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Experimental and numerical investigation of the thermal decomposition of materials at three scales: application to polyether polyurethane foam used in upholstered furniture

机译:在三个尺度上对材料进行热分解的实验和数值研究:在用于软垫家具的聚醚聚氨酯泡沫中的应用

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摘要

The fire behaviour of polyether polyurethane foam has been studied at three scales: matter scale, small scale and product scale. A method to determine the thermal decomposition mechanism of materials was defined at the matter scale. This method is based on the analysis of the mass-loss rate (solid phase) and gas release (gas phase) obtained in thermogravimetric analysis coupled to FTIR gas analysis. Using a model and genetic algorithms, the kinetic parameters of the decomposition process were calculated, which allowed an accurate prediction of the mass-loss rate. udMeasurements of heat release rate and gas release were carried out in cone calorimeter coupled to gas analysers (small scale). This data as well as the results from the model were used as input data for the numerical simulation of fire behaviour. This study highlighted that some improvements need to be carried out to the simulation codes. udMeasurements of heat release rate and mass-loss rate were also performed during the fire of a simplified piece of upholstered furniture (product scale). It was pointed out that the decomposition mechanism of the foam remains unchanged independently of the scale analysed.
机译:聚醚聚氨酯泡沫的防火性能已从三个方面进行了研究:物质规模,小规模和产品规模。在物质尺度上定义了一种确定材料热分解机理的方法。该方法基于对热重分析与FTIR气体分析相结合获得的质量损失率(固相)和气体释放(气相)的分析。使用模型和遗传算法,计算了分解过程的动力学参数,从而可以准确预测质量损失率。热量释放速率和气体释放的测量是在与气体分析仪(小规模)连接的锥形量热仪中进行的。该数据以及模型的结果被用作火灾行为数值模拟的输入数据。这项研究强调,需要对模拟代码进行一些改进。 ud在简化的软垫家具着火期间(产品规模)也测量了放热率和质量损失率。指出,泡沫的分解机理保持不变,与所分析的水垢无关。

著录项

  • 作者

    Bustamante Valencia Lucas;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"fr","name":"French","id":14}
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