Studying the Impact of Soil Stabilization Techniques on Rigid Pavement Joints Across Various Axle Loads

Asma Thamir Ibraheem, Hassan M. Mahdi M. Alddin
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Abstract

Rigid pavement slabs are erected on a prepared subgrade or foundation layer, providing a hard and continuous surface. Transverse joints made of dowel bars connect them, and longitudinal joints made of tie bars join them longitudinally. This study is an investigation of the impact of soil strength and concrete parameters on the effectiveness of dowel bars in rigid pavements. Moreover, three parameters were examined; California Bearing Ratio (CBR), concrete compressive strength and slab thickness. The analysis was conducted using the Ever FE program and focused on several axle configurations applied to the joint. The results indicate inverse association between the pavement slab thickness and the concrete strength, under the assumption of consistent soil strength. Moreover, an assortment of reduced shear forces on the dowel bars is seen when the soil strength values increase. It indicates that soil strength has a greater impact on the shear load of dowel bars compared to the qualities of concrete. Additionally, the type of axles used and the magnitude of soil strength were shown to have a significant effect on the shear load.
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研究不同轴荷载下土壤稳定技术对刚性路面接缝的影响
刚性路面板铺设在准备好的基层或基础层上,提供坚硬而连续的表面。横向接缝由锚杆连接,纵向接缝由拉杆连接。本研究调查了土壤强度和混凝土参数对刚性路面中锚杆有效性的影响。此外,还考察了三个参数:加州承载比(CBR)、混凝土抗压强度和板厚度。分析使用 Ever FE 程序进行,重点是应用于接缝的几种轴配置。结果表明,在土壤强度一致的假设条件下,路面板厚度与混凝土强度之间存在反比关系。此外,当土壤强度值增加时,镙杆上的剪切力也会减少。这表明,与混凝土的质量相比,土壤强度对镙杆剪切力的影响更大。此外,使用的轴类型和土壤强度的大小对剪切荷载也有显著影响。
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