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Timber Utility Pole Fracture Mechanics Due to Non-Deformable and Deformable Moving Barrier Impacts

机译:由于不可变形和变形的移动势垒的影响而导致的木材实用杆断裂力学

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摘要

The energy dissipated by the fracture of wooden utility poles during vehicle impacts is not currently well documented, is dependent upon non-homogenous timber characteristics, and can therefore be difficult to quantify. While there is significant literature regarding the static and quasi-static properties of wood as a building material, there is a narrow body of literature regarding the viscoelastic properties of timber used for utility poles. Although some theoretical and small-scale testing research has been published, full-scale testing has not been conducted for the purpose of studying the vehicle-pole interaction during impacts. The parameters that define the severity of the impact include the acceleration profile, vehicle velocity change, and energy dissipation. Seven full-scale crash tests were conducted at Exponent's Arizona test facility utilizing both moving deformable and non-deformable barriers into new wooden utility poles. The vehicle energy was dissipated in a bi-modal event for the non-deformable barrier tests and a tri-modal event for the deformable barrier tests. In the deformable tests, the three modes were identified as 1) deformation of the vehicle structure, 2) fracture and separation of the pole from its base, and 3) acceleration of the pole out of the vehicle path. The analysis associated with these test results provided a better understanding of pole fracture mechanics and corresponding vehicle kinematics as well as the energy dissipation during the full-scale dynamic events.
机译:目前尚没有很好的文件证明在车辆撞击过程中木制电线杆断裂所耗散的能量取决于不均匀的木材特性,因此可能难以量化。尽管有很多关于木材作为建筑材料的静态和准静态特性的文献,但是关于用于电线杆的木材的粘弹性特性的文献却很少。尽管已经发表了一些理论和小规模测试研究,但尚未进行全尺寸测试以研究碰撞期间的车杆相互作用。定义撞击严重性的参数包括加速度曲线,车速变化和能量耗散。在Exponent的亚利桑那州测试设施进行了七次全面的碰撞测试,将可变形和不可变形的障碍物移动到新的木制电线杆中。对于不可变形的障碍物测试,车辆能量在双峰事件中耗散,对于可变形的障碍物测试,车辆能量在三峰事件中耗散。在可变形测试中,这三种模式被确定为:1)车辆结构变形,2)立杆从其底部断裂和分离,以及3)立杆加速离开车道。与这些测试结果相关的分析提供了对杆断裂力学和相应的车辆运动学以及满量程动态事件期间的能量耗散的更好理解。

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