嵌入
有限元法
结构工程
张力(地质)
极限抗拉强度
计算机科学
桥(图论)
应变率
材料科学
工程类
复合材料
医学
内科学
作者
Quoc To Bao,Kihak Lee,Hyoseo An,Do Hyung Lee,Jiuk Shin
标识
DOI:10.1038/s41598-023-44510-y
摘要
Abstract Cast-in-place anchors are being increasingly used in many applications including building construction, bridge, and power plants. The anchorage to concrete systems are subjected to tensile, shear and combined loads from a variety of loading circumstances including static, dynamic, and shock loading. Despite extensive studies on these systems, reliable numerical models for predicting the behavior of these anchors are still limited. Therefore, this paper investigated the tensile behavior of cast-in-place anchorage to concrete systems, to propose an effective model for reproducing anchorage behavior using finite element (FE) methods. Experiments and code-based models for the anchorage system in tension were used to evaluate the numerical models for cast-in-place anchors in concrete, and the most suitable model, with advantages in accuracy and saving analysis time, was chosen. Finally, the FE model was used to study the tensile capacity and related dynamic increase factor for various strain rates, anchor diameters, and embedment depths.
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