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Efficient preparation of PDMS-based conductive composites using self-designed automatic equipment and an application example

机译:使用自行设计的自动设备高效制备基于PDMS的导电复合材料及其应用实例

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摘要

In this paper, the fabrication process of poly-dimethylsiloxane (PDMS)-based microstructured conductive composites via differential temperature hot embossing was proposed based on the spatial confining forced network assembly theory. The mold temperature was kept constant throughout the whole embossing cycle in this method, whereas the setting temperatures of the upper and lower molds were different. To solve the problem of poor conveying performance, a double-station automatic hot embossing equipment was designed and developed. A "bullet-filled" accurate feeding system was designed aiming at the high viscosity and feeding difficulty of blended PDMS-based composites before curing. Dispersion mold and semifixed compression mold were designed according to different functional requirements of different workstations. The developed automatic hot embossing equipment had already been successfully applied to the continuous preparation of conductive composites with greatly improved processing precision and efficiency. Furthermore, the conductive composites with and without microstructures can be used as flexible sensors for pressure measurements.
机译:本文基于空间约束强制网络组装理论,提出了一种基于差压热压花的聚二甲基硅氧烷(PDMS)基微结构导电复合材料的制备工艺。在此方法中,模具温度在整个压花循环中保持恒定,而上,下模具的凝固温度不同。为了解决输送性能差的问题,设计开发了一种双工位自动热压花设备。针对固化前混合的PDMS基复合材料的高粘度和进料难度,设计了“弹丸式”精确进料系统。根据不同工位的不同功能要求设计了分散模和半固定压模。所开发的自动热压花设备已经成功地用于导电复合材料的连续制备,大大提高了加工精度和效率。此外,具有和不具有微结构的导电复合材料可用作用于压力测量的柔性传感器。

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