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Effect of processing parameters on phase morphology and mechanical properties of thermoplastic polyurethane and polydimethylsiloxane rubber blends

机译:工艺参数对热塑性聚氨酯和聚二甲基硅氧烷橡胶共混物相形态和力学性能的影响

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摘要

Properties of polymer blends are generally controlled by the characteristics of the individual components, the processing conditions, morphology developed during processing and the interaction between the different blend constituents. The effect of processing parameters on the morphology of thermoplastic polyurethane (TPU)-polydimethylsiloxane rubber (PDMS) blends has been investigated in a Brabender Plastograph, an internal mixer. Phase morphology of the blends has been analyzed using image processing technique to assess the dispersed domain size, domain size distribution and area of each dispersed domain. Taguchi methodology has been adopted to quantify the effect of processing conditions on the mechanical properties of the TPU-PDMS blends. The average shear rate experienced inside the mixing chamber of Brabender Plastograph has been determined and this data has been correlated with the rheological properties to evaluate the viscosity ratio of the blends. The effect of viscosity ratio on the phase morphology of TPU-PDMS blends has been studied and the results are found to be in agreement with those of the effect of processing conditions on the mechanical properties of the blends. The lowest viscosity ratio leads to favorable droplet/matrix morphology resulting in higher mechanical strength properties. Palierne model has been used to estimate the interfacial adhesion between the polymer components in the blends of droplet/matrix morphology which is found to be as low as 3mN/m. This may considered to be the reason for a wide deviation from the log additive rule for the complex modulus of the blends.
机译:聚合物共混物的性能通常由各个组分的特性,加工条件,加工过程中形成的形态以及不同共混物成分之间的相互作用控制。在内部混合机Brabender Plastograph中研究了加工参数对热塑性聚氨酯(TPU)-聚二甲基硅氧烷橡胶(PDMS)共混物形态的影响。已经使用图像处理技术分析了共混物的相形态,以评估分散域尺寸,区域尺寸分布和每个分散域的面积。 Taguchi方法已被用来量化加工条件对TPU-PDMS共混物机械性能的影响。已经确定了Brabender Plastograph混合室内的平均剪切速率,该数据已与流变特性相关联,以评估共混物的粘度比。研究了粘度比对TPU-PDMS共混物相形态的影响,发现结果与加工条件对共混物机械性能的影响相吻合。最低的粘度比导致良好的液滴/基体形态,从而导致更高的机械强度性能。 Palierne模型已用于估计液滴/基质形态混合物中聚合物组分之间的界面粘合力,该界面粘合力低至3mN / m。这可能被认为是与共混物的复数模量的对数加法规则相差很大的原因。

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