World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
35
Citations
4241
World Ranking
2703
National Ranking
197

Overview

Jingwen Weng is affiliated with Imperial College London in the United Kingdom and has contributed extensively to research in engineering, focusing primarily on electrical and electronic engineering as well as automotive engineering. Their work encompasses multiple subfields, including mechanical engineering, safety, risk, reliability, and quality, and aerospace engineering.

The scientist's research centers on advanced battery technologies and materials, with a strong emphasis on phase change materials (PCM) and thermal management systems. The main topics covered in their work include:

  • Advanced Battery Technologies Research
  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials
  • Phase Change Materials Research
  • Combustion and Detonation Processes
  • Flame retardant materials and properties
  • Fire dynamics and safety research

Jingwen Weng has published in a variety of academic venues, with frequent publications appearing in:

  • Journal of Energy Storage
  • Applied Thermal Engineering
  • Process Safety and Environmental Protection
  • Batteries
  • Case Studies in Thermal Engineering

Their recent publications include:

  • Safety issue on PCM-based battery thermal management: Material thermal stability and system hazard mitigation, 2022, Energy Storage Materials
  • Mitigation effects on thermal runaway propagation of structure-enhanced phase change material modules with flame retardant additives, 2021, Energy
  • Innovative thermal management and thermal runaway suppression for battery module with flame retardant flexible composite phase change material, 2021, Journal of Cleaner Production
  • Phase Change Materials Application in Battery Thermal Management System: A Review, 2020, Materials
  • Impact of high-temperature environment on the optimal cycle rate of lithium-ion battery, 2020, Journal of Energy Storage

Jingwen Weng frequently collaborates with other researchers, including:

  • Jian Wang
  • Dongxu Ouyang
  • Mingyi Chen
  • Luyao Zhao
  • Zhirong Wang

The scientist's research contributions cover topics related to battery safety, thermal stability, and hazard mitigation, particularly through the use of phase change materials and flame retardant additives in battery systems. These areas integrate aspects of combustion, fire dynamics, and material properties, reflecting a multidisciplinary approach to safety and efficiency in battery technologies.

Best Publications

  • Safety Issue on PCM-based Battery Thermal Management: Material Thermal Stability and System Hazard Mitigation

    Unknown

  • A Review on the Thermal Hazards of the Lithium-Ion Battery and the Corresponding Countermeasures

    Dongxu Ouyang;Mingyi Chen;Que Huang;Jingwen Weng

  • Phase Change Materials Application in Battery Thermal Management System: A Review.

    Changcheng Liu;Dengji Xu;Jingwen Weng;Shujia Zhou

  • Alleviation of thermal runaway propagation in thermal management modules using aerogel felt coupled with flame-retarded phase change material

    Jingwen Weng;Jingwen Weng;Dongxu Ouyang;Xiaoqing Yang;Mingyi Chen

  • Investigation of a commercial lithium-ion battery under overcharge/over-discharge failure conditions

    Dongxu Ouyang;Mingyi Chen;Jiahao Liu;Ruichao Wei

  • Optimization of the internal fin in a phase-change-material module for battery thermal management

    Jingwen Weng;Jingwen Weng;Dongxu Ouyang;Xiaoqing Yang;Mingyi Chen

  • Thermal performance of PCM and branch-structured fins for cylindrical power battery in a high-temperature environment

    Jingwen Weng;Yaping He;Dongxu Ouyang;Xiaoqing Yang

  • Optimization of the detailed factors in a phase-change-material module for battery thermal management

    Jingwen Weng;Xiaoqing Yang;Guoqing Zhang;Dongxu Ouyang

  • Impact of high-temperature environment on the optimal cycle rate of lithium-ion battery

    Dongxu Ouyang;Jingwen Weng;Mingyi Chen;Jian Wang

  • Environmental pressure effects on thermal runaway and fire behaviors of lithium-ion battery with different cathodes and state of charge

