首页> 外文期刊>Journal of Composites for Construction >Response of Beam-To-Column Web Cleated Joints For FRP Pultruded Members
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Response of Beam-To-Column Web Cleated Joints For FRP Pultruded Members

机译:FRP拉挤构件梁到柱腹板连接节点的响应

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摘要

Physical testing is used to characterize the structural properties of beam-to-column joints, comprising pultruded fiber-reinforced polymer (FRP) H-shapes of depth 203 mm, connected by 128 mm-long web cleats and two M16 bolts per leg. Testing is performed on two batches of nominally identical specimens. One batch had web cleats of pultruded FRP and the other had structural steel. The structural behavior of the joints is based on their moment-rotation responses, failure modes, and serviceability vertical deflection limits. Joints with FRP cleats failed by delamination cracking at the top of the cleats, and when the cleats were of steel, the FRP failure occurred inside the column members. Neither failure mode is reported in the design manuals from pultruders. At the onset of the FRP damage, it was found that the steel joints were twice as stiff as the FRP joints. On the basis of a characteristic (damage) rotation, calculated in accordance with Eurocode 0, the serviceability deflection limits are established to be span/300 and span/650 for the joints with FRP and steel cleats, respectively. This finding suggests that appropriate deflection limits, in relation to cleated connections, should be proposed in manufactures' design manuals and relative design standards and design codes. Failure to address the serviceability, by the engineer of record, could lead to unreliable designs.
机译:物理测试用于表征梁对柱接头的结构性能,包括拉深203毫米的H型拉挤纤维增强聚合物(FRP),通过128毫米长的腹板夹板和每条腿两个M16螺栓连接。测试是在两批名义上相同的样本上进行的。一批装有拉挤玻璃钢的网状夹板,另一批装有结构钢。接头的结构行为基于它们的力矩旋转响应,破坏模式和可维修性垂直挠度极限。 FRP夹板的接头由于在夹板顶部的分层裂纹而破裂,当夹板为钢制时,FRP破坏发生在立柱构件内部。拉挤机的设计手册中均未报告两种故障模式。在FRP损坏开始时,发现钢制接头的刚度是FRP接头的两倍。根据根据欧洲规范0计算的特征(损伤)旋转,对于FRP和钢夹板的连接,适用性挠度极限分别设置为span / 300和span / 650。这一发现表明,应在制造商的设计手册以及相关的设计标准和设计规范中提出与固定连接有关的适当挠度极限。记录工程师未能解决可维护性问题,可能会导致设计不可靠。

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