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Experimental investigation on mechanical behavior of segmental joint under combined loading of compression-bending-shear

机译:压弯剪联合荷载作用下节理节点力学性能的实验研究

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摘要

The non-circular tunnels, for example the quasi-rectangular tunnel, may generate a considerable shear force at their shoulder joints owing to the geometry effect. To investigate the shear force effect on the mechanical behavior (e.g., capacity, deformation and duality) of the segment joint, a series of full-scale mechanical loading tests were conducted and reported in this paper. The loading scenarios include the combined axis force and moment scenario (N-M), and the combined axis force, moment and shear force (N-M-Q) scenario. Both the positive bending moment and negative bending moment are considered. DIC technique is also adopted to capture the detailed cracking process in the N-M-Q loading test. The test results reveal that the mechanical response of the segmental joint under both N-M and N-M-Q loading scenarios can be divided into three stages, which are separated by the initial joint opening and the initiation of cracks. The shear force would lead to a larger deformation (e.g., deflection, joint opening and rotational angle) before the failure but result in a brittle failure of the segment joint. Moreover, the shear force could reduce the moment bearing capacity under the positive moment loading condition while has little effect under the negative moment loading condition. These shear force effects are thought to be caused by the shear induced dislocation and inclined cracks.
机译:由于几何效应,非圆形隧道,例如准矩形隧道,可能在其肩关节处产生相当大的剪切力。为了研究剪切力对节段接头的机械性能(例如,容量,变形和对偶性)的影响,本文进行了一系列全面的机械载荷试验并进行了报道。加载方案包括组合的轴力和力矩方案(N-M),以及组合的轴力,力矩和剪切力(N-M-Q)方案。正弯矩和负弯矩都考虑在内。在N-M-Q加载测试中,还采用了DIC技术来捕获详细的破裂过程。测试结果表明,分段接头在N-M和N-M-Q载荷情况下的机械响应可分为三个阶段,这三个阶段由初始接头开裂和裂纹萌生分开。剪切力在破坏之前将导致较大的变形(例如,挠曲,接头打开和旋转角度),但是导致节段接头的脆性破坏。而且,剪切力会在正力矩加载条件下减小力矩承载力,而在负力矩加载条件下影响很小。这些剪切力效应被认为是由剪切引起的位错和倾斜裂纹引起的。

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