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首页> 外文期刊>Polymer Degradation and Stability >Synergistic fire retardancy of colemanite, a natural hydrated calcium borate, in high-impact polystyrene containing brominated epoxy and antimony oxide
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Synergistic fire retardancy of colemanite, a natural hydrated calcium borate, in high-impact polystyrene containing brominated epoxy and antimony oxide

机译:天然水合硼酸钙钙锰矿在含溴化环氧和氧化锑的高抗冲聚苯乙烯中的协同阻燃性

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摘要

This study explores for the first time the synergistic fire retardant action of natural hydrated calcium borate, namely the mineral colemanite, which partially replaces antimony oxide in brominated flame retardant high-impact polystyrene compounds. Various antimony oxide to hydrated calcium borate ratios were employed keeping the brominated flame retardant additive at a constant loading level. With partial colemanite substitution for antimony oxide, lower heat release rate, total heat evolved and fire growth index was obtained under forced flaming fire conditions. Synergism was also seen in limiting oxygen index along with maintained V-0 classification in UL-94 tests. Regarding fire behaviour and flammability ratings, a large antimony oxide to calcium borate ratio provided ultimate fire retardant performance whereas magnitudes of synergism in average heat release rate and total heat evolved tend to be higher towards a smaller ratio. Effective heats of combustion and structural/morphological characterization of fire residues ascribed the underlying mechanism demonstrated by hydrated calcium borate to the formation of a consolidated residue that co-operates with the dominant gas phase fire retardancy originating from bromine-antimony synergism. It is thus proposed that coupling is achieved between gas phase and condensed phase modes of action increasing the overall fire retardant effectiveness. Along with enhanced fire retardancy, thermal stability and mechanical properties were satisfactorily maintained with the use of hydrated calcium borate at a variety of loading levels in compounds.
机译:这项研究首次探索了天然水合硼酸钙(即矿物硬锰矿)的协同阻燃作用,该矿物部分取代了溴化阻燃高抗冲聚苯乙烯化合物中的氧化锑。采用各种氧化锑与水合硼酸钙的比例,以使溴化阻燃添加剂保持恒定的负载水平。用部分堇青石代替氧化锑,降低了放热率,放出了总热量,并在强制燃烧的火焰条件下获得了燃烧指数。在UL-94测试中,在限制氧指数以及维持V-0分类方面也发现了协同作用。关于着火行为和可燃性等级,氧化锑与硼酸钙的比例大,可提供最终的阻燃性能,而平均放热率和放出的总热量的协同作用强度往往朝着较小的比例更高。有效的燃烧热和火渣的结构/形态表征归因于水合硼酸钙证明了形成固结的渣的基本机理,该固渣与源自溴-锑协同作用的主要气相阻燃性协同作用。因此建议在气相和冷凝相作用方式之间实现偶联,从而提高整体阻燃效果。随着增强的阻燃性,在化合物中的各种负载水平下使用水合硼酸钙可以令人满意地保持热稳定性和机械性能。

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