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Functionally Graded Concrete Structure

In: Sustainable Construction and Building Materials

Author

Listed:
  • Ning Zhang
  • Aizhong Lu
  • Xuguang Chen

Abstract

By inverse analysis, the concept, functionally gradient, is introduced into thick-walled lining to improve the supporting performance. Theoretical results show that for two linings with the same sizes, an ideal functionally graded lining (IFGL) has higher elastic ultimate bearing capacity than a traditional single-layered lining (TSL). But the IFGL model requires that the Young's modulus should be a continuously monotonically increasing function in the radial direction, which, obviously, cannot be achieved currently for the concrete materials. In order to apply this idea to real lining, we use a simplest multilayered lining, a double-layered functionally graded lining (DFGL), as an approximate simulation of the IFGL. Then, we carried out elastoplastic analysis on IDFL and DFGL and model test on DFGL to assess the support performance. Results of elastoplastic analysis show that the elastic ultimate bearing capacities of both the IDFL and DFGL are higher than the traditional single-layered lining. Model tests also verify the conclusion.

Suggested Citation

  • Ning Zhang & Aizhong Lu & Xuguang Chen, 2019. "Functionally Graded Concrete Structure," Chapters, in: Sayed Hemeda (ed.), Sustainable Construction and Building Materials, IntechOpen.
  • Handle: RePEc:ito:pchaps:164925
    DOI: 10.5772/intechopen.81435
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    More about this item

    Keywords

    functionally graded structure; concrete; rock support; lining;
    All these keywords.

    JEL classification:

    • L70 - Industrial Organization - - Industry Studies: Primary Products and Construction - - - General

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