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Experimental study and application of mechanical properties for the interface between cobblestone aggregate and mortar in concrete

机译:混凝土中鹅卵石骨料与砂浆界面的力学性能试验研究及应用

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摘要

The failure mechanism under the combined state of normal and shear stresses for the interface between cobblestone aggregate and mortar was investigated by testing the interfacial bond strength. It was revealed that the tensile bond strength of the interface between cobblestone aggregate and mortar was about half the tensile strength of the mortar, but the shear bond strength of the interface was close to the shear strength of the mortar. Moreover, the shear bond strength increased with increases in the normal stress when the normal stress was smaller than 60% of the compressive strength of the mortar, but it can be assumed that the shear bond strength decreases with increases in the normal stress if it was larger than 60% of the compressive strength of the mortar. The failure criterion for the interface under combined normal and shear stresses was established by regressing the experimental data. Finally, a two-dimensional mesoscopic mechanical model, in which the mechanical properties of the interface were described by the obtained bond strength and failure criterion, was used to simulate the fracture process of concrete. Verification of the simulation was performed by comparing the simulated results with those obtained from the tests, in which the aggregate roughness was similar to that in the interfacial experiment. It was found that, by using the mechanical properties of the interface in the numerical model, the behavior of concrete could be predicted to a reasonable degree of accuracy. The propagation of cracks and the failure modes of concrete can also be determined using the proposed numerical model.
机译:通过测试界面粘结强度,研究了在正应力和剪应力结合状态下鹅卵石骨料与砂浆界面的破坏机理。结果表明,鹅卵石骨料与砂浆之间的界面的抗拉强度约为砂浆抗拉强度的一半,但界面的抗剪强度接近于砂浆的抗剪强度。此外,当法向应力小于砂浆抗压强度的60%时,抗剪强度会随法向应力的增加而增加,但是可以认为,如果抗剪强度为正应力,则抗剪强度会随着法向应力的增加而降低。大于砂浆抗压强度的60%。通过对实验数据进行回归分析,建立了法向应力和剪应力共同作用下界面的破坏准则。最后,利用二维介观力学模型,通过所获得的粘结强度和破坏准则描述界面的力学性能,以模拟混凝土的断裂过程。通过将模拟结果与从测试中获得的结果进行比较,对模拟进行了验证,在该测试中,聚集体粗糙度与界面实验中的相似。发现,通过在数值模型中使用界面的机械性能,可以以合理的准确度预测混凝土的行为。裂缝的扩展和混凝土的破坏模式也可以使用所提出的数值模型来确定。

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