Zhang Huizhi, Liu Jifeng, Yue Yang, Cui Xiuqin, Lian Yuezong
College of Architecture and Civil Engineering, Sanming University, Sanming 365004, China.
Key Laboratory of Engineering Materials & Structure Reinforcement (Sanming University), Fujian Province University, Sanming 365004, China.
Materials (Basel). 2020 Feb 14;13(4):863. doi: 10.3390/ma13040863.
In order to discuss the load capacity and displacement of masonry constructed with recycled concrete and self-insulation blocks, one type of 10.6 MPa compressive strength block and three kinds of mortar with M15, M10, and M5 compressive strengths are selected. The constitutive model and corresponding parameters selection of different materials in the ABAQUS numerical simulation are analyzed, and the numerical simulation analysis and experimental tests of the load capacity and displacement of masonry constructed with mortars of different strengths are carried out. The results show that masonry compression failure is controlled by the mortar or block that has the lower compressive strength. The displacement of masonry increases with the mortar compressive strength increase, and the higher mortar compressive strength is beneficial for improving the load capacity and displacement of masonry. Reasonable selection of the constitutive model and parameters will help to obtain reasonable results for the ABAQUS numerical simulation. Construction quality and loading method will affect the load capacity and displacement of the masonry. The above conclusion can provide reference for the engineering application of recycled concrete and self-insulation blocks.
为探讨再生混凝土自保温砌块砌体的承载能力和位移情况,选取了一种抗压强度为10.6MPa的砌块以及三种抗压强度分别为M15、M10和M5的砂浆。分析了ABAQUS数值模拟中不同材料的本构模型及相应参数选取,并对不同强度砂浆砌筑的砌体进行了承载能力和位移的数值模拟分析及试验测试。结果表明,砌体受压破坏由抗压强度较低的砂浆或砌块控制。砌体位移随砂浆抗压强度的增加而增大,较高的砂浆抗压强度有利于提高砌体的承载能力和位移。合理选择本构模型和参数有助于ABAQUS数值模拟得到合理结果。施工质量和加载方式会影响砌体的承载能力和位移。上述结论可为再生混凝土自保温砌块的工程应用提供参考。