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Effect of roughness on interface shear behavior of sand with steel and concrete surface

机译:粗糙度对砂在钢和混凝土表面的界面剪切行为的影响

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The present study evaluates the interface shear strength between sand and different construction materials, namely steel and concrete, using direct shear test apparatus. The influence of surface roughness, mean size of sand particles, relative density of sand and size of the direct shear box on the interface shear behavior of sand with steel and concrete has been investigated. Test results show that the surface roughness of the construction materials significantly influences the interface shear strength. The peak and residual interface friction angles increase rapidly up to a particular value of surface roughness (critical surface roughness), beyond which the effect becomes negligible. At critical surface roughness, the peak and residual friction angles of the interfaces are 85-92% of the peak and residual internal friction angles of the sand. The particle size of sand (for morphologically identical sands) significantly influences the value of critical surface roughness. For the different roughness considered in the present study, both the peak and residual interaction coefficients lie in the range of 0.3-1. Moreover, the peak and residual interaction coefficients for all the interfaces considered are nearly identical, irrespective of the size of the direct shear box. The constitutive modeling of different interfaces followed the experimental investigation and it successfully predicted the pre-peak, peak and post peak interface shear response with reasonable accuracy. Moreover, the predicted stress-displacement relationship of different interfaces is in good agreement with the experimental results. The findings of the present study may also be applicable to other non-yielding interfaces having a similar range of roughness and sand properties.
机译:本研究使用直接剪切试验仪评估了砂与不同建筑材料(即钢和混凝土)之间的界面剪切强度。研究了表面粗糙度,砂粒平均尺寸,砂的相对密度和直接剪切箱的尺寸对砂与钢和混凝土的界面剪切行为的影响。测试结果表明,建筑材料的表面粗糙度会显着影响界面抗剪强度。峰值和残余界面摩擦角迅速增加,直至达到表面粗糙度(临界表面粗糙度)的特定值,超过该值,该影响可忽略不计。在临界表面粗糙度下,界面的峰值和残余摩擦角为砂子的峰值和残余内摩擦角的85-92%。沙粒(对于形态相同的沙粒)的粒径会显着影响临界表面粗糙度的值。对于本研究中考虑的不同粗糙度,峰值和残余相互作用系数均在0.3-1的范围内。此外,与直接剪切箱的尺寸无关,所考虑的所有界面的峰值和残余相互作用系数几乎相同。通过对不同界面的本构模型进行实验研究,成功地以合理的精度预测了峰前,峰和峰后的界面剪切响应。而且,预测的不同界面应力-位移关系与实验结果吻合良好。本研究的发现也可能适用于具有相似范围的粗糙度和砂性的其他非屈服界面。

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