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首页> 外文期刊>Journal of structural engineering >Composite Shear Stud Strength at Early Concrete Ages
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Composite Shear Stud Strength at Early Concrete Ages

机译:混凝土早期的复合抗剪螺柱强度

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摘要

Composite action between a reinforced concrete deck and steel girders is usually achieved by making use of welded headed shear studs. The mechanics of shear studs embedded in mature concrete has been investigated extensively in the past. Current literature, however, lacks experimental evidence of steel-concrete interface behavior at early concrete ages. This information is useful in understanding the behavior of bridges during construction. Current testing methods are not suitable for determining the response of shear studs embedded in early-age concrete. In order to avoid this limitation, a new pushout test setup has been developed. A total of 24 pushout tests were performed at concrete ages ranging from 4 h to 28 days. Test results were used to develop load-slip curves and strength expressions. Furthermore, the variation of concrete properties with time and the applicability of the existing code equations for predicting early-age concrete stiffness were examined. Test results revealed that shear transfer is achieved at very early concrete ages and rate of stiffness gain of concrete is greater than that of strength.
机译:钢筋混凝土甲板和钢梁之间的复合作用通常是通过使用焊接的带头抗剪螺柱来实现的。过去,对埋入成熟混凝土中的抗剪栓钉的力学进行了广泛的研究。然而,目前的文献缺乏早期混凝土时代钢-混凝土界面行为的实验证据。此信息对于理解桥梁在施工过程中的行为很有用。当前的测试方法不适用于确定埋在早期混凝土中的抗剪栓钉的响应。为了避免这种限制,已经开发了新的推出测试设置。在4 h至28天的具体年龄范围内共进行了24次推出测试。测试结果被用来绘制载荷滑移曲线和强度表达式。此外,研究了混凝土性能随时间的变化以及现有代码方程用于预测早期混凝土刚度的适用性。试验结果表明,在很早的混凝土龄期就实现了剪切传递,并且混凝土的刚度增加速率大于强度。

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