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首页> 外文期刊>Journal of Constructional Steel Research >Mechanical modeling of bolted T-stub connections under cyclic loads Part I: Stiffness Modeling
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Mechanical modeling of bolted T-stub connections under cyclic loads Part I: Stiffness Modeling

机译:循环载荷下T型螺栓连接的机械建模第一部分:刚度建模

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This paper deals with mechanical models which make it possible to reliably simulate the complete moment-rotation curves in the full-scale T-stub connections subjected to cyclic loads. The behavior of these bolted connections becomes complex because the various response mechanisms of individual connection components interact with one another and have influence on the overall rotational stiffness of the connection. Accordingly, the mechanical joint models are made up of individual T-stub components modeled as nonlinear springs. The behaviors of component members including tension bolt uplift, bending of the T-stub flange, elongation of the T-stem, relative slip deformation, and bearing deformation are reproduced by the multi-nonlinear stiffness models obtained from their force-deformation response mechanisms. These stiffness properties should be assigned into the component springs implemented into the joint element so as to numerically generate the behavior of full-scale connections with considerable accuracy. Thus, this part (Part 1) intends to focus on describing the stiffness models, which are based on the basic component spring theory, in an effort to provide insight into the behavior, failure modes, and ductility of T-stub components in the connection.
机译:本文研究了机械模型,该模型可以可靠地模拟承受周期性载荷的满量程T型短管接头中的完整力矩旋转曲线。这些螺栓连接的行为变得复杂,因为各个连接组件的各种响应机制相互影响,并影响连接的整体旋转刚度。因此,机械接头模型由建模为非线性弹簧的各个T型短管组件组成。通过从其力-变形响应机制获得的多非线性刚度模型,可以再现组成构件的行为,包括拉伸螺栓的抬升,T型短管法兰的弯曲,T型杆的伸长,相对滑动变形和轴承变形。这些刚度属性应分配给在关节元件中实现的组件弹簧,以便以数字方式以相当高的精度生成满量程连接的行为。因此,该部分(第1部分)旨在着重于描述基于基本构件弹簧理论的刚度模型,以期深入了解连接中T形桩构件的行为,破坏模式和延性。 。

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