首页> 外文期刊>Engineering Structures >Stiffness prediction of Mass Timber Panel-Concrete (MTPC) composite connection with inclined screws and a gap
【24h】

Stiffness prediction of Mass Timber Panel-Concrete (MTPC) composite connection with inclined screws and a gap

机译:倾斜螺钉和间隙的大板-混凝土(MTPC)复合连接的刚度预测

获取原文
获取原文并翻译 | 示例

摘要

An increasingly popular wood composite floor system consists of a Mass Timber Panel (MTP) connected to a concrete slab or topping with mechanical connectors such as Self-Tapping Screw (STS) with a sound insulation layer in between the MTP and concrete. Allowable floor span for this type of MTP-concrete composite system is often governed by serviceability performance requirements, such as deflection and vibration, which are directly dependent on the stiffness of the interlayer connection. Often tests are performed to characterize connection stiffness required for structural design. In lieu of testing, analytical models can be developed to calculate connection stiffness based on component properties. To that end, two analytical models were developed for solid and layered timber, for directly predicting the stiffness of a connection with inclined screws and an insulation layer. Usually, stiffness of laterally loaded connection is controlled by the dowel bearing effect of the fastener in timber, but inclined screw connection has a more complex behaviour due to the combined bearing and withdrawal action of the screw. In the developed models, both the bearing and withdrawal actions of the screw are considered along with the bending stiffness of the screw by applying a theoretically derived correction factor for the embedment stiffness modulus based on the beam on elastic foundation and friction between the concrete and MTP. Both models were experimentally validated with a wide range of material properties. It was found that the models are capable of predicting the stiffness of the MTP-concrete connection to within 18% of the experimental value. It was also noted that the model for solid timber panel is simpler in form and can be adopted for layered timber panel such as CLT with a small difference in solutions. Friction was found to be notable when there was no insulation gap in between timber and concrete.
机译:越来越流行的木质复合地板系统由连接到混凝土板或通过机械连接器(例如自攻螺钉(STS))连接到混凝土板上的大材面板(MTP)组成,在MTP和混凝土之间具有隔音层。这种类型的MTP-混凝土复合系统的允许地板跨度通常由可维护性性能要求(例如挠度和振动)决定,这些要求直接取决于层间连接的刚度。通常进行测试以表征结构设计所需的连接刚度。代替测试,可以开发分析模型以根据组件属性计算连接刚度。为此,开发了两种用于实心和分层木材的分析模型,用于直接预测带有倾斜螺钉和绝缘层的连接的刚度。通常,侧向负载连接的刚度由紧固件在木材中的销钉支座作用控制,但是由于螺钉的支座和拔出作用相结合,因此倾斜的螺钉连接的行为更为复杂。在已开发的模型中,通过基于理论上得出的嵌入刚度模量的校正因子(基于弹性基础上的梁以及混凝土与MTP之间的摩擦力)应用理论推导的嵌入刚度模量校正因子,从而考虑了螺钉的支撑和拔出动作以及螺钉的弯曲刚度。 。两种模型均经过广泛的材料性能实验验证。发现该模型能够将MTP-混凝土连接的刚度预测为实验值的18%以内。还应注意的是,实木面板的模型形式较简单,可用于分层木材面板(如CLT),解决方案差异很小。当木材和混凝土之间没有绝缘间隙时,发现摩擦明显。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号