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首页> 外文期刊>Composites: mechanics, computations, applications >SHEAR STRENGTH COMPUTATION OF REINFORCED CONCRETE BEAMS STRENGTHENED WITH COMPOSITE MATERIALS
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SHEAR STRENGTH COMPUTATION OF REINFORCED CONCRETE BEAMS STRENGTHENED WITH COMPOSITE MATERIALS

机译:复合材料加固混凝土梁的抗剪强度计算

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摘要

Remodeling buildings often implies a modification of the mechanical behavior of the structural system, which may include the application of concentrated loads to beams that before have only been subjected to distributed loads. In the case of reinforced concrete beams, the new condition causes the beam to support a concentrated load in the cracked condition determined by the distributed loads that had been acting in the past. If the concentrated load is applied at or near the midspan of the beam, consequently, the shear demand reaches its maximum where the shear capacity is low. At and near the midspan, in fact, the cracks in the tension zone are vertical, as the stirrups are. Therefore, the truss mechanism provides the shear capacity with a nil contribution, since both the struts and ties are vertical. Fiber-reinforced polymer composites allow these beams to increase their shear strength, up to guaranteeing adequate safety. This paper presents a method for analyzing the mechanical behavior of beams with vertical cracks, strengthened with FRP reinforcement, subjected to concentrated loads. The method defines the direction of the fibers that the reinforcement has to be composed of and computes the shear strength of the beam.
机译:建筑物重塑通常意味着对结构系统的机械性能进行修改,其中可能包括将集中载荷施加到以前仅承受分散载荷的梁上。在钢筋混凝土梁的情况下,新条件使梁在过去由分布荷载决定的破裂条件下支撑集中荷载。因此,如果在梁的中跨处或附近施加集中载荷,则在剪切能力较低的情况下,剪切需求将达到最大值。实际上,在中跨处及附近,与箍筋一样,张紧区的裂缝是垂直的。因此,由于支杆和系杆都是垂直的,因此桁架机构的剪切力几乎为零。纤维增强的聚合物复合材料允许这些梁增加其剪切强度,从而确保足够的安全性。本文提出了一种用于分析在集中荷载作用下用FRP加固的具有垂直裂缝的梁的力学性能的方法。该方法定义了增强材料必须组成的纤维方向,并计算了梁的抗剪强度。

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