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首页> 外文期刊>Macromolecules >Steady-shear rheology of block copolymer melts and concentrated solutions: Disordering stress in body-centered-cubic systems
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Steady-shear rheology of block copolymer melts and concentrated solutions: Disordering stress in body-centered-cubic systems

机译:嵌段共聚物熔体和浓缩溶液的稳态剪切流变:体心立方系统中的无序应力

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摘要

We use steady-shear rheology to study the shear-disordering phenomenon in block copolymers in the body-centered-cubic (bee) mesophase. Polystyrene-polyisoprene and polystyrene-poly-(ethylene-alt-propylene) diblock, triblock, and starblock systems of varying molecular weight and composition were studied in the melt and as concentrated solutions in a selective solvent. The bee lattice exhibits a low-frequency modulus G(bcc)(0) which scales with the cube of the lattice spacing and additionally depends only on the proximity to the order-disorder transition (ODT). Steady shear destroys the bee lattice at a critical shear stress, which is found to be directly proportional to the lattice modulus: tau(c) = 0.038G(bcc)(0) for all block copolymer melts and highly concentrated solutions investigated. The critical stress is thus uniquely determined by the lattice spacing and the proximity to the ODT. The rheological behavior conforms in a remarkably quantitative manner to the shear-melting processes observed in other soft crystalline systems, such as colloidal crystals. [References: 53]
机译:我们使用稳态剪切流变学来研究体心立方(蜂)中间相中嵌段共聚物的剪切无序现象。研究了分子量和组成不同的聚苯乙烯-聚异戊二烯和聚苯乙烯-聚-(乙烯-丙烯-丙烯)二嵌段,三嵌段和星形嵌段体系,在熔融状态下以及在选择性溶剂中的浓缩溶液形式。蜜蜂晶格表现出低频模量G(bcc)(0),它随晶格间距的立方变化,并且仅取决于与无序过渡(ODT)的接近程度。稳定剪切在临界剪切应力下破坏了蜂的晶格,该剪切应力与晶格模量成正比:对于所有嵌段共聚物熔体和所研究的高浓度溶液,tau(c)= 0.038G(bcc)(0)。因此,临界应力由晶格间距和与ODT的接近程度唯一地确定。流变行为以非常定量的方式符合在其他软晶体系统(例如胶体晶体)中观察到的剪切熔融过程。 [参考:53]

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