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Volume 55 Issue 3
Mar.  2025
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Article Contents
LI Lianxiang, ZHAO Shilei, ZHANG Julian, QIU Yefan, CHE Xiuxi, KONG Lingzhi. Thinking and Prospects of the Development of Fully-Recycled Retaining and Protection of Foundation Excavation Engineering[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(3): 211-222. doi: 10.3724/j.gyjzG23022605
Citation: LI Lianxiang, ZHAO Shilei, ZHANG Julian, QIU Yefan, CHE Xiuxi, KONG Lingzhi. Thinking and Prospects of the Development of Fully-Recycled Retaining and Protection of Foundation Excavation Engineering[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(3): 211-222. doi: 10.3724/j.gyjzG23022605

Thinking and Prospects of the Development of Fully-Recycled Retaining and Protection of Foundation Excavation Engineering

doi: 10.3724/j.gyjzG23022605
  • Received Date: 2023-02-26
    Available Online: 2025-06-07
  • Publish Date: 2025-03-20
  • The release of Technical Specification for Full Recycled Retaining and Protection of Foundation Excavations Engineering (T/CECS 1208—2022) marks the change of unsustainable development concepts such as waste, pollution and high carbon emission of temporary measures for foundation excavation supports. Starting from the origin of steel sheet piles, this paper systematically summarized and analyzed the development process, key research and main engineering application of fully-recycled support technology. The RMA effect of U-shaped steel plates, the cross-section advantage of cap-shaped steel sheet piles, and the expansion of HLC and PLC composite steel piles for fully-recycled retaining structures were introduced. This paper summarized the promotion of engineering demands for steel support technology, introducesd the progress of steel supports transformed from single members such as section steel and steel pipes to spatial systems, and explained how the steel supporting structures such as prestressed fish-bellied beams and string beams to provide a large space for excavation. It is deeply recognized that the construction and improvement of the recycling theory of standard steel members, the strength and stability of the unified theory of residual deformation and cross-section initial defects are the basic support for the fully-recycled support technology. In order to meet the requirements of high-quality development of foundation excavations, it is called for the developing a new type of enclosure steel in the future, promoting the combination of fully-recycled support structures and permanent supports of deep foundation excavations, and endowing standard steel components with automatic identification and intelligent construction capability. The current focus on assembly and recyclability in the industry should be promoted to the concrete actions of fully-recycled and recycling, and the important direction of the implementation of the new development concept in the foundation excavation engineering and the construction of the new pattern is revealed.
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