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首页> 外文期刊>Journal of structural engineering >Energy-Absorbing Connection for Heavy-Timber Assemblies Subjected to Blast Loads-Concept Development and Application
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Energy-Absorbing Connection for Heavy-Timber Assemblies Subjected to Blast Loads-Concept Development and Application

机译:用于耐磨载荷的重木组件的能量吸收连接 - 概念开发和应用

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This paper presents the procedure for the development of energy-absorbing connections (EACs) in glued-laminated timber (glulam) and cross-laminated timber (CLT) assemblies to resist the effects of blast explosions. A probabilistic approach, which ensures that energy dissipation occurs in the ductile connections prior to brittle flexure failure of the wood element, is presented and discussed. The design and detailing of the EACs was also based on the results from a preliminary numerical investigation. A total of 23 dynamic tests were conducted on full-scale glulam and CLT elements with EACs as boundary connections using a shock tube test apparatus. The behaviors of the assemblies were established and failure modes were characterized based on the observations of damage occurring in the connections and wood member. The results from experimental testing demonstrated that when properly designed, the EACs allow the assemblies to withstand a greater amount of blast energy than typical glulam and CLT connections as well as idealized simply supported end conditions. A two-degree-of-freedom (TDOF) analysis was conducted to model the assemblies through the discretization of the timber and connection components, and the results showed that TDOF modeling is capable of predicting the behavior of the full-scale assemblies with good accuracy. (C) 2021 American Society of Civil Engineers.
机译:本文提出了一种能量吸收连接(EACS)的发展过程中胶合层积材(胶合层积材)和交叉层积材(CLT)组件以抵抗爆炸的爆炸的影响。概率方法,其确保在之前的木质构件的脆性挠曲失败延性连接发生时的能量耗散,被介绍和讨论。设计和细节的EACS也基于从初步的数值调查结果。共计23个动态试验在与EACS作为使用激波管测试设备的连接边界全面胶合层积材和CLT元件进行。建立的组件的行为和基于损伤的在连接和木构件中发生的观测的故障模式进行表征。从实验测试的结果表明,适当设计的情况下,EACS允许组件承受爆炸能量的更大的量超过以及理想化简单支撑端条件典型胶合层积材和CLT连接。进行了一项两度的自由度(TDOF)分析通过木材和连接部件的离散化的组件进行建模,并且所述结果表明,TDOF建模能够预测以良好的精度满刻度组件的行为的。 (c)2021年美国土木工程师协会。

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