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首页> 外文期刊>Journal of Applied Polymer Science >MICROSTRUCTURE AND MECHANICAL PROPERTIES OF TERNARY PHASE POLYPROPYLENE/ELASTOMER/MAGNESIUM HYDROXIDE FIRE-RETARDANT COMPOSITIONS
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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF TERNARY PHASE POLYPROPYLENE/ELASTOMER/MAGNESIUM HYDROXIDE FIRE-RETARDANT COMPOSITIONS

机译:三元相聚丙烯/弹性体/氢氧化镁阻燃组合物的微观结构和力学性能

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Fire-retardant polypropylene (PP) composites were prepared by combining this polymer with uncoated and surface treated forms of magnesium hydroxide filler and various elastomeric modifiers, with and without maleic anhydride functionalization. Mechanical properties of binary and ternary phase compositions differed significantly and are discussed in terms of their microstructures (determined principally by SEM and FTIR) and the relative interaction of the components. Impact strength, in particular, was strongly influenced by the presence of filler surface treatment and the degree of rubbery phase dispersion. FTIR showed that functionalized ethylene-propylene rubber (F-EPR) reacted with the surface of uncoated magnesium hydroxide leading to extensive rubber encapsulation and an improvement in toughness relative to unmodified EPR, which was present in the matrix only as phase dispersed droplets. However, by blending F-EPR with filler surface treated with magnesium stearate, encapsulation was inhibited and the rubber was preferentially dispersed in the PP matrix. This formulation resulted in both improved filler-matrix interaction and enhanced matrix toughening leading to a further increase in impact strength. The effects of material composition on melt flow behavior and UL94 flammability rating, are also reported. (C) 1996 John Wiley & Sons, Inc. [References: 64]
机译:阻燃聚丙烯(PP)复合材料是通过将这种聚合物与未涂覆和表面处理的氢氧化镁填料以及各种弹性体改性剂(有或没有马来酸酐官能化)混合而制备的。二元和三元相组成的机械性能差异很大,并就其微观结构(主要由SEM和FTIR确定)和各组分的相对相互作用进行了讨论。特别地,冲击强度受到填料表面处理的存在和橡胶相分散程度的强烈影响。 FTIR显示功能化的乙丙橡胶(F-EPR)与未涂覆的氢氧化镁表面反应,导致橡胶广泛包封,并且相对于未改性的EPR而言,韧性得到了改善,后者仅以相分散的液滴形式存在于基体中。然而,通过将F-EPR与经硬脂酸镁处理的填料表面共混,抑制了包封,并且橡胶优先分散在PP基体中。这种配方既改善了填料与基体的相互作用,又增强了基体的韧性,从而进一步提高了冲击强度。还报告了材料成分对熔体流动行为和UL94易燃性等级的影响。 (C)1996 John Wiley&Sons,Inc. [参考:64]

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