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采用高强度微波对木材进行预处理提高其渗透性能,通过加压浸渍将不同质量比的硅源前驱物和聚磷酸铵(APP)混合液引入到木材的孔道中,经过后续的缩合和干燥处理,在木材孔道中原位生成了 SiO2/APP 复合凝胶.采用电子扫描电镜(SEM)和锥形量热仪等测试手段,考察了该复合凝胶在木材中形成、燃烧过程中的协同阻燃、烟气转化和抗流失性能的影响.测试结果表明,木材中原位生成的SiO2/APP复合凝胶具有优异的阻燃和抑烟性能.其中,硅源前驱物与APP 溶液质量比为1∶8处理试样点燃155 s 后熄灭,且其总热释放量下降了93.6%,总烟释放量和CO 平均释放量分别降低了61.6%,53.9%;质量比为1∶9的试样在实验条件下30 min点不燃,表现出优异的阻燃性.通过比较阻燃处理木材在抗流失实验前后的阻燃性能,结果表明该复合凝胶可改善阻燃木材的抗流失性,从而提高木材阻燃时效.

Firstly,wood was treated by high-strength microwave in order to improve its permeability.Then,the different mass ratio of silica source precursor and ammonium polyphosphate (APP)mixture solution was intro-duced into the wood through impregnating method under pressure,after that the SiO2/APP composites gel for-mation in-situ the wood after subsequently condensation and drying processing.The morphology,synergistic effect on fire-retardance and smoke behavior of the SiO2/APP composite were investigated by electronic scan-ning microscope (SEM),cone calorimeter and other techniques in present work.The results show that the SiO2/APP composite gel has excellent flame retardance and smoke suppression performance.As a result,silicon source and APP precursor mass ratio of 1∶8 post-treatment samples ignited 1 5 5 s then extinguished.It is clear-ly seen that a reduction of total heat release (THR)to 93.7%,the total smoke production (TSP)and the mean of CO yield (m-COY)were decreased to 61.6% and 53.9%,respectively.The mass ratio of 1∶9 specimens un-der the experimental conditions for 30 min is non-combustible,exists excellent flame retardance.By comparing the fire parameters of specimens before and after leaching,it is found that the gel composites can prevent the loss of APP,which can extend the period of wood flame retardance.

参考文献

[1] B. Garba.Effect of zinc borate as flame retardant formulation on some tropical woods[J].Polymer Degradation and Stability,19993(3):517-522.
[2] 胡云楚;吴志平;孙汉洲;周莹;刘元.聚磷酸铵的合成及其阻燃性能研究[J].功能材料,2006(3):424-427.
[3] Sun, Q.;Yu, H.;Liu, Y.;Li, J.;Cui, Y.;Lu, Y..Prolonging the combustion duration of wood by TiO_2 coating synthesized using cosolvent-controlled hydrothermal method[J].Journal of Materials Science,201024(24):6661-6667.
[4] 夏燎原;吴义强;胡云楚.锡掺杂介孔分子筛在木材阻燃中的烟气转化作用[J].无机材料学报,2013(5):532-536.
[5] 夏燎原;田梁材;胡云楚;吴义强.改性13 X分子筛在聚磷酸铵阻燃碎料板中的协同作用与烟气转化行为[J].林产化学与工业,2014(3):31-36.
[6] 方桂珍;李淑君;庞久寅;任世学.阻燃剂DPB改性木材的抗流失性和化学稳定性[J].东北林业大学学报,2000(4):54-56.
[7] Schmidt M.;Schwertfeger F..Applications for silica aerogel products[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,19981(1):364-368.
[8] 盛晨;于云;于洋;米乐;唐根初;宋力昕.基于二氧化硅气凝胶制备的多层隔热材料微观结构及热性能研究[J].无机材料学报,2013(7):790-794.
[9] Jun Li;Ping Wei;Linke Li;Yong Qian;Chen Wang;Nian Hua Huang.Synergistic effect of mesoporous silica SBA-15 on intumescent flame-retardant polypropylene[J].Fire and materials,20112(2):83-91.
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