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首页> 外文期刊>Wood and Fiber Science >Verification of a kinetics-based model for long-term effects of fire retardants on bending strength at elevated temperatures.
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Verification of a kinetics-based model for long-term effects of fire retardants on bending strength at elevated temperatures.

机译:验证了基于动力学的阻燃剂对高温下弯曲强度的长期影响的模型。

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摘要

This study verifies a single-stage reaction-rate model for the long-term effects of various fire retardants. The adequacy of predictions from previously reported models was tested using data from fire-retardant-treated wood exposed at 66deg C (150degree CF) and 75% relative humidity for 3 or 4 years. Analysis showed that if the treated wood experienced significant thermal degradation early during exposure to high temperature, then the previously reported model parameters adequately predicted thermal degradation for up to 4 years of steady-state exposure. However, if the treated wood did not experience significant thermal degradation early during high-temperature exposure, then the previous parameter estimates tended to underpredict degrade. Modified parameter estimates are presented where appropriate. This report also describes the practical implications of running the verified models for up to 10 annual iterations of an actual year of measured roof sheathing temperatures derived from structures exposed inthe field. Our results predict that monoammonium phosphate, a generic fire-retardant formulation, can be expected to cause an additional 15% loss in original strength capacity in 10 years if used for roof sheathing under similar conditions.
机译:这项研究验证了各种阻燃剂的长期作用的单阶段反应速率模型。使用在66摄氏度(150摄氏度)和75%相对湿度下暴露3到4年的经过阻燃处理的木材的数据测试了以前报告的模型的预测是否足够。分析表明,如果经过处理的木材在暴露于高温的早期会经历明显的热降解,那么先前报告的模型参数可以充分预测高达4年的稳态暴露的热降解。但是,如果经过处理的木材在高温暴露的早期没有发生明显的热降解,则先前的参数估计往往会低估降解。适当时会显示修改后的参数估计值。该报告还描述了运行验证过的模型的实际意义,该模型对于从实地暴露的结构得出的屋顶覆盖物温度实测值的实际年度进行多达10次年度迭代。我们的结果预测,如果在相似的条件下用于屋顶护套,则磷酸单铵(一种通用的阻燃剂)有望在10年内导致原始强度能力另外损失15%。

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