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The calculation of anchors in steel-concrete overlaps with precast slab

机译:钢-混凝土叠合板搭接中锚杆的计算

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Reinforced concrete floors and steel beams are widely used in buildings and structures for various purposes. Reinforced concrete overlaps can be cast-in or precast of hollow-core slabs. The most effective floors in which the concrete slab is located in the compressed area of cross-section, in steel beams in the tension zone, and shifting forces, arising between concrete slab and the steel beam, are perceived by anchors. Precast slabs in comparison with cast-in ones have less labor-intensive performance, the beam spacing is equal to the span of reinforced concrete slabs, there are no intermediate beams in such overlaps, that allows to reduce the floor thickness. The inclusion of precast in steel-concrete cross-section requires joints with steel beams, which requires using of special anchors. Anchor perceives shear forces and ensures the joint operation of the plate and the steel beam. In addition, for beams with narrow flange, the anchor device can provide the required width of the support slabs. The calculation of the attachment points of the anchors to the steel beam is carried out using three variants of calculation methods, which allow to determine the forces acting on the anchor. For practical application, a wire-element model has been proposed and managed to get forces in a steel beam, slab and anchors the width of the slab recommended by the standards should be included in the calculation model.
机译:钢筋混凝土地板和钢梁被广泛用于各种目的的建筑物和结构中。钢筋混凝土搭接可以浇铸或预制空心板。最有效的地板是混凝土板位于横截面的受压区域中,处于拉伸区域中的钢梁中,而锚固件可以感知混凝土板与钢梁之间产生的移动力。与预制板相比,预制板的劳动强度较低,梁间距等于钢筋混凝土板的跨度,在这种重叠中没有中间梁,从而可以减小地板厚度。在钢混凝土截面中包含预制件需要使用钢梁进行连接,这需要使用特殊的锚。锚可以感知剪切力,并确保板和钢梁的联合操作。另外,对于具有窄凸缘的梁,锚固装置可提供所需的支撑板宽度。锚杆与钢梁的连接点的计算是使用三种计算方法进行的,可以确定作用在锚杆上的力。对于实际应用,提出了一种线元模型,并设法将其获得的力施加到钢梁,板和锚中,标准中建议的板宽度应包含在计算模型中。

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