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首页> 外文期刊>Journal of thermal analysis and calorimetry >Synthesis, application, and flame-retardant mechanism of a novel phosphorus-containing plasticizer based on castor oil for polyvinyl chloride
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Synthesis, application, and flame-retardant mechanism of a novel phosphorus-containing plasticizer based on castor oil for polyvinyl chloride

机译:新型基于蓖麻油的聚氯乙烯含磷增塑剂的合成,应用及阻燃机理

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摘要

The objective of this study was to synthesize a novel flame-retardant plasticizer (PPC) for PVC using castor oil and to investigate the retardant mechanism of PVC blend plasticized with PPC. The chemical structure of PPC was characterized with FT-IR, P-31 NMR, and H-1 NMR. The melting behavior, thermal property, flame-retardant performance, flame-retardant mechanism, and mechanical property of PVC plasticized with PPC were systematically studied. The results showed that when the PPC content increased from 0 to 20 g in PVC blend, the torque increased from 10.6 to 15.9 N m, and the glass transition temperature increased from 26.5 to 52.6 A degrees C. Leaching tests indicated that PPC had a higher migration resistance than DOP. TG indicated that PPC could improve the thermal stability under 350 A degrees C, and the LOI tests indicated that the LOI value of PVC blends cooperated with PPC increased from 26.6 to 32.4 %. The SEM and flame-retardant performance indicated that PPC was put into effect by promoting PVC carbonization and forming a consolidated and thick flame-retardant coating quickly, which is effective to prohibit the heat flux and air incursion. PPC could improve the flame-retardant performance of PVC blends and keep the mechanical properties unchanged comparing with DOP.
机译:这项研究的目的是使用蓖麻油合成一种新型的PVC阻燃增塑剂(PPC),并研究用PPC增塑的PVC共混物的阻燃机理。 PPC的化学结构通过FT-IR,P-31 NMR和H-1 NMR表征。对PPC增塑的PVC的熔融行为,热性能,阻燃性能,阻燃机理和力学性能进行了系统研究。结果表明,当PVC混合物中PPC含量从0增加到20 g时,转矩从10.6 N m增加到15.9 N m,玻璃化转变温度从26.5 A升高到52.6 A℃。浸出试验表明PPC具有较高的迁移阻力比DOP大。 TG表明,PPC可以改善在350 A温度下的热稳定性,LOI测试表明,与PPC配合使用的PVC共混物的LOI值从26.6%提高到32.4%。 SEM和阻燃性能表明,PPC通过促进PVC的碳化并迅速形成坚固而厚实的阻燃涂层而得以实现,这对防止热通量和空气侵入是有效的。与DOP相比,PPC可以改善PVC共混物的阻燃性能,并保持其机械性能不变。

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