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Conductive Cellulose based Foam Formed 3D Shapes—From Innovation to Designed Prototype

机译:导电纤维素基泡沫形成3D形状-从创新到设计原型

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摘要

In this article, we introduce for the first time, a method to manufacture cellulose based electrically conductive non-woven three-dimensional (3D) structures using the foam forming technology. The manufacturing is carried out using a minimum amount of processing steps, materials, and hazardous chemicals. The optimized solution applies a single surfactant type and a single predefined portion for the two main processing steps: (1) the dispersing of nanocellulose (NC) and carbon nanotubes (CNT) and (2) the foam forming process. The final material system has a concentration of the used surfactant that is not only sufficient to form a stable and homogeneous nanoparticle dispersion, but it also results in stable foam in foam forming. In this way, the advantages of the foam forming process can be maximized for this application. The cellulose based composite material has a highly even distribution of CNTs over the NC network, resulting a conductivity level of 7.7 S/m, which increased to the value 8.0 S/m after surfactant removal by acetone washing. Also, the applicability and a design product case ‘Salmiakki’ were studied where the advantages of the material system were validated for a heating element application.
机译:在本文中,我们首次介绍了一种使用泡沫成型技术制造纤维素基导电非织造三维(3D)结构的方法。使用最少的加工步骤,材料和危险化学品进行制造。优化的解决方案在两个主要处理步骤中应用了单一的表面活性剂类型和单一的预定义部分:(1)纳米纤维素(NC)和碳纳米管(CNT)的分散,以及(2)泡沫形成过程。最终的材料体系具有一定浓度的所用表面活性剂,其浓度不仅足以形成稳定且均匀的纳米颗粒分散体,而且还能在泡沫形成中产生稳定的泡沫。以这种方式,对于该应用,可以最大化泡沫形成过程的优点。纤维素基复合材料在NC网络上具有高度均匀的CNT分布,导致电导率水平为7.7 S / m,在通过丙酮洗涤除去表面活性剂后,电导率水平增加到8.0 S / m。此外,还研究了适用性和设计产品案例“ Salmiakki”,其中材料系统的优点在加热元件应用中得到了验证。

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