您当前的位置:
首页 >
文章列表页 >
Effects of sulfur on triple shape memory properties of TPI/EVAC composites
Materials & Applications | 更新时间:2026-03-05
    • Effects of sulfur on triple shape memory properties of TPI/EVAC composites

    • In the field of shape memory materials, experts have prepared sulfur crosslinked TPI/EVAC composite materials by adding different amounts of sulfur, and explored the effect of sulfur content on the properties of the composite materials, providing new ideas for solving the problem of difficult balance between mechanical and shape memory properties of shape memory materials.
    • Engineering Plastics Application   Vol. 54, Issue 2, Pages: 62-70(2026)
    • DOI:10.3969/j.issn.1001-3539.2026.02.009    

      CLC: TQ324.8
    • Received:17 November 2025

      Revised:2025-12-31

      Accepted:14 January 2026

      Published:10 February 2026

    移动端阅览

  • XUE Caihong,LIANG Yurong,MA Ruize,et al. Effects of sulfur on triple shape memory properties of TPI/EVAC composites[J]. Engineering Plastics Application,2026,54(2):62-70. DOI: 10.3969/j.issn.1001-3539.2026.02.009.

  •  
  •  

0

Views

0

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

Selective distribution of β-nucleating agents constructed by in-situ micro-fiberization and its impacts on structure and properties of polypropylene
Plasma surface modification of carbon fiber and its effects on mechanical properties of vinyl ester resin composites
Effects of zinc stearate on ejection and properties of crosslinked polyethylene product with rotational molding
Preparation and properties of organosilicon-modified polyamides and its self-reinforcement materials
Mechanical and repeatable energy absorption performances of 4D-printed energy-absorbing structures with PETG

Related Author

CAI Peiling
LUO Shanshan
SUN Jing
ZHANG Xinggang
XIE Tianshuo
SHI Qi
YANG Ruirui
CAO Zejun

Related Institution

Guizhou Provincial People’s Hospital
Guizhou Material Technology Innovation Base
School of Materials Science and Engineering, Zhengzhou University
Luoyang Ship Materials Research Institute
Henan Key Laboratory of Advanced Nylon Materials and Applications
0