温度变化对刚性路面混凝土板的影响

Anno Mahfuda, S. Siswosukarto, B. Suhendro
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引用次数: 0

摘要

本研究旨在评估刚性路面混凝土板内温度梯度的影响,并研究其与交通荷载和传热模式结合时的影响。刚性路面模型考虑了各向同性、均匀和线弹性方案来模拟材料的性能。采用Abaqus软件结合三维实体模型进行数值分析。交通荷载从现场调查中获得,而板的温度直接在现场测量。刚性板尺寸宽2.75 m,长5 m,板厚25 cm,混凝土规格41.33 MPa。结果表明,温度梯度对刚性路面混凝土板内应力发展有显著影响。观察到,白天温度梯度产生的应力高于夜间,其值达到MOR(破裂模量)。刚性路面在500C下的暴露倾向于产生2.395 MPa的主板应力,而由于交通荷载的作用产生了1.31 MPa的主板应力。两者综合作用时,混凝土板的最大主应力为3.322 MPa,接近MOR为83.34% fa。这些结果表明,路面能够承受来自温度梯度和交通荷载的应力,其比值小于1(1)。然而,对于缓解疲劳破坏而言,该比值过高,这降低了刚性路面的寿命质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Temperature Variations on Rigid Pavement Concrete Slabs
This research aims to assess the effect of temperature gradient developed within the concrete slab of rigid pavement, and to investigate its impact when incorporated with the traffic load, and the heat transfer pattern. The rigid pavement model considers an isotropic, uniform, and linear-elastic schemes to simulate the material properties. A numerical analysis approach was employed using Abaqus software incorporated with the 3D Solid model. The traffic loads were obtained from the field surveys, while the temperature of the slabs was measured directly on the site. The dimension of the rigid panel is 2.75 m in width, 5 m long, slab thickness of 25 cm, and concrete specification of 41.33 MPa. The results showed that the temperature gradient produced a significant impact on stress development within the concrete slab of rigid pavement. It was observed that the temperature gradient during the daytime generated higher stress than at night, with a value reaching the MOR (Modulus of Rupture). The exposure of the rigid pavement to 500C tends to produce a principle slab stress of 2.395 MPa, while 1.31 MPa was developed due to the traffic load. When the two factors were combined, the concrete slab acquired a maximum principle stress of 3.322 MPa, which is close to the MOR of 83.34% fa. These results showed that the pavement is capable of withstanding stress from temperature gradient and traffic load as indicated by the ratio of less than one (1). However, this ratio is high for fatigue failure mitigation purposes, and this reduces the quality of life of the rigid pavement.
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