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首页> 外文期刊>ACS applied materials & interfaces >Facile Fabrication of Electrically Conductive Low-Density Polyethylene/Carbon Fiber Tubes for Novel Smart Materials via Multiaxial Orientation
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Facile Fabrication of Electrically Conductive Low-Density Polyethylene/Carbon Fiber Tubes for Novel Smart Materials via Multiaxial Orientation

机译:通过多轴取向进行新型智能材料的导电低密度聚乙烯/碳纤维管的舒适性

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摘要

Electromechanical sensors are indispensable components in functional devices and robotics application. However, the fabrication of the sensors still maintains a challenging issue that high percolation threshold and easy failure of conductive network are derived from uniaxial orientation of conductive fillers in practical melt processing. Herein, we reported a facile fabrication method to prepare a multiaxial low-density polyethylene (LDPE)/carbon fibers (CFs) tube with bidirectional controllable electrical conductivity and sensitive strain-responsive performance via rotation extrusion technology. The multidimensional helical flow is confirmed in the reverse rotation extrusion, and the CFs readily respond to the flow field leading to a multiaxial orientation in the LDPE matrix. In contrast to uniaxial LDPE/CF composites, which perform a "head to head" conjunction, multiaxial-orientated CF networks exhibit a unique multilayer structure in which the CFs with distinct orientation direction intersect in the interface, endowing the LDPE/CF composites with a low percolation threshold (15 wt %) to those of the uniaxial ones (similar to 35 wt %). The angles between two axes play a vital role in determining the density of the conductive networks in the interface, which is predominant in tuning the bending-responsive behaviors with a gauge factor range from 12.5 to 56.3 and the corresponding linear respond region from similar to 15 to similar to 1%. Such a superior performance of conductive LDPE/CF tube confirms that the design of multiaxial orientation paves a novel way to facile fabrication of advanced cost-effective CF-based smart materials, shedding light on promising applications such as smart materials and intelligent engineering monitoring.
机译:机电传感器是功能装置和机器人应用中的不可或缺的组件。然而,传感器的制造仍然保持着一种具有挑战性的问题,即,在实际熔体加工中,导电网络的高渗透阈值和易于失败的导电填充剂的取向衍生。在此,我们报道了一种容易制造方法,用于制备多轴低密度聚乙烯(LDPE)/碳纤维(CFS)管,通过旋转挤出技术,具有双向可控电导率和敏感应变响应性能。在反向旋转挤出中确认了多维螺旋流,并且CFS容易响应流场,导致LDPE矩阵中的多轴取向。与执行“头部到头”结合的单轴LDPE / CF复合材料相比,多轴取向的CF网络具有独特的多层结构,其中CF具有不同方向方向的界面中的界面,赋予LDPE / CF复合材料低渗透阈值(15wt%)与单轴的阈值(15wt%)(类似于35wt%)。两个轴之间的角度在确定界面中的导电网络的密度方面发挥着重要作用,这在调整弯曲响应性的弯曲响应行为范围为12.5至56.3,并且相应的线性响应区域与15相似与1%相似。这种卓越的导电LDPE / CF管的性能证实,多轴取向的设计铺平了一种新颖的方式来构造先进的经济高效的基于CF的智能材料,在智能材料和智能工程监测等有前途的应用上脱落灯。

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