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Modeling Timber Moment Connection under Reversed Cyclic Loading

机译:反向循环荷载下的木材弯矩连接建模

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摘要

Moment-resisting connections containing mechanical fasteners play an important role in energy-absorption capability, and therefore resistance against collapse, of timber frames subjected to loading from extreme events such as earthquake. Accurate characterization of moment-rotation response of these connections is an important prerequisite for reliable prediction of timber frame response to seismic loads. Using a previously developed single-fastener finite element model as a basis, a mathematical model was developed to predict the moment-rotation response of timber connection containing multifasteners under reversed cyclic loading. This model generates the response prediction from basic material properties of the fasteners and wood. This paper describes the development of the model and provides test results to validate the accuracy of the model prediction. It is shown that the predicted response of a multinail connection agrees well with experimental data. Once the model is further validated with a broader range of test results, it can be incorporated into frame analysis models for predicting system response.
机译:包含机械紧固件的抗弯连接件在承受诸如地震等极端事件的载荷的木构架的能量吸收能力以及抗塌陷性方面起着重要作用。这些连接的力矩-旋转响应的准确表征是可靠预测木框架对地震载荷响应的重要前提。以先前开发的单紧固件有限元模型为基础,建立了数学模型来预测包含多紧固件的木材连接件在反向循环载荷下的力矩转动响应。该模型根据紧固件和木材的基本材料特性生成响应预测。本文介绍了模型的开发,并提供了测试结果以验证模型预测的准确性。结果表明,多钉连接的预测响应与实验数据吻合良好。一旦使用更广泛的测试结果进一步验证了模型,就可以将其合并到框架分析模型中,以预测系统响应。

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