您当前的位置:
首页 >
文章列表页 >
Delamination recovery mechanism of dimethyl sulfoxide-induced swelling of carbon fiber laminated plates
Process Technology | 更新时间:2026-02-03
    • Delamination recovery mechanism of dimethyl sulfoxide-induced swelling of carbon fiber laminated plates

    • In the field of carbon fiber reinforced resin based composite material recycling, experts have successfully separated the laminated board into a single layer of fabric using the dimethyl sulfoxide swelling method, preserving the fiber length and structure, providing new ideas for the green recycling and high-value utilization of waste CFRP.
    • Engineering Plastics Application   Vol. 54, Issue 1, Pages: 81-91(2026)
    • DOI:10.3969/j.issn.1001-3539.2026.01.011    

      CLC: X705
    • Received:31 October 2025

      Revised:2025-11-25

      Accepted:28 November 2025

      Published:10 January 2026

    移动端阅览

  • ZHAO Yun,XING Mingfei,XU Wanting,et al. Delamination recovery mechanism of dimethyl sulfoxide-induced swelling of carbon fiber laminated plates[J]. Engineering Plastics Application,2026,54(1):81-91. DOI: 10.3969/j.issn.1001-3539.2026.01.011.

  •  
  •  

0

Views

4

下载量

0

CSCD

Alert me when the article has been cited
提交
Tools
Download
Export Citation
Share
Add to favorites
Add to my album

Related Articles

Study on Mechanical Properties of Textile Short Fiber Wastes Fiberboard
Finite-Element Modelling of the Delaminations Behavior of Composite Laminates Under Three-Point Bending Load
Adaptive filter based antilock braking control of electro-hydraulic system for electric vehicle
Accelerated model of swash-plate axial piston pump
Primary suspension stiffness testing of railway vehicle bogie

Related Author

Pan Hui
Zhang Haiquan
Shi Jianwei
Zhang Yanfei
Du Ruikui
Zhao Guizhe
Liu Yaqing

Related Institution

Key Laboratory of Eco-Textile of Education, Jiangnan University, Wuxi
2.Shool of Materials Science and Engineering of North University of China, Taiyuan
Research Center for Engineering Technology of Polymeric Composites of Shanxi Province, North University of China, Taiyuan
0