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Preparing iPP/HDPE/CB functionally gradient materials: influence factors of components and processing

机译:准备iPP / HDPE / CB功能梯度材料:组件和加工的影响因素

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摘要

In this work, gradient materials with low electrical resistivity were prepared by compounding isotactic polypropylene (iPP)/high density polyethylene (HDPE) blends with carbon black (CB) through extruding and injection molding. Contact angle measurements and morphology measurements showed that the CB particles were selectively located in HDPE phase and the final composites had a gradient structure that the HDPE/CB phase exhibited different morphologies in the skin layer and core layer of the composites under different processing procedures. The main factors influencing the formation of the functional gradient materials (FGM), including screw speed during extruding, iPP types and CB contents were discussed. They affect the phase morphology by shear stress, the restoration of HDPE phase, and the viscosity ratio of polymer blends, respectively. In conclusion, iPP/HDPE/CB FGM could be formed easily in the composites blending with the iPP type with narrow molecular weight distribution (MWD) and higher CB content extruded at higher screw speed. The electrical properties of iPP/HDPE/CB composites were studied and the results showed that screw speed in extrusion significantly influenced the percolation curve and electrical property of the final composites.
机译:在这项工作中,通过将等规聚丙烯(iPP)/高密度聚乙烯(HDPE)共混物与炭黑(CB)混合,通过挤出和注塑成型,制备了低电阻率的梯度材料。接触角测量和形态学测量表明,CB颗粒选择性地位于HDPE相中,并且最终的复合材料具有梯度结构,HDPE / CB相在不同的加工程序下在复合材料的表皮层和芯层中表现出不同的形态。讨论了影响功能梯度材料(FGM)形成的主要因素,包括挤出过程中的螺杆速度,iPP类型和CB含量。它们分别通过剪切应力,HDPE相的恢复和聚合物共混物的粘度比影响相形态。综上所述,iPP / HDPE / CB FGM可以很容易地与分子量分布窄(MWD)且以较高螺杆速度挤出的较高CB含量的iPP型共混物形成。研究了iPP / HDPE / CB复合材料的电性能,结果表明,挤出时的螺杆速度显着影响最终复合材料的渗透曲线和电性能。

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