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Investigation on cohesive zone model of bolted joint for water conveyance tunnel lining

机译:水输送隧洞衬砌螺栓接头凝聚区模型的研究

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摘要

Purpose The behavior of joints has a significant effect on the stability of water conveyance tunnel. The purpose of this paper is to study the contact and friction at the joint of the tunneling segment lining and establish its contact friction model. At the same time, the stress and deformation characteristics at the joint of the segment under hydrostatic load are analyzed. Design/methodology/approach In this study, the contact and friction in a bolted joint are examined using shear testing. The feasibility of the proposed model is verified by a numerical simulation of tests and a theoretical analysis. Accordingly, the effect of joints on the lining is explored under internal hydrostatic loading. Findings The results show that the openings of tunnel segments in joints gradually expand from the positions of the inner and outer edges to the location of the bolt. Moreover, the stress concentration zone is formed at the bolt. Under hydraulic loading, the opening displacement at the joint increases as the water pressure increases; nevertheless, it does not exceed engineering requirements. When the water pressure of the tunnel lining joint reaches 0.5 MPa, the opening of the joint slowly increases. When the water pressure exceeds 0.7 MPa, the opening of the joint rapidly and significantly increases. Originality/value Contact and friction in a bolted joint were examined using shear testing. A cohesive zone model of bolted joints was proposed based on test results. The influence of joint behavior on the stability of water conveyance tunnel was studied.
机译:目的关节的行为对水输送隧道稳定性产生了显着影响。本文的目的是研究隧道段衬里的关节处的接触和摩擦,并建立其接触摩擦模型。同时,分析了静水压荷载率下的区段接头处的应力和变形特性。设计/方法/方法在本研究中,使用剪切测试检查螺栓接头中的接触和摩擦。通过测试的数值模拟和理论分析来验证所提出的模型的可行性。因此,在内部静水沉积物下探讨了关节对衬里的影响。结果表明,关节隧道区段的开口逐渐从内边缘和外边缘的位置扩展到螺栓的位置。此外,应力集中区形成在螺栓处。在液压加载下,随着水压的增加,关节处的开口位移增加;然而,它不超过工程要求。当隧道衬片的水压达到0.5MPa时,关节的开口缓慢增加。当水压超过0.7MPa时,关节的开口迅速并显着增加。使用剪切测试检查螺栓接头中的原始性/值接触和摩擦。提出了一种基于测试结果的螺栓接头的粘性区域模型。研究了联合行为对水输送隧道稳定性的影响。

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