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Comparision of intumescent flame retardance of uncrosslinked and crosslinked LDPE/EVA/Clay nanocomposites

机译:无交联和交联LDPE / EVA /粘土纳米复合材料的膨胀性阻燃性比较

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@@It is well recognized that not only flame retardancy but also flexibility, tensile properties and processability must be satisfied for the application of polyethylenene based resin as cable insulating materials. Inorganic flame retardants including aluminium trihydrate and magnesium dihydrate need to be added with large ammount to achieve good flame retardancy, which cause the deterioration of the physical properties of polyethylene'1'. When the ammount of nanoclay in polymer clay nanocomposites is small, remarkable reduction in the peak heat release rate (pHRR) from cone calorimetric measurements can be observed. Meanwhile, nanoclay can improve the mechanical property of composites. However, polymer clay nanocomposites shows little change in Limiting Oxygen Index (LOI) and UL 94 rating and so can not pass the regulatory tests121. They must be used in combination with other conventional flame retardant'31.
机译:@@众所周知,不仅具有阻燃性,而且还必须满足柔韧性,拉伸性能和可加工性,对于施加聚乙烯基树脂作为电缆绝缘材料。在包括铝的无机阻燃剂,包括三水合物和二水合物的镁,需要加入大的Ammount以实现良好的阻燃性,这导致聚乙烯'1'的物理性质的劣化。当聚合物粘土纳米复合材料中的纳米粘土的Ammount小时,可以观察到来自锥形热量测量的峰值热释放速率(PHRR)的显着降低。同时,纳米粘土可以改善复合材料的力学性质。然而,聚合物粘土纳米复合材料显示屏上限制氧指数(LOI)和UL 94等级的几乎变化,因此不能通过调节试验121。它们必须与其他常规阻燃剂组合使用。

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