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A facile method for the preparation of novel fire-retardant layered double hydroxide and its application as nanofiller in UP

机译:一种新型阻燃层状双氢氧化物的简便制备方法及其在UP中的纳米填料的应用

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摘要

A novel functionalized layered double hydroxide (SPDP-LDH) has been prepared through hydrothermal method by co-precipitation method based on spirocyclic pentaerythritol bisphosphorate disphosphoryl chlorine and Mg-Al-LDH (N-LDH). LDHs were homogenously mixed with unsaturated polyester resin (UP) to manufacture the final nanocomposites (LDH/UP). Various measurement methods have been employed to characterize the structure, morphology, thermal stability and combustible properties of intercalated LDH and its hybrid composites. These data revealed that the majority of N-LDH was intercalated by SPDP, and nano-sized particles of SPDP-LDH were achieved. SPDP-LDH had a better dispersion in UP compared with N-LDH. The TG data showed that the initial decomposition temperatures were delayed about 40 ℃ and 50 ℃ for 5wt % and 10wt %SPDP-LDH/UP nanocomposites respectively. The CC data presented that higher fire retardancy can also be obtained for SPDP-LDH/UP system based on the decreasing value of HRR and THR. Compared with N-LDH/UP system, the SPDP-LDH/UP nanocomposites presented an improvement in mechanical properties. In particular, a progressive increase 23.51% in flexural strength cam be observed at 5 wt% loading of SPDP-LDH.
机译:基于螺环季戊四醇双磷酸双磷酸二氯氯和Mg-Al-LDH(N-LDH)的共沉淀法,通过水热法制备了一种新型的功能化层状双氢氧化物(SPDP-LDH)。将LDH与不饱和聚酯树脂(UP)均匀混合以制造最终的纳米复合材料(LDH / UP)。已采用各种测量方法来表征插层LDH及其杂化复合材料的结构,形态,热稳定性和可燃性。这些数据表明,大多数N-LDH被SPDP嵌入,并且获得了纳米级的SPDP-LDH颗粒。与N-LDH相比,SPDP-LDH在UP中具有更好的分散性。 TG数据表明,对于5wt%和10wt%的SPDP-LDH / UP纳米复合材料,初始分解温度分别延迟了40℃和50℃。 CC数据表明,基于HRR和THR的降低值,SPDP-LDH / UP系统也可以获得更高的阻燃性。与N-LDH / UP系统相比,SPDP-LDH / UP纳米复合材料的机械性能有所提高。特别地,在5重量%的SPDP-LDH负载下,观察到挠曲强度逐渐增加23.51%。

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