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Correlation analysis of cone calorimetry and microscale combustion calorimetry experiments

机译:锥形量热法和微观燃烧量热法实验的相关分析

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摘要

Flammability studies are conducted to evaluate the behavior of materials exposed to fire. In this study, microscale combustion calorimetry (MCC) and cone calorimetry methods were applied to acquire the flammability characteristics of red and grey extruded polystyrene (XPS) samples. To understand the effect of changes between parameters, Pearson's correlation coefficient was used to examine their linear relationships. From the research, moderate and weak correlations were recorded between the total heat release rates from both methods for red and grey XPS, respectively. Plotting peak heat release rate against heat release temperature for MCC and ignition temperature for cone test showed that 25, 35 and 50 kW m(-2) incident heat fluxes of the cone test fall within 0.2 K s(-1) and 0.5 K s(-1) heating rates of MCC. Also, all the MCC parameters except char yield and total heat release presented good correlations with the cone calorimetry flammability characteristics. Hence, MCC could be used in conjunction with cone calorimetry to accurately and reliably assess the flammability of materials.
机译:进行易燃性研究以评估暴露于火灾的材料的行为。在本研究中,施用微观燃烧量热法(MCC)和锥形量热法测定红色和灰色挤出聚苯乙烯(XPS)样品的可燃性特性。要了解参数之间变化的影响,Pearson的相关系数用于检查它们的线性关系。从研究中的两种方法的总热释放速率之间记录了中等和弱相关性,分别为红色和灰色XPS的方法。绘制峰值热释放率对MCC的热释放温度和锥形试验的点火温度显示,锥形试验的25,35和50kWm(-2)入射热通量落在0.2ks(-1)和0.5ks内。 (-1)MCC的加热速率。此外,除Char产量和总热释放之外的所有MCC参数呈现出与锥形量热法易燃性特性的良好相关性。因此,MCC可以与锥形量热法结合使用,以准确可靠地评估材料的可燃性。

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