Davis Rick, Li Yu-Chin, Gervasio Michelle, Luu Jason, Kim Yeon Seok
Fire Research Division, Engineering Laboratory, National Institute of Standards and Technology, 100 Bureau Drive MS-8665, Gaithersburg, Maryland 20899-8655, United States.
ACS Appl Mater Interfaces. 2015 Mar 25;7(11):6082-92. doi: 10.1021/acsami.5b01105. Epub 2015 Mar 12.
In this manuscript, natural materials were combined into a single "pot" to produce flexible, highly fire resistant, and bioinspired coatings on flexible polyurethane foam (PUF). In one step, PUF was coated with a fire protective layer constructed of a polysaccharide binder (starch or agar), a boron fire retardant (boric acid or derivative), and a dirt char former (montmorillonite clay). Nearly all coatings produced a 63% reduction in a critical flammability value, the peak heat release rate (PHRR). One formulation produced a 75% reduction in PHRR. This technology was validated in full-scale furniture fire tests, where a 75% reduction in PHRR was measured. At these PHRR values, this technology could reduce the fire threat of furniture from significant fire damage in and beyond the room of fire origin to being contained to the burning furniture. This flammability reduction was caused by three mechanisms-the gas-phase and condensed-phase processes of the boron fire retardant and the condensed-phase process of the clay. We describe the one-pot coating process and the impact of the coating composition on flammability.
在本论文中,天然材料被组合在一个“罐”中,以在柔性聚氨酯泡沫(PUF)上制备出柔性、高耐火性且受生物启发的涂层。一步法中,PUF被涂覆上由多糖粘合剂(淀粉或琼脂)、硼阻燃剂(硼酸或衍生物)和污垢成炭剂(蒙脱石粘土)构成的防火层。几乎所有涂层都使关键可燃性值——峰值热释放速率(PHRR)降低了63%。一种配方使PHRR降低了75%。该技术在全尺寸家具火灾试验中得到验证,试验测得PHRR降低了75%。在这些PHRR值下,该技术可将家具的火灾威胁从火灾起源房间内外的重大火灾损害降低至仅局限于燃烧的家具。这种可燃性降低是由三种机制引起的——硼阻燃剂的气相和凝聚相过程以及粘土的凝聚相过程。我们描述了一锅法涂覆工艺以及涂层组成对可燃性的影响。