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THE INFLUENCE OF BLOCK COPOLYMERS ON SILICA-FILLED POLYISOPRENE

机译:嵌段共聚物对硅胶填充聚异戊二烯的影响

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In the present work, precipitated silica, liquid polyisoprene, and PDMS-PI block copolymer are mixed in different formulations. The dynamic rheological properties of the resulting uncured materials are measured and are used to assess filler-filler networking. In small-amplitude tests, composites containing PDMS-PI exhibit lower values of the dynamic storage modulus (G') than those observed in control samples prepared without copolymer additives. The control samples remain stable during several months of storage, while samples containing low molecular weight block copolymers show evidence-of an aging process. The rheological manifestations of this aging include a pronounced decrease in small-amplitude G' with time, accompanied by weakening amplitude-dependence of both G' and G". These suggest a progressive reduction of filler-filler interactions, presumably caused by the development of a block copolymer layer at the filler-polymer interface. The make-up of that interfacial region is investigated by means of magic-angle spinning solid-state 'H NMR experiments carried out on bound polymer fractions that survive extraction in a good solvent. Spin-spin relaxation times and the intensities of the relaxation modes associated with these characteristic times are used to identify the proportion of both PDMS and polyisoprene among the segments strongly immobilized by close contact with the silica surface and among the rest of the bound (un-extiacted) inteifacial layer. The changes in mechanical properties are correlated not with the overall composition of the bound polymer fraction, but with the increase in PDMS segments in close contact with the filler surface.
机译:在本工作中,沉淀二氧化硅,液态聚异戊二烯和PDMS-PI嵌段共聚物以不同的配方混合。测量所得未固化材料的动态流变性,并用于评估填料-填料网络。在小振幅测试中,与没有共聚物添加剂的对照样品相比,含有PDMS-PI的复合材料的动态储能模量(G')较低。对照样品在储存的几个月中保持稳定,而含有低分子量嵌段共聚物的样品显示出老化过程的迹象。这种老化的流变学表现包括小幅度的G'随时间显着下降,同时伴随着G'和G“的幅度依赖性减弱。这表明填充物与填充物之间的相互作用逐渐降低,这可能是由于填料-聚合物界面处的嵌段共聚物层通过魔术角旋转固态'H NMR实验研究了该界面区域的组成,该实验对能在良好溶剂中萃取的结合聚合物馏分进行了研究。自旋弛豫时间和与这些特征时间相关的弛豫模式强度用于确定PDMS和聚异戊二烯在通过与二氧化硅表面紧密接触而牢固固定的链段中以及在结合的其余部分(未延伸)中的比例力学层的变化与结合的聚合物级分的整体组成无关,而与轻松地使PDMS段与填料表面紧密接触。

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