首页> 外文会议>World conference on timber engineering >ANALYTICAL AND EXPERIMENTAL EVALUATION OF THE CAPACITY OF THE BOTTOM RAIL IN PARTIALLY ANCHORED TIMBER SHEAR WALLS
【24h】

ANALYTICAL AND EXPERIMENTAL EVALUATION OF THE CAPACITY OF THE BOTTOM RAIL IN PARTIALLY ANCHORED TIMBER SHEAR WALLS

机译:部分锚固木材剪力墙底部导轨容量的分析与实验评价

获取原文

摘要

Kallsner and Girhammar have developed plastic design methods for light-frame timber shear walls that can be used for determining the load-carrying capacity when the shear walls are partially anchored. For such walls, the leading stud is not fully anchored against uplift and tying down forces are developed in the sheathing-to-framing joints. Since the forces in the anchor bolts and the sheathing-to-framing joints do not act in the same vertical plane, the bottom rail will be subjected to cross-wise bending, leading to possible splitting along the bottom side of the rail. Another possible brittle failure mode is splitting along the edge of the bottom rail in line with the sheathing-to-framing fasteners. An experimental program has been conducted using different anchor bolt locations, washer sizes and pith orientations. A fracture mechanics approach for the two failure modes is used to evaluate the experimental results. The comparison shows a good agreement between the experimental and analytical results. The failure mode is largely dependent on the distance between the edge of the washer and the edge of the bottom rail. The size of the washer seems also to have some influence on the failure load. The fracture mechanics models seem to capture the essential behaviour of the splitting modes and to include the decisive parameters. These parameters can easily be adjusted to experimental results and be used in design equations for bottom rails in partially anchored shear walls.
机译:Kallsner和Girhammar开发了用于浅框架木材剪切壁的塑料设计方法,该塑料设计方法可用于在剪切壁部分锚固时确定承载能力。对于这样的墙壁,前导螺柱没有完全锚固抵抗隆起和捆绑力在鞘伸缩的关节中开发。由于锚固螺栓和护套的关节中的力不采用相同的垂直平面,因此底部导轨将经受交叉弯曲,导致沿着轨道的底侧分裂。另一种可能的脆性故障模式沿着底部导轨的边缘与护套到框架紧固件分开。使用不同的锚螺栓位置,垫圈尺寸和髓中取向进行了实验程序。用于两种故障模式的断裂力学方法用于评估实验结果。比较显示了实验和分析结果之间的良好一致性。故障模式在很大程度上取决于垫圈边缘和底部导轨边缘之间的距离。垫圈的尺寸似乎也对破坏负荷产生了一些影响。骨折力学模型似乎捕获分裂模式的基本行为,并包括决定性参数。这些参数可以很容易地调节到实验结果,并用于部分锚固剪力墙的底部导轨的设计方程。

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