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Textile heat release properties measured by microscale combustion calorimetry: Experimental repeatability

机译:通过微型燃烧量热法测量的纺织品放热性能:实验可重复性

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In this research, we evaluated the repeatability of microscale combustion calorimetry (MCC) measurement of heat release properties for different textile fabrics including polypropylene, cotton, polyester, Kevlar, acrylic, nylon, silk, and the cotton treated with an organophosphorus flame retardant. The repeatability investigation was mostly based on the measurement of peak heat release rate (PHRR) and heat release capacity (HRC), the two most important heat release parameters measured by MCC. We found that PHRR and HRC of most textile fibers had coefficient of variance (CV) lower than and in the vicinity of 3.0%. The CVs were influenced by both the standard deviation (SD) of measurements and by the values of these measurements. The use of an aerobic pyrolysis environment (80/20 nitrogen/oxygen) for MCC experiments did not affect the repeatability of measurement. We also evaluated the shift of the oxygen analyzer as a result of long-term usage, and found that PHRR and HRC of cotton decreased between —4.0 and —3.9%, respectively, after an 11-month period, indicating that the shift of the oxygen analyzer is limited. Experimental factors influencing the MCC repeatability were also discussed.
机译:在这项研究中,我们评估了微尺度燃烧量热法(MCC)测量不同织物的散热性能的可重复性,这些织物包括聚丙烯,棉,聚酯,凯夫拉尔,丙烯酸,尼龙,丝绸和经过有机磷阻燃剂处理的棉。可重复性研究主要基于峰值放热速率(PHRR)和放热容量(HRC)的测量,这是MCC测量的两个最重要的放热参数。我们发现大多数纺织纤维的PHRR和HRC的变异系数(CV)均低于3.0%,且在3.0%附近。 CV受测量标准偏差(SD)和这些测量值的影响。在MCC实验中使用有氧热解环境(80/20氮气/氧气)不会影响测量的可重复性。我们还评估了由于长期使用而导致的氧气分析仪的偏移,发现在11个月后,棉花的PHRR和HRC分别降低了-4.0%和-3.9%,这表明氧气分析仪是有限的。还讨论了影响MCC重复性的实验因素。

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