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Prediction of Strength and Shear Distortion in R/C Beam-Column Joints

机译:R / C光束柱关节中的强度和剪切变形预测

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The behavior of beam-column connections in R/C frame structures has been extensively studied since the 1960's. These studies have served as the basis for design guidelines for R/C joints, in which detailing requirements and stress limits are given to control damage and deterioration of strength and stiffness in the connections. However, no particular attention is paid to the deformation in the joint region and its relation to the connection strength. In this paper a model is presented to evaluate the shear strength of R/C joints for various levels of joint shear distortion. The joint model is based on the state of plane strains in the connection through the development of a ratio between the joint principal strains, which was determined from experimental results. Based on the joint model, stress limits are proposed for interior and exterior joints for a shear distortion of 1%. These limits are similar to those recommended by ACl-ASCE Committee 352 for exterior connections. However, they are lower than those recommended for interior joints. The detrimental effect of eccentricity on joint strength is also estimated. Further analyses are required to fully quantify the effect of joint type and details on the principal strain ratio, and thus on joint strength.
机译:自1960年代以来,R / C帧结构中的光束列连接的行为已被广泛研究。这些研究已经担任R / C关节设计指南的基础,其中详细说明要求和应力限制控制在连接中的强度和刚度的损伤和劣化。然而,没有特别注意联合区域的变形及其与连接强度的关系。在本文中,提出了一种模型,以评估R / C关节的剪切强度,用于各种关节剪切变形。联合模型基于通过在实验结果确定的联合主菌株之间的比率的连接中的平面菌株状态。基于接合模型,提出了用于内部和外部关节的应力限制,剪切变形为1%。这些限制与ACL-ASCE委员会352建议的外部连接的那些相似。然而,它们低于建议室内关节的那些。还估计了偏心偏心对关节强度的不利影响。需要进一步分析来完全量化关节类型和细节对主应变比的影响,从而完全取决于关节强度。

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