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A cleaner polyurethane elastomer grouting material with high hardening strain for the fundamental rehabilitation: The comprehensive mechanical properties study

  • Hongyuan Fang
  • , Peng Zhao
  • , Chao Zhang*
  • , Wang Pan
  • , Zisen Yu
  • , Kun Cai
  • , Cuixia Wang
  • , Juan Wang
  • , Mingrui Du
  • , Wei He
  • , Ruitao Zhao
  • , Nan Deng
  • *Corresponding author for this work
  • School of Water Conservancy and Transportation
  • Henan Province
  • National Local Joint Engineering Laboratory of Major Infrastructure Testing and Rehabilitation Technology
  • Southern Institute of Infrastructure Testing and Rehabilitation Technology
  • State Key Laboratory of Hydraulic Engineering Simulation and Safety
  • Henan Provincial Communications Planning & Design Institute Co. Ltd.
  • Royal Melbourne Institute of Technology University
  • Ltd
  • Shanghai Tunnel Engineering Co., Ltd.
  • Ltd.

Research output: Contribution to journalArticlepeer-review

Abstract

Cement-based grouting materials have high compressive strengths, but they are brittle. The low strain burden limits their rehabilitation application in the high compressive strain engineering. A new cleaner polyurethane elastomer (PUE) grouting material with high hardening strain is proposed in this work to provide a better choice for the fundamental rehabilitation. The new grouting material is pollution-free and environmentally friendly, and it has very high strength in compression, tension, and shear tests. Moreover, compared with cement-based grouting materials, its ultimate strain is very high, e.g., greater than45% in compression and greater than 40% in tension. Furthermore, scanning electron microscopy (SEM) test is conducted to study the broken surface characterization and the fracture mechanisms for compression, tension, and torsional shear samples. The new PUE grouting material has a great potential application in rehabilitating a damaged structure of fundamental engineering.

Original languageEnglish
Article number125951
JournalConstruction and Building Materials
Volume318
DOIs
StatePublished - 7 Feb 2022
Externally publishedYes

Keywords

  • Broken surface
  • Grout
  • Mechanical properties
  • Polyurethane elastomer
  • Strain rate

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