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Failure Criteria for Grouted Concrete Block Masonry under Biaxial Compression

机译:双轴压缩下注浆混凝土砌块砌体的破坏准则

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摘要

Grouted concrete block masonry (GCBM) exhibits distinct directional properties. By the phenomenological approach, totally 86 tests on 3 kinds of macroelement were conducted for different principal stress ratios under plane stress, and 4 standard specimens were tested in shear. The anisotropic failure criteria are obtained in terms of normalized principal stress space. Comparisons of failure curves for 3 kinds of macro-element are made and it is found that the biaxial compressive strength when the applied stress direction and the material axis coincide is much greater than when the applied stress is inclined to the material axis. By the failure criteria and coordinate transformation, the law relating strength to orientation is obtained. It shows that the degree of anisotropy is affected by the difference of applied stresses. It behaves strongly only when one principal stress predominates and gradually becomes weak as the difference between the two principal compressive stresses decreases. The masonry seems to be isotropic in equal biaxial compression. The work conducted in this paper provides a basis for further theoretical study of the behavior of GCBM under biaxial stress.
机译:水泥浆砌块砌体(GCBM)具有明显的方向性。通过现象学方法,在平面应力作用下,对三种宏观元素在不同主应力比下进行了86次试验,并在剪切下试验了4个标准试样。根据规范化的主应力空间获得各向异性破坏准则。比较了三种宏观单元的破坏曲线,发现当施加应力方向与材料轴重合时的双轴抗压强度远大于施加应力向材料轴倾斜时的双轴抗压强度。通过破坏准则和坐标变换,获得了强度与定向的定律。结果表明,各向异性程度受施加应力的差异影响。仅当一个主应力占优势时,它的作用才很强,而当两个主压应力之间的差减小时,它会逐渐变弱。在相同的双轴压缩下,砌体似乎是各向同性的。本文进行的工作为进一步研究双轴应力下的GCBM行为提供了基础。

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