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Bulk vs. surface flame retardancy of fully bio-based polyamide 10,10

机译:散装与完全生物基聚酰胺的表面阻燃剂10,10

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摘要

First, polyamide (PA) 10,10-based compounds with enhanced flame retardant properties have been prepared by melt-blending. To this aim, a traditional intumescent formulation consisting of ammonium polyphosphate (APP) and pentaerythritol (PER) derived from oil chemistry has been added to PA 10,10 (30 wt% loading) and the resulting morphological, mechanical and flame retardant properties have been investigated. In order to achieve the highest carbon content from bio-source, PER has been replaced by corn starch: thus, it was possible to compare the thermal, mechanical and combustion properties of the compounds containing non-bio additives (APP and PER) with those of the starch-containing counterparts. Furthermore, the same intumescent ingredients adopted in bulk have been further used for coating PA 10,10 surface, exploiting a UV-curing process. From an overall point of view, cone calorimetry tests have shown that these bulk formulations are able to reduce total heat release and peak of heat release rate - pkHRR - (about 30%), but, contrariwise, they lower time to ignition and increase the smoke production, as well. A similar trend has been found when the flame retardants were added to a UV-curable system coated on PA 10,10 samples, without taking into consideration the effect of specimen mass. Conversely, when the combustion parameters were normalized to the specimen mass, the reduction of pkHRR was significantly higher than that found with the same FR content in bulk (about -65 vs. -35%, respectively). As a consequence, the flame retardant results achieved by the surface approach seem to be more promising than those from melt-blending.
机译:首先,通过熔融共混制备了具有增强的阻燃性能的聚酰胺(PA)10,10-型化合物。为此目的,由多磷酸铵(APP)和季戊四醇(PER)组成的传统膨胀型制剂已加入到油化学中的衍生给PA 10,10(30wt%负载),并已成为所得的形态,机械和阻燃性能调查。为了从生物来源实现最高的碳含量,每次被玉米淀粉取代:因此,可以将含有非生物添加剂(APP和PER)的化合物的热,机械和燃烧性能与那些相比进行比较含淀粉的对应物。此外,本体中采用的相同膨胀成分进一步用于涂覆PA 10,10表面,利用UV固化过程。从整体角度来看,锥形量热法试验表明,这些散装制剂能够降低热释放率的总热释放和峰值 - PKHRR - (约30%),但相反,它们降低点火时间和增加烟雾生产,也是如此。当将阻燃剂加入到涂覆在PA 10,10样品的UV可固化系统中时,已经发现了类似的趋势,而不考虑样品质量的影响。相反,当燃烧参数归一化为样品质量时,PKHRR的还原显着高于体积相同的FR含量(分别为-65 vs-35%)。因此,通过表面方法实现的阻燃剂结果似乎比来自熔融共混的似乎更有前景。

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  • 来源
    《RSC Advances 》 |2015年第49期| 共9页
  • 作者单位

    Politecn Torino Dipartimento Sci Applicata &

    Tecnol Sede Alessandria I-15121 Alessandria Italy;

    Politecn Torino Dipartimento Sci Applicata &

    Tecnol Sede Alessandria I-15121 Alessandria Italy;

    ENSCL UMET CNRS UMR 8207 Grp R2Fire F-59652 Villeneuve Dascq France;

    Politecn Torino Dipartimento Sci Applicata &

    Tecnol Sede Alessandria I-15121 Alessandria Italy;

    ENSCL UMET CNRS UMR 8207 Grp R2Fire F-59652 Villeneuve Dascq France;

    Politecn Torino Dipartimento Sci Applicata &

    Tecnol Sede Alessandria I-15121 Alessandria Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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