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首页> 外文期刊>Polymer Composites >Expandable graphite's versatility and synergy with carbon black and ammonium polyphosphate in improving antistatic and fire-retardant properties of wood flour/polypropylene composites
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Expandable graphite's versatility and synergy with carbon black and ammonium polyphosphate in improving antistatic and fire-retardant properties of wood flour/polypropylene composites

机译:可发性石墨的多功能性以及与炭黑和聚磷酸铵的协同作用,可改善木粉/聚丙烯复合材料的抗静电和阻燃性能

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摘要

This study investigated the antistatic and fire-retardant properties of wood flour/polypropylene composites consisting of carbon black (CB), ammonium polyphosphate (APP), and expandable graphite (EG) through resistance meter measurement, cone calorimetry (CONE), thermogravimetric analysis (TGA), and scanning electron microscopy. Antistatic property testing confirmed a positive effect between CB and EG on discharging electrostatic charge. Electrostatic charge was thus considered able to be conducted between CB particles through EG, which acted as a bridge in the CB/EG - treated composites. The results of CONE tests showed that EG significantly reduced the smoke release of the wood plastic composites (WPCs), including total smoke release (TSR), average specific extinction area (SEA), and production of carbon monoxide. During the WPCs burning process, a compound of EG and APP showed synergistic effects which decreased heat release and fixed the residual char. TGA results demonstrated that combining EG with APP, as opposed to using EG only, effectively increased the residual mass and decreases the initial thermal decomposition temperature of the WPCs. Addition of APP caused the wood flour char by catalyzing at a lower temperature, moreover, EG and APP displayed good synergistic effects on fire inhibition and smoke suppression. POLYM. COMPOS., 38:767-773, 2017. (c) 2015 Society of Plastics Engineers
机译:本研究通过电阻计测量、锥形量热法(CONE)、热重分析(TGA)和扫描电子显微镜研究了炭黑(CB)、聚磷酸铵(APP)和可膨胀石墨(EG)组成的木粉/聚丙烯复合材料的抗静电和阻燃性能。抗静电性能测试证实了CB和EG对静电荷放电的积极作用。因此,静电荷被认为能够通过EG在CB颗粒之间传导,EG在CB/EG处理的复合材料中起到桥梁的作用。锥体试验结果表明,EG显著降低了木塑复合材料(WPCs)的烟雾释放量,包括总烟雾释放量(TSR)、平均比消光面积(SEA)和一氧化碳的产生量。在WPCs燃烧过程中,EG和APP的化合物表现出协同作用,减少了热量释放并固定了残余炭。 TGA结果表明,与仅使用EG相比,将EG与APP相结合可有效增加残余质量并降低WPCs的初始热分解温度。 添加APP在较低温度下催化使木粉炭化, 此外,EG和APP在抑制火灾和抑烟方面表现出良好的协同作用。波利姆。作曲, 38:767-773, 2017.(c) 2015 年塑料工程师学会

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