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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Synergistic Effect of Novel Synergists–Transition Metal Ion-incorporated Nickel Phosphates with Intumescent Flame Retardants in Polypropylene
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Synergistic Effect of Novel Synergists–Transition Metal Ion-incorporated Nickel Phosphates with Intumescent Flame Retardants in Polypropylene

机译:新型增效剂-过渡金属离子结合的磷酸镍与膨胀型阻燃剂在聚丙烯中的协同效应

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摘要

The two kinds of transition metal ion-incorporated nickel phosphates (TMIVSB-1) were synthesized by the hydrothermal method.The flame retardancy and thermal behavior of intumescent flame retardants (IFR), with and without TMIVSB-1 for PP, wereinvestigated by LOI, UL-94 test, thermogravimetric analyses (TGA) and cone calorimetry. TMIVSB-1 can obviously improve theflame retardant behavior of IFR systems according to the results of LOI values and UL-94 test. The results of LOI show that 2 wt%TMIVSB-1 can increase the LOI value by 3-5 unit compared with that of PP/IFR composite. The UL-94 test shows that PP with 20%IFR burns and has no rating, but the addition of a small content 2 wt% of TMIVSB-1 with 18 wt% of IFR can reach a UL-94 V-0rating. TGA results show that the thermal stability of PP/IFR/TM IVSB-1 increases obviously more than that of PP/IFR when thetemperature is above 265°C. From cone calorimetry results, it can be observed that the HRR peaks are not obviously decreased, butthe burning time of PP/IFR/FeVSB-1 (351s) and PP/IFR/ZnVSB-1 (380s) is obviously prolonged compared with that of PP/IFR(303s).The real time FTIR spectra (RTFTIR) demonstrates that the addition of TMIVSB-1 further staves the decomposition of thePP composites. The scanning electron microscopy (SEM) indicates the quality of char forming of PP/IFR/ TMIVSB-1 is superiorto that of PP/IFR.
机译:通过水热法合成了两种过渡金属离子结合的磷酸镍(TMIVSB-1)。LOI研究了有和无TMIVSB-1的PP用膨胀型阻燃剂(IFR)的阻燃性和热行为, UL-94测试,热重分析(TGA)和锥形量热法。根据LOI值和UL-94测试结果,TMIVSB-1可以明显改善IFR系统的阻燃性能。 LOI的结果表明,与PP / IFR复合材料相比,重量百分比为2%的TMIVSB-1可使LOI值提高3-5个单位。 UL-94测试表明,具有20%IFR的PP会燃烧并且没有评级,但是添加少量的2wt%的TMIVSB-1和18%的IFR可以达到UL-94 V-0等级。 TGA结果表明,当温度高于265°C时,PP / IFR / TM IVSB-1的热稳定性明显高于PP / IFR。从锥形量热法的结果可以看出,HRR峰值并没有明显降低,但是PP / IFR / FeVSB-1(351s)和PP / IFR / ZnVSB-1(380s)的燃烧时间明显延长。 PP / IFR(303s)。实时FTIR光谱(RTFTIR)表明,添加TMIVSB-1可以进一步阻止PP复合材料的分解。扫描电子显微镜(SEM)表明,PP / IFR / TMIVSB-1的炭形成质量优于PP / IFR。

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