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Dive into the research topics where Wenwei Wang is active.

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Featured researches published by Wenwei Wang.


Journal of Chemistry | 2015

Aging Mechanisms of Electrode Materials in Lithium-Ion Batteries for Electric Vehicles

Cheng Lin; Aihua Tang; Hao Mu; Wenwei Wang; Chun Wang

Electrode material aging leads to a decrease in capacity and/or a rise in resistance of the whole cell and thus can dramatically affect the performance of lithium-ion batteries. Furthermore, the aging phenomena are extremely complicated to describe due to the coupling of various factors. In this review, we give an interpretation of capacity/power fading of electrode-oriented aging mechanisms under cycling and various storage conditions for metallic oxide-based cathodes and carbon-based anodes. For the cathode of lithium-ion batteries, the mechanical stress and strain resulting from the lithium ions insertion and extraction predominantly lead to structural disordering. Another important aging mechanism is the metal dissolution from the cathode and the subsequent deposition on the anode. For the anode, the main aging mechanisms are the loss of recyclable lithium ions caused by the formation and increasing growth of a solid electrolyte interphase (SEI) and the mechanical fatigue caused by the diffusion-induced stress on the carbon anode particles. Additionally, electrode aging largely depends on the electrochemical behaviour under cycling and storage conditions and results from both structural/morphological changes and side reactions aggravated by decomposition products and protic impurities in the electrolyte.


Applied Energy | 2017

Clay-like mechanical properties for the jellyroll of cylindrical Lithium-ion cells

Wenwei Wang; Sheng Yang; Cheng Lin


Energy Procedia | 2015

A Review of SOH Estimation Methods in Lithium-ion Batteries for Electric Vehicle Applications

Cheng Lin; Aihua Tang; Wenwei Wang


Energy Procedia | 2016

Clay-like Mechanical Properties of Components for the Jellyroll of Cylindrical Lithium-ion Cells☆

Wenwei Wang; Sheng Yang; Cheng Lin


Energy Procedia | 2016

The Clay-like Mechanics Model of Cylindrical Lithium-Ion Battery Cells under Radial Compression☆

Wenwei Wang; Sheng Yang; Fengchun Sun; QuanQing Yu


IEEE Access | 2018

Vibration Control Method for an Electric City Bus Driven by a Dual Motor Coaxial Series Drive System Based on Model Predictive Control

Wenwei Wang; Yiding Li; Junhui Shi; Cheng Lin


IEEE Access | 2018

State of Charge Dependent Constitutive Model of the Jellyroll of Cylindrical Lithium-Ion Cells

Wenwei Wang; Sheng Yang; Cheng Lin; Yiding Li


Energy Procedia | 2018

Mechanical and electrical response of cylindrical Lithium-ion cells at various State of Charge

Wenwei Wang; Sheng Yang; Cheng Lin; Yiding Li


Energy Procedia | 2018

Optimization of a dual-motor coupled powertrain energy management strategy for a battery electric bus

Wenwei Wang; Junhui Shi; Zhipeng Zhang; Cheng Lin


Energy Procedia | 2016

A Stochastic Model Predictive Control Strategy for Extended Range Electric Vehicle

Wenwei Wang; Quanqing Yu; Dongjiang Cao; Cheng Lin; Fengchun Sun

Collaboration


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Cheng Lin

Beijing Institute of Technology

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Sheng Yang

Beijing Institute of Technology

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Yiding Li

Beijing Institute of Technology

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Fengchun Sun

Beijing Institute of Technology

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Quanqing Yu

Beijing Institute of Technology

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Dongjiang Cao

Beijing Institute of Technology

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Hao Mu

Beijing Institute of Technology

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QuanQing Yu

Beijing Institute of Technology

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