Study on the Stiffness and Deformation Performance of Self-Compacting Concrete Prestressed Beams with Mechanized Sand

Yankun Zhang, Zhuoran Zhang, Shiqin He, Dongya Qian
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Abstract

There are more studies on self-compacting concrete but less on self-compacting prestressed concrete members using mechanism sand. In this paper, the stiffness and deformation performance of the test members are investigated by observing the mid-span deflection and concrete strains in different cross-sections during and after the tensioning process of 19.2-m mechanism sand self-compacting prestressed concrete beams. The test observation results are processed, and the member deflection is calculated according to the Code JTG D62-2004. Then the deflection is calculated by regressing the curvature curve of the secondary beam section through the concrete strain observations of different sections. Then the finite element model simulation is carried out to calculate the mid-span invert arch value after the tensioning process. The results are in good agreement with the actual test. Finally, the four results were compared according to the actual measured deflection values of the test. Finally, it is concluded that there are some differences between the short-term deflection calculation of the mechanism and self-compacting prestressed members using the "JTG D62-2004" and the measured results, but still can meet the design requirements the mechanism sand self-compacting prestressed members.
机械化砂自密实预应力混凝土梁刚度及变形性能研究
自密实混凝土的研究较多,而采用机制砂的自密实预应力混凝土构件的研究较少。本文通过对19.2 m机制砂自密实预应力混凝土梁张拉过程中及张拉后不同截面跨中挠度及混凝土应变的观测,研究了试件的刚度和变形性能。对试验观测结果进行处理,并按JTG D62-2004规范计算构件挠度。然后通过不同截面的混凝土应变观测,通过回归二次梁截面的曲率曲线来计算挠度。然后进行有限元模型仿真,计算张拉过程后的跨中仰拱值。计算结果与实际试验结果吻合较好。最后,根据试验实际测得的挠度值对四种结果进行比较。最后得出结论:采用JTG D62-2004的机构与自密实预应力构件的短期挠度计算结果与实测结果存在一定差异,但仍能满足机构与自密实预应力构件的设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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