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Shear Capacity of C-Shaped and L-Shaped Angle Shear Connectors

机译:C形和L形角剪连接器的剪切能力

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摘要

This paper investigates the behaviour of C-shaped and L-shaped angle shear connectors embedded in solid concrete slabs. An effective finite element model is proposed to simulate the push out tests of these shear connectors that encompass nonlinear material behaviour, large displacement and damage plasticity. The finite element models are validated against test results. Parametric studies using this nonlinear model are performed to investigate the variations in concrete strength and connector dimensions. The finite element analyses also confirm the test results that increasing the length of shear connector increases their shear strength proportionately. It is observed that the maximum stress in L-shaped angle connectors takes place in the weld attachment to the beam, whereas in the C-shaped angle connectors, it is in the attached leg. The location of maximum concrete compressive damage is rendered in each case. Finally, a new equation for prediction of the shear capacity of C-shaped angle connectors is proposed.
机译:本文研究了嵌入混凝土实心板中的C形和L形角剪连接器的性能。提出了一个有效的有限元模型来模拟这些剪切连接器的推出测试,这些测试包含非线性材料的行为,大位移和破坏塑性。相对于测试结果验证了有限元模型。使用该非线性模型进行参数研究,以研究混凝土强度和连接器尺寸的变化。有限元分析也证实了测试结果,即增加剪切连接器的长度会成比例地增加其剪切强度。可以看出,L形角连接器的最大应力发生在梁的焊接处,而C形角连接器的最大应力发生在所连接的支腿中。在每种情况下,都会产生最大的混凝土压缩损坏的位置。最后,提出了预测C形角连接器剪切能力的新公式。

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