good agreement is achieved. exceeding critical large deviation are detected during filling withⅠtypes system, resulting turbulent behavior. Whereas, take on stable pattern other cavity,...

10.4028/www.scientific.net/amr.129-131.189 article EN Advanced materials research 2010-08-11

The aerodynamic performance of wind turbine airfoils is crucial for the efficiency and reliability energy systems, with leading-edge roughness significantly impacting blade performance. This study conducts numerical simulations on DU 00-W-401 airfoil to investigate effects roughness. Results reveal that rough exhibits a distinctive “N”-shaped lift coefficient curve. formation mechanism this nonlinear curve primarily attributed development trailing-edge separation vortex variations in adverse...

10.3390/jmse12091588 article EN cc-by Journal of Marine Science and Engineering 2024-09-08

During vacuum counter-pressure casting, the vacuumization is an important stage for thin-wall and complicated aluminum alloy castings. Through testing analyzing numbers of pinhole grade samples under different degree, effect degree on counter- pressure casting molten studied. The results indicate has greater in vacuumizing process. smaller is, more are, higher is. Therefore, when small, appears easily. So doesn’t choose too but castings, big either. Appropriate from 20 KPa to 40 KPa.

10.4028/www.scientific.net/amm.278-280.381 article EN Applied Mechanics and Materials 2013-01-01
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