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Improving fire retardancy of medium density fiberboard by nano-wollastonite

机译:纳米硅灰石提高中密度纤维板的阻燃性

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The improving effects of addition of nano-wollastonite on some fire properties of medium-density fiberboard (MDF) were studied in this work. Nano-wollastonite was added at four levels (2%, 4%, 6%, and 8%). The size range of at least 70% of nano-wollastonite particles were 30 to 110 nm. The results showed statistically significant improving effect of nano-wollastonite on time to onset of ignition. The improving effect was primarily attributed to an increase in thermal conductivity of board containing nano-wollastonite. This increase in turn resulted in better curing of resin, and a higher integrity of fibers thereof. Moreover, nano-particles provided a surface with reduced combustibility and therefore, penetration of fire to the inner layers of boards was delayed, thus improving fire properties. High and significant correlations were found between thermal conductivity coefficients of boards with different fire properties. It was concluded that for applications where fire properties are of prime importance, nano-wollastonite content of 8% can be recommended. Moreover, further studies are needed to compare and standardize the results obtained from the apparatus used here with those obtained from internationally recognized apparatuses like cone calorimeter.
机译:在这项工作中,研究了在中密度纤维板(MDF)的一些火灾场上加入纳米硅灰石的改善效果。纳米硅灰石以四种(2%,4%,6%和8%)加入。纳米硅灰岩颗粒的至少70%的尺寸范围为30至110nm。结果表明,纳米硅灰石按时发作的统计显着改善。提高效果主要归因于含有纳米硅灰石的板的导热率的增加。这种增加导致树脂的更好固化,以及其纤维的完整性。此外,纳米颗粒提供了可燃性降低的表面,因此,延迟了电路板内部层的渗透,从而改善了火灾性。在具有不同火灾性质的电路板的导热系数之间发现高和显着的相关性。它的结论是,对于消防性质的应用,纳米硅灰石含量为8%。此外,需要进一步的研究来比较和标准化从这里使用的装置获得的结果,其中包括来自锥形量热计的国际认可的装置。

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