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基于声发射参数的超材料对水泥基材料弯曲韧性影响研究

朱贵旺 秦磊 丁蔚健 李坪峰 孙明

硅酸盐通报2025,Vol.44Issue(2):424-433,10.
硅酸盐通报2025,Vol.44Issue(2):424-433,10.DOI:10.16552/j.cnki.issn1001-1625.20241113.001

基于声发射参数的超材料对水泥基材料弯曲韧性影响研究

Influences of Metamaterials on Bending Toughness of Cement-Based Materials Based on Acoustic Emission Parameters

朱贵旺 1秦磊 1丁蔚健 2李坪峰 3孙明3

作者信息

  • 1. 济南大学土木建筑学院,济南 250022
  • 2. 南方科技大学力学与航空航天工程系,深圳 518055
  • 3. 深圳信息职业技术学院交通与环境学院,深圳 518172
  • 折叠

摘要

Abstract

To investigate the feasibility of using novel reinforcing materials to replace fibers to improve the bending toughness of concrete,this study used 3D printing of polylactic acid(PLA)to prepare metamaterials and embedded them into cement-based materials.The crack evolution and mechanical properties of metamaterials and polypropylene(PP)fibers under bending load were studied by using three-point bending and acoustic emission measurement technology.The fracture behavior of metamaterials and PP fibers and the effects of metamaterials on the bending toughness of cement-based materials were analyzed from a microscopic perspective.The results show that the flexural strength of specimen embedded with metamaterials is 40.4%higher than that of specimen with PP fibers,and 116.8%higher than that of control group.Metamaterials greatly enhance the flexural strength of cement-based materials,changing the failure mode from a single crack mode to multiple crack modes,and brittle failure to plastic failure.PP fibers only increase the flexural strength of cement-based materials.The proportion of tensile cracks in the stable growth stage and instable cracking stage of metamaterials is significantly higher than that of PP fibers,and the toughness index is 16.75 times and 4.37 times that of PP fibers.

关键词

超材料/水泥基材料/弯曲韧性/多裂缝模式/塑性破坏/声发射/拉伸裂纹

Key words

metamaterial/cement-based material/bending toughness/multiple crack mode/plastic failure/acoustic emission/tensile crack

分类

建筑与水利

引用本文复制引用

朱贵旺,秦磊,丁蔚健,李坪峰,孙明..基于声发射参数的超材料对水泥基材料弯曲韧性影响研究[J].硅酸盐通报,2025,44(2):424-433,10.

基金项目

国家自然科学基金(52308271) (52308271)

深圳市高层次人才科研启动项目(RC2022-004) (RC2022-004)

硅酸盐通报

OA北大核心

1001-1625

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