    Mingyi Chen;Dongxu Ouyang;Jingwen Weng;Jiahao Liu

  • Innovative thermal management and thermal runaway suppression for battery module with flame retardant flexible composite phase change material

    Qiqiu Huang;Xinxi Li;Guoqing Zhang;Jingwen Weng

  • Mitigation effects on thermal runaway propagation of structure-enhanced phase change material modules with flame retardant additives

    Jingwen Weng;Jingwen Weng;Changren Xiao;Dongxu Ouyang;Xiaoqing Yang

  • An Experimental Study on the Thermal Failure Propagation in Lithium-Ion Battery Pack

    Dongxu Ouyang;Jiahao Liu;Mingyi Chen;Jingwen Weng

  • Research progress of enhancing battery safety with phase change materials

    Unknown

  • Alleviation on battery thermal runaway propagation: Effects of oxygen level and dilution gas

    Jingwen Weng;Dongxu Ouyang;Yanhui Liu;Mingyi Chen

  • An energy-saving battery thermal management strategy coupling tubular phase-change-material with dynamic liquid cooling under different ambient temperatures

    Unknown

  • Machine learning assisted advanced battery thermal management system: A state-of-the-art review

    Unknown

  • Honeycomb-inspired design of a thermal management module and its mitigation effect on thermal runaway propagation

    Jingwen Weng;Jingwen Weng;Yaping He;Dongxu Ouyang;Xiaoqing Yang

  • Comparative study on the transversal/lengthwise thermal failure propagation and heating position effect of lithium-ion batteries

    Jingwen Weng;Xiaoqing Yang;Dongxu Ouyang;Mingyi Chen

  • Influence of low temperature conditions on lithium-ion batteries and the application of an insulation material

    Dongxu Ouyang;Yaping He;Jingwen Weng;Jiahao Liu

  • Experimental study on thermal behavior of PCM-module coupled with various cooling strategies under different temperatures and protocols

    Jingwen Weng;Jingwen Weng;Dongxu Ouyang;Xiaoqing Yang;Mingyi Chen

  • Thermal Failure Propagation in Lithium-Ion Battery Modules with Various Shapes

    Dongxu Ouyang;Jiahao Liu;Mingyi Chen;Jingwen Weng

  • A large-scale experimental study on the thermal failure propagation behaviors of primary lithium batteries

    Mingyi Chen;Jiahao Liu;Dongxu Ouyang;Jingwen Weng

  • Fireball modeling and thermal hazards analysis of leaked 1,1-difluoroethane in fluorine chemical industry based on FDS

    Mingyi Chen;Haihang Li;Pan Li;Dongxu Ouyang

  • Investigation on Smoke Flow in Stairwells induced by an Adjacent Compartment Fire in High Rise Buildings

    Jun Zhang;Jingwen Weng;Tiannian Zhou;Dongxu Ouyang

Frequent Co-Authors

Dongxu Ouyang
Dongxu Ouyang University of Science and Technology of China
Guoqing Zhang
Guoqing Zhang Guangdong University of Technology
Xiao-Qing Yang
Xiao-Qing Yang Brookhaven National Laboratory
Richard K.K. Yuen
Richard K.K. Yuen City University of Hong Kong

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring related online degrees can broaden your career opportunities beyond mechanical and aerospace engineering. Programs such as speech-language pathology (SLP) offer alternative but complementary fields, especially for those interested in healthcare technology and human-machine interaction.

When considering these programs, it's important to understand the slp acceptance rate, which varies by school and can impact your chances of admission. For students seeking less competitive options, looking into the easiest slp masters to get into provides insight into programs with more accessible entry requirements.

Cost is another key factor. Understanding the cost of online speech pathology degree programs helps in budgeting and comparing different offerings. Additionally, veterans can benefit from specialized resources and support, making it worthwhile to explore veteran friendly online speech pathology degree options.

These online degree pathways provide flexible, accessible opportunities to expand your skillset and career prospects in a rapidly evolving job market.

Best Scientists Citing Jingwen Weng

Trending Scientists

Recently Published Articles