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首页> 外文期刊>Journal of the European Ceramic Society >Effects of rheology on the interface of Pb(Zr, Ti)O_3 monofilament composites obtained by co-extrusion
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Effects of rheology on the interface of Pb(Zr, Ti)O_3 monofilament composites obtained by co-extrusion

机译:流变学对共挤Pb(Zr,Ti)O_3单丝复合材料界面的影响

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摘要

The production of lead zirconate titanate (PZT) fibres, 1-3, 3-1 and 2-2 composites for actuator and sensor applications through the thermoplastic co-extrusion process can be achieved by using a macro-scale preform shaped by two different extrudable mixtures. The main challenge of this method is the optimization of materials that can be co-extruded and at the same time maintain the preform geometry in the final product, without axial and cross-sectional deformation. In this work, rheological characterizations of PZT/polyethylene and carbon black/polyethylene feedstocks were carried out to produce monofilament composites by the co-extrusion process. To explore the interface instabilities resulting from the viscosity mismatch between the processed materials, the co-extrusion tests were performed varying the velocity of the piston during extrusion. Successful co-extrusion, with well preserved fibre morphologies and defined interface between the co-extruded materials, was achieved for viscosity ratios between the feedstocks ranging from 0.98 to 1.16. Outside of this range, interface distortions were observed.
机译:通过使用由两种不同的可挤压成型的大型预成型件,可以通过热塑性共挤工艺生产用于致动器和传感器的钛酸锆钛酸铅(PZT)纤维,1-3、3-1和2-2复合材料。混合物。该方法的主要挑战是优化可共挤出的材料,同时在最终产品中保持瓶坯的几何形状,而不会产生轴向和横截面变形。在这项工作中,进行了PZT /聚乙烯和炭黑/聚乙烯原料的流变学表征,以通过共挤出工艺生产单丝复合材料。为了探讨由于加工材料之间的粘度不匹配而导致的界面不稳定性,共挤出测试是通过在挤出过程中改变活塞的速度来进行的。对于原料之间的粘度比范围为0.98至1.16,可以成功地进行共挤出,同时保持良好的纤维形态和在共挤出材料之间定义的界面。在此范围之外,观察到界面变形。

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