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Morphological, Mechanical Properties, and Fracture Behavior of Bulk-Made ABS Resins Toughened by High-cis Polybutadiene Rubber

机译:高顺式聚丁二烯橡胶增韧的块状ABS树脂的形态,力学性能和断裂行为

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摘要

Acrylonitrile-butadiene-styrene (ABS) resins with various rubber contents were prepared by applying nickel catalyzed high-cis polybutadiene rubber (BR9004) as toughening agent via bulk polymerization. The influence of rubber content and its characteristics on the morphology, mechanical properties, and fracture mechanisms of ABS resins were investigated. The relevant performance parameters were also evaluated and compared with a commercial injection grade resin (ABS-8434). The results show that each synthesized resin generally contains some irregular microsized particles with a certain amount of subinclusions besides the analogous 'sea-island' morphology to ABS-8434. The subinclusions considerably enhance the volume fraction of rubber phase; this leads to an increasing maximum loss tangent (tan δ) value, a decreasing storage modulus and glass transition temperature (T_g) of rubber phase. Besides, the higher grafting degree can not only produce a higher T_g of grafted copolymer but also improve the compatibility of rubber phase with matrix. Based on the performance measurements and fractography, the final product with a rubber content of 9.3% reveals ductile fracture behavior and excellent comprehensive properties far superior to ABS-8434 due to combined shear yielding and massive crazing.
机译:通过本体聚合将镍催化的高顺式聚丁二烯橡胶(BR9004)用作增韧剂,制得了各种橡胶含量的丙烯腈-丁二烯-苯乙烯(ABS)树脂。研究了橡胶含量及其特性对ABS树脂形态,力学性能和断裂机理的影响。还评估了相关的性能参数,并将其与商用注塑级树脂(ABS-8434)进行了比较。结果表明,除了类似于ABS-8434的“海岛”形态外,每种合成树脂通常都包含一些不规则的微细颗粒,并带有一定数量的亚夹杂物。次夹杂物显着提高了橡胶相的体积分数;这导致橡胶相的最大损耗角正切值(tanδ)增加,储能模量降低和玻璃化转变温度(T_g)降低。此外,较高的接枝度不仅可以产生较高的接枝共聚物T_g,而且可以提高橡胶相与基体的相容性。根据性能测量结果和分形图,橡胶含量为9.3%的最终产品具有良好的剪切屈服性和大量开裂性,显示出韧性的断裂行为和出色的综合性能,远优于ABS-8434。

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