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首页> 外文期刊>ACS Omega >Reinforcing Condensed Phase Flame Retardancy through Surface Migration of Brucite@Zinc Borate-Incorporated Systems
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Reinforcing Condensed Phase Flame Retardancy through Surface Migration of Brucite@Zinc Borate-Incorporated Systems

机译:通过Brucite掺入锌硼酸锌的表面迁移,加强冷凝相阻燃性

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An efficient [email?protected] borate (3ZnO·3B_(2)O_(3)·3.5H_(2)O) composite flame retardant (CFR), consisting of an incorporated nanostructure, is designed and synthesized via a simple and facile electrostatic adsorption route. It has been demonstrated that this incorporated system can enhance the interfacial interaction and improve the mechanical properties when used in ethylene–vinyl acetate (EVA) composites. Meanwhile, in the process of burning, the CFR particles can successively migrate and accumulate to the surface of the burning zone, increasing the local concentration and rapidly generating a compact barrier layer through a condensed phase reinforcement mechanism even at a lower loading value. Especially, compared with the EVA/physical mixture (PM, with the same proportion of brucite and zinc borate), the heat release rate (HRR), the peak of the heat release rate (PHRR), the total heat released (THR), the smoke production rate (SPR), and mass loss are considerably reduced. According to this study, controlling the nanostructure of flame-retardant particles, to improve the condensed phase char layer, gives a new approach for the design of green flame retardants.
机译:一个有效的[电子邮件吗?受保护的]硼酸硼(3zno·3b_(2)o_(3)·3.5h_(2)o)复合阻燃剂(cfr),由掺入的纳米结构组成,通过简单和容易的静电设计和合成吸附路线。已经证明,当在乙烯 - 乙酸乙烯酯(EVA)复合材料中使用时,该掺入的系统可以增强界面相互作用并改善机械性能。同时,在燃烧的过程中,CFR颗粒可以连续地迁移并积聚到燃烧区的表面,即使在较低的负载值下也通过冷凝的相位增强机构快速地产生紧凑的相连机构。特别是,与EVA /物理混合物(PM相同的Brucite比例和锌硼酸锌)相比,热释放速率(HRR),热释放速率(PHRR)的峰值,总热量释放(THR),烟雾生产率(SPR)和质量损失显着降低。根据该研究,控制阻燃颗粒的纳米结构以改善冷凝相炭层,给出了绿色阻燃剂设计的新方法。

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