ZHOU Yuan-de, ZHANG Chu-han, JIN Feng. ANALYSIS OF CONCRETE FRACTURE WITH THREE-DIMENSIONAL ROTATING CRACK MODEL[J]. Engineering Mechanics, 2004, 21(5): 1-4,82.
Citation: ZHOU Yuan-de, ZHANG Chu-han, JIN Feng. ANALYSIS OF CONCRETE FRACTURE WITH THREE-DIMENSIONAL ROTATING CRACK MODEL[J]. Engineering Mechanics, 2004, 21(5): 1-4,82.

ANALYSIS OF CONCRETE FRACTURE WITH THREE-DIMENSIONAL ROTATING CRACK MODEL

More Information
  • Received Date: January 02, 2003
  • Revised Date: April 07, 2003
  • As a kind of quasi-brittle material, concrete exhibits strain-softening behavior after the formation of micro-cracks. Based on the blunt crack band theory proposed by Z.P. Bazant, a 3-D softening constitutive relationship of rotating crack model is formulated. This crack model is then implemented into a finite element program and used for 3-D concrete fracture analysis under complex loading conditions. Numerical simulation of the single-edge notched shear beam by this crack model is compared with the corresponding experimental results and the one by fixed crack model. It is demonstrated that the 3-D rotating crack model herein can give more objective results in the analysis of mixed-mode fracture for concrete.
  • Related Articles

    [1]JIN Jun-chao, SHE Cheng-xue, SHANG Peng-yang. A FINITE ELEMENT IMPLEMENTATION OF THE STRAIN-SOFTENING MODEL BASED ON THE HOEK-BROWN CRITERION[J]. Engineering Mechanics, 2020, 37(1): 43-52. DOI: 10.6052/j.issn.1000-4750.2019.01.0035
    [2]GUAN Shao-yu, BAI Yong-tao. Stability analysis of tunnel structures based on the twin-shear unified strength theory with strain-softening effect[J]. Engineering Mechanics, 2018, 35(S1): 205-211. DOI: 10.6052/j.issn.1000-4750.2017.05.S041
    [3]WU Tao, WEI Hui, LIU Xi. SHEAR ANALYSIS OF DEEP FLEXURAL MEMBER BASED ON CRACK BAND THEORY[J]. Engineering Mechanics, 2017, 34(6): 92-100. DOI: 10.6052/j.issn.1000-4750.2015.12.0983
    [4]QING Long-bang, LI Qing-bin, GUAN Jun-feng, WANG Juan. STUDY OF CONCRETE FRACTURE PROCESS ZONE BASED ON FICTITIOUS CRACK MODEL[J]. Engineering Mechanics, 2012, 29(9): 112-116,132. DOI: 10.6052/j.issn.1000-4750.2011.01.0016
    [5]LUO Zhan-you, XIA Jian-zhong, GONG Xiao-nan. UNIFIED SOLUTION FOR EXPANSION OF CYLINDRICAL CAVITY IN STRAIN-SOFTENING MATERIALS WITH DIFFERENT ELASTIC MODULI IN TENSION AND COMPRESSION[J]. Engineering Mechanics, 2008, 25(9): 79-084,.
    [6]WANG Xue-bin. ANALYSIS OF LOCALIZED DEFORMATION IN SHEAR BAND CONSIDERING DEGRADED STIFFNESS BASED ON GRADIENT-DEPENDENT PLASTICITY[J]. Engineering Mechanics, 2006, 23(10): 101-106.
    [7]WANG Xue-bin, LIU Jie, PAN Yi-shan. THREE-POINT BENDING MODEL CONSIDERING STRAIN GRADIENT EFFECTS ——PART II: DISPLACEMENT AND ROTATION OF LOCALIZED BAND[J]. Engineering Mechanics, 2005, 22(1): 63-68.
    [8]FAN Wen, YU Mao-hong, CHEN Li-wei. AN ANALYTIC SOULUTION OF ELASTO-PLASTIC PRESSURE TUNNEL CONSIDERING MATERIAL SOFTENING AND DILATANCY[J]. Engineering Mechanics, 2004, 21(5): 16-24.
    [9]WANG Xiao-hong, WANG Jia-lai, LIANG Fa-yun. ANALYTICAL SOLUTION TO EXPANSION OF CAWITY IN STRAIN-SOFTENING MATERIALS[J]. Engineering Mechanics, 1999, 16(5): 71-76.
    [10]Duan Shujin, Li Yunfeng, Li Yanjun, Wang Shubao, Peng Chengshan, Zhang Meiwen. DETERMINING CONCRETE STRAIN-SOFTENING CURVE BY THE J-INTEGRAL METHOD[J]. Engineering Mechanics, 1998, 15(4): 108-115.

Catalog

    Article Metrics

    Article views (810) PDF downloads (385) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return