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Fire Design Of Timber Slabs Made Of Hollow Core Elements

机译:中空芯材制成的木板材防火设计

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摘要

The fire design of timber structures usually take into account both the loss in cross-section due to charring of wood and the temperature-dependent reduction of strength and stiffness of the uncharred residual cross-section. The fire behaviour of timber assemblies made of hollow core elements is characterised by different charring phases. After the fire exposed timber layer is completely charred and the char-layer has fallen off, the thin vertical timber members are exposed to fire on 3 sides, leading to very irregular residual cross-sections with charring depths much greater than for heavy timber structures. Based on an extensive experimental and parametric study, a simplified calculation model for the fire resistance of timber slabs made of hollow core elements has been developed. The calculation model bases on the reduced cross-section method and takes into account two different charring phases. The paper first describes and discusses the simplified calculation model, and then compares the test results to the calculation model.
机译:木材结构的防火设计通常考虑到由于烧焦而造成的横截面损失以及未随焦化的残余横截面的强度和刚度随温度的降低。由空心元件制成的木材组件的着火行为具有不同的炭化阶段。暴露在火中的木料层完全烧焦并且木炭层掉落后,薄的垂直木料构件会在3侧暴露于火中,从而导致非常不规则的残留横截面,烧焦深度比重型木结构大得多。在广泛的实验和参数研究的基础上,开发了一种简化的计算模型,用于计算空心构件制成的木板的耐火性。该计算模型基于减小的横截面方法,并考虑了两个不同的炭化阶段。本文首先描述并讨论了简化的计算模型,然后将测试结果与计算模型进行了比较。

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