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Shear-induced morphologies of cubic ordered block copolymer micellar networks studied by in situ small-angle neutron scattering and rheology

机译:通过原位小角中子散射和流变学研究立方有序嵌段共聚物胶束网络的剪切诱导形貌

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Triblock copolymers in a solvent selective for their middle blocks provide the basis for the formation of novel physical networks in which cross-links are formed by self-assembled domains of the end blocks. Triblock copolymers of poly(styrene)-poly(ethylene butylene)-poly(styrene),(SEBS) dissolved in oil constitute such a network system of thermoplastic elastomer. We present combined mechanical and structural data on such SEBS gels as studied using a Rheometrics RSA-2 instrument modified for in situ measurements of small-angle neutron scattering and rheology. The self-association of the PS blocks not only promotes the formation of highly interconnected end-block domains but, within a given temperature range, constitutes a network with body-centered cubic (bcc) microstructure. The texture of the bcc phase can, within a given temperature window, be controlled in great detail by applying large-amplitude oscillatory shear of specific amplitude,and frequency. We map out the shear-induced morphology and show that both {111}/<112> and {110}/<111> domain texture can be made, where {hkl} and {hkl} represent the crystal plane and crystal axis parallel to the (υ) over bar(V) over bar shear plane and (υ) over bar shear direction, respectively. The thermodynamically stable cubic phase is limited at high-temperature by an order-disorder transition and at low temperature by the glass transition of polystyrene. [References: 54]
机译:在对中间嵌段具有选择性的溶剂中的三嵌段共聚物为形成新型物理网络提供了基础,在该新型物理网络中,交联是由末端嵌段的自组装域形成的。溶于油中的聚(苯乙烯)-聚(乙烯丁烯)-聚(苯乙烯),(SEBS)的三嵌段共聚物构成了这种热塑性弹性体的网络体系。我们提供了有关SEBS凝胶的综合机械和结构数据,这些数据是使用Rheometrics RSA-2仪器进行改进的,该仪器经改进用于小角度中子散射和流变学的原位测量。 PS嵌段的自缔合不仅促进高度互连的端嵌段结构域的形成,而且在给定的温度范围内,构成具有体心立方(bcc)微结构的网络。 bcc相的织构可以在给定的温度范围内,通过应用特定幅度和频率的大振幅振荡剪切来控制。我们绘制了剪切诱导的形貌,并显示{111} / <112>和{110} / <111>域织构均可以进行,其中{hkl}和{hkl}表示平行于晶面的晶体轴(υ)在钢筋剪切平面上的(υ)和在钢筋剪切方向上的(υ)分别。热力学稳定的立方相在高温下受到有序-无序转变的限制,而在低温下受到聚苯乙烯的玻璃化转变的限制。 [参考:54]

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