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On the Welding of Vitrimers: Chemistry, Mechanics and Applications

  • Qian Shi
  • , Chenyu Jin
  • , Zhiqiang Chen
  • , Le An
  • , Tiejun Wang
  • Xi'an Jiaotong University

Research output: Contribution to journalReview articlepeer-review

87 Scopus citations

Abstract

Linear chains in thermoplastics make them relatively weak in performance but inherently weldable and recyclable. By contrast, thermosets with permanently crosslinked networks possess outstanding mechanical performance, thermal, and chemical stability, but are unweldable and unrecyclable. In the last decade, a kind of thermoplastics-like thermosets termed as vitrimer has been developed with extensive applications, in which welding of vitrimers plays a central and fundamental role. Herein, we present the current state of the art of the welding of vitrimers and discuss the welding of vitrimers from a broad picture of chemistry, physics, and mechanics: i) chemistry and mechanics of the welding of vitrimers; ii) applicability of the mechanical assessment methods for the welding of vitrimers; iii) design principles and implement strategies to the welding of vitrimers; iv) effects of welding conditions on the welding strength and toughness; and v) applications to the adhesion of chemically inert materials. Finally, advantages, challenges, and open questions to the welding of vitrimers are highlighted, and future opportunities in chemistry, mechanics, design of tough welding, artificial intelligence aided programming of welding technology, mechanical assessment standard, and so on are discussed. The development of vitrimer welding would fuse disciplines and make transformative impact in polymer industry.

Original languageEnglish
Article number2300288
JournalAdvanced Functional Materials
Volume33
Issue number36
DOIs
StatePublished - 5 Sep 2023

Keywords

  • adhesion
  • artificial intelligence
  • dynamic covalent bonds
  • vitrimers
  • welding

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