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首页> 外文期刊>Canadian Journal of Civil Engineering >Damage level assessment of response limits in light-frame wood stud walls subjected to blast loading
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Damage level assessment of response limits in light-frame wood stud walls subjected to blast loading

机译:抗框架木螺柱墙体对爆破载荷的响应限制的损伤水平评估

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摘要

Currently, no systematic approach exists for damage evaluation of light-frame wood structures subjected to blast loading. This paper presents a detailed assessment of the behaviour of 33 full-scale light-frame wood stud walls subjected to a total of 48 shots of simulated blast loading. Detailed documentation of the observed damage allowed for the development of an accurate evaluation strategy of the response limits. The observed response limits are compared to limits derived from single-degree-of-freedom modelling using scaled pressure-impulse diagrams and to current code performance levels. It was concluded that the assumption made in contemporary blast design codes overestimates the ductility ratios for light-frame wood stud walls, and that using a maximum ductility of 2 is more appropriate and safer for blast design. Based on the observed damage levels obtained from the experimental study, the authors propose new ductility ratios corresponding to four damage regions.
机译:目前,不存在系统的损伤评估,用于进行喷砂载荷的光框木结构。 本文介绍了33个全尺寸浅框架木螺柱墙体行为的详细评估,该型螺柱墙的行为受到共模拟爆破载荷的共48次。 允许观察到的损害的详细文件,以制定响应限额的准确评估策略。 将观察到的响应限制与使用缩放压力脉冲图和当前代码性能水平的单级自由度建模导出的限制。 结论是,当代爆炸设计代码中的假设高估了浅框架木螺柱壁的延展性比,并且使用2的最大延展性更为合适,更安全的爆炸设计。 基于从实验研究获得的观察到的损伤水平,作者提出了对应于四个损伤区域的新延性比。

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