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Compressive strength of lumber at high temperatures

机译:高温木材的抗压强度

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A model was developed to predict the residual strength in compression parallel to grain for dimension lumber subjected to axial loads at elevated temperatures while braced to prevent buckling. Prediction of the time-dependent temperature profile within the cross-section of a lumber member was achieved by adapting a two-dimensional heat transfer model. An extensive literature review examined seven models proposed by various authors to predict residual strength under various temperature regimes. With knowledge of the temperature-history and material properties, it was possible to predict the time to failure by crushing of axially loaded members exposed to elevated temperatures. Initially, predicted times to failure did not show as good an agreement with those measured in an experimental programme as had been hoped. However, when a new residual strength-temperature model was developed and used to simulate the axial load capacity of nominal 38 mm x 89 mm studs exposed to fire, the results obtained showed good agreement with experimental results.
机译:开发了一个模型来预测尺寸木材在高温下承受轴向载荷并支撑以防止屈曲时,平行于纹理的压缩残余强度。通过采用二维传热模型,可以预测木材构件横截面中随时间变化的温度曲线。大量的文献综述检查了由不同作者提出的七个模型,以预测在不同温度下的残余强度。有了温度历史和材料特性的知识,就有可能通过压碎暴露在高温下的轴向加载构件来预测失效时间。最初,预测的失效时间与实验程序中所测得的不一致。但是,当开发了新的残余强度-温度模型并将其用于模拟暴露在火中的38 mm x 89 mm公称螺柱的轴向载荷能力时,所得结果与实验结果吻合良好。

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