聚丙烯;纳米氢氧化铝;红磷;表面改性;阻燃性;力学性能。
PP; nano-sized ATH; red phosphorus; surface modification; flame retardancy; mechanical property.
展望了微胶囊化超细红磷的发展趋势,并对其研究和应用提出建议。
And its development trend is forecast and the Suggestions in the field of research and application are also put forward.
新型毛毡阻燃剂以红磷为基础,配以膨胀石墨、螯合剂、促进剂合成。
A new type of flame retardant for felt was synthesized using red phosphorus, expanded graphite, chelating agent and accelerating agent.
测试了红磷烟幕的粒度分布及平均直径,给出了典型样品的累积曲线。
The granularity distribution and average diameter of particles of red phosphorus smoke were tested and the integral curve of typical sample were given.
研究红磷阻燃母粒对玻纤增强尼龙66(PA66)阻燃性能的影响。
The effects of red phosphorus flame-retardant masterbatch on the flame-retardant properties of glass fiber reinforced PA66 were investigated.
研究了添加红磷与不同粒径的无卤阻燃剂氢氧化镁后的聚丙烯的阻燃效果,工艺简单。
In this paper Mg OH 2 and red phosphorus as non-halogen flame-retardant additives for polypropylene (PP) were studied.
对微胶囊红磷阻燃剂的白度化进行了研究,探讨了囊材、囊材含量、粒径分布等因素对白度化的影响。
Effects of different coating materials of microencapsule, amount of coating materials, distribution of particle size on whitening were discussed.
结果表明,溶胶-凝胶法红磷微胶囊整理的棉织物具有良好的阻燃效果和耐久性,但白度和断裂强力有一定程度的下降。
Results showed that the treated cotton fabric had good flame retardancy and durability, but its whiteness and tensile strength decreased to some extent.
研究了微胶囊红磷不同包覆、用量、粒度及与其它阻燃剂的协效作用等因素对软质聚氨酯泡沫塑料的阻燃性能、力学性能及抑烟性能的影响。
The effect of microencapsulated red phosphorus on the flame retardancy, mechanical properties and smoke suppression of the electronic and electrical packaging materials of epoxy resin was studied.
制备新型的单分子磷-氮类膨胀型阻燃剂(TPA),采用微胶囊化红磷(mrp)与TPA复配阻燃剂,制备具有良好阻燃性能的无卤阻燃abs。
Novel intumescent flame retardant (TPA) was prepared, and halogen-free retardant ABS composites were prepared by microencapsulated red phosphorus (MRP) and TPA as flame retardants.
制备新型的单分子磷-氮类膨胀型阻燃剂(TPA),采用微胶囊化红磷(mrp)与TPA复配阻燃剂,制备具有良好阻燃性能的无卤阻燃abs。
Novel intumescent flame retardant (TPA) was prepared, and halogen-free retardant ABS composites were prepared by microencapsulated red phosphorus (MRP) and TPA as flame retardants.
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