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Path Dependence in OSB Sheathing-to-Framing Nailed Connection Revealed by Biaxial Testing

机译:通过双轴测试揭示了OSB鞘到框钉连接中的路径依赖性

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摘要

Oriented strand board (OSB) sheathing-to-wood framing connections, as typically used in light-frame shear walls, were experimentally examined in a novel biaxial test setup with respect to possible path dependence of the load-displacement relation. The connection with an annular-ringed shank nail was loaded under displacement control following nine different displacement paths within the sheathing plane, which coincided at a number of points. At intersection points, the resultant connection force, its orientation, and work performed on the connection system to reach the specific point were calculated and compared. Evaluation of experiments revealed significant path dependence with respect to the orientation of force resultants at path intersection points. However, the magnitude of the forces and the work carried out showed relatively small dependence of the displacement path undertaken. Comparison of uniaxial connection tests with the European yield model demonstrated a strong contribution of withdrawal resistance of the ringed shank nail to its lateral strength. Results of this type are a valuable basis on which to build better models when simulating such connections in wood structures.
机译:通常在轻型框架剪力墙中使用的定向刨花板(OSB)护套与木构架的连接,在新型双轴测试装置中针对载荷-位移关系的可能路径依赖性进行了实验检查。沿环形控制杆的连接在位移控制下沿护套平面内的九个不同位移路径加载,该路径在多个点上重合。在相交点处,计算并比较了合成的连接力,其方向以及在连接系统上为到达特定点所做的功。实验评估表明,相对于路径交叉点处力合力的方向,路径具有显着依赖性。但是,力的大小和所进行的工作表明所采用的位移路径的依赖性较小。单轴连接试验与欧洲屈服模型的比较表明,带环柄钉的抗拔力对其侧向强度有很大贡献。这种类型的结果是在模拟木结构中的此类连接时建立更好的模型的宝贵基础。

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