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Effect of P_3O_(10)~(5-) intercalated hydrotalcite on the flame retardant properties and the degradation mechanism of a novel polypropylene/hydrotalcite system

机译:P_3O_(10)〜(5-)插层水滑石对新型聚丙烯/水滑石体系阻燃性能及降解机理的影响

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摘要

P3O105−intercalated Mg/Al hydrotalcite (LDH-P) was successfully prepared by impregnation-reconstruction, and its microstructure and surface chemical properties were characterized. It was found that P3O105−anion has completely intercalated into the interlayer space of the LDH-P. And the LDH-P exhibited a higher dispersity and weaker hydrophobicity than the CO32–intercalated Mg/Al hydrotalcite (LDH-C). The LDH-P was investigated as a potential flame retardant for polypropylene (PP) matrix, then the LDH-P and PP composite (PP/LDH-P) was characterized using X-ray diffraction (XRD) and thermogravimetric analysis (TGA) as well as the limited oxygen index (LOI), vertical burning UL94 and mechanical test, the results revealed that the introduction of LDH-P into PP not only increased the char residue, but also formed compact and folded morphology of char residue providing more effective protection for underlying materials against heat and oxygen compare with LDH-C. The morphological structures and component observed by digital photos, scanning electron micrograph (SEM) and Fourier transform infrared (FT-IR) of fire residues demonstrated that P-C vibration between LDH-P and PP was generated by intercalating LDH-P with P3O105−anion. Compared with the LDH-C, the LDH-P promoted the formation of a more continuous and compact char layer during the burning process. Thus, the LDH-P intercalating with P3O105−anion enhanced the flame retardancy of PP matrix. Promising developments for use of LDH-P in flame retardant formulations were expected in future applications.
机译:通过浸渍-重构成功制备了P3O105-插层的Mg / Al水滑石(LDH-P),并对其微观结构和表面化学性质进行了表征。发现P3O105-阴离子已完全插入LDH-P的层间空间。而且,LDH-P的分散度比CO32插入的Mg / Al水滑石(LDH-C)高,而疏水性较弱。研究了LDH-P作为聚丙烯(PP)基体的潜在阻燃剂,然后使用X射线衍射(XRD)和热重分析(TGA)对LDH-P和PP复合材料(PP / LDH-P)进行了表征。并通过极限氧指数(LOI),垂直燃烧UL94和机械测试,结果表明,将LDH-P引入PP中不仅增加了残炭,而且形成了残炭状的致密折叠形态,提供了更有效的保护与LDH-C相比,底层材料对热量和氧气的抵抗力。通过数字照片,扫描电子显微照片(SEM)和火残留物的傅里叶变换红外(FT-IR)观察到的形态结构和成分表明,LDH-P与PP之间的P-C振动是通过将LDH-P与P3O105-阴离子嵌入而产生的。与LDH-C相比,LDH-P在燃烧过程中促进了更连续,致密的炭层的形成。因此,LDH-P嵌入P3O105-阴离子可增强PP基体的阻燃性。预计在未来的应用中,LDH-P在阻燃剂配方中的应用将有发展。

著录项

  • 来源
    《Applied clay science》 |2018年第10期|196-203|共8页
  • 作者单位

    College of Chemical Engineering, Xiangtan University;

    College of Chemical Engineering, Xiangtan University;

    College of Chemical Engineering, Xiangtan University;

    College of Chemical Engineering, Xiangtan University;

    College of Chemical Engineering, Xiangtan University;

    College of Chemical Engineering, Xiangtan University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyphosphate hydrotalcite; Polypropylene; Composites; Flame retardant;

    机译:聚磷酸盐水滑石;聚丙烯;复合材料;阻燃剂;

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