磷酸镁水泥混凝土-普通混凝土界面直剪性能试验研究

EXPERIMENTAL STUDY ON INTERFACIAL DIRECT SHEAR PERFORMANCE BETWEEN MAGNESIUM PHOSPHATE CEMENT CONCRETE AND NORMAL CONCRETE

  • 摘要: 为探究磷酸镁水泥(MPC)混凝土与普通混凝土(NC)界面直剪性能与破坏机理,设计了7个MPC混凝土-NC试件进行直剪试验,并结合数字图像相关(DIC)测量技术,分析了界面处理方式与钢纤维对界面破坏形态、直剪承载力及剪切-滑移的影响规律,并对比了试验结果与既有规范计算值。研究结果表明:在剪切荷载作用下,试件破坏形态均为界面剪切破坏,未植筋试件为脆性破坏,植筋试件为塑性破坏;与凿毛界面相比,凹槽、键槽、植筋试件的直剪强度显著提高,剪切滑移性能得到改善,凹槽试件直剪强度最高;钢纤维的掺入增强了混凝土界面粘结力,延缓了裂纹扩展,并且显著提高了界面抗剪强度;基于试验数据,在既有规范基础上提出了MPC混凝土-NC界面直剪承载能力计算公式,计算值与试验值吻合良好,验证了该文提出的计算公式的有效性和准确性。

     

    Abstract: In order to explore the direct shear performance and failure mechanism of the interface between magnesium phosphate cement (MPC) concrete and normal concrete (NC), seven MPC concrete-NC specimens are designed for the direct shear test. Combined with digital image correlation (DIC) measurement technology, analyzing the effects of interface treatment methods and steel fiber on interface failure mode, on direct shear bearing capacity and shear-slip, and comparing the test results with the calculated values of existing specifications. The results show that under the action of shear loading, the failure modes of the specimens are interface shear failure, the unreinforced specimens are brittle failure, and the reinforced specimens are plastic failure. Compared with the chiseling interface, the direct shear strength of the groove, of keyway and of planting bar specimens is significantly improved, and the shear slip performance is perfected. The direct shear strength of the groove specimen is the highest. The incorporation of steel fiber enhances the interfacial adhesion of concrete, delays the crack propagation, and significantly improves the interfacial shear strength. Based on the test data, the calculation formula for the direct shear bearing capacity of MPC concrete-NC interface is proposed on the basis of existing specifications. The calculated values are in a good agreement with the experimental ones, which verifies the validity and accuracy of the calculation formula proposed.

     

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