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PVC formulation study for the manufacturing of a skin smart structure based in optical fiber elements

机译:PVC配方研究,用于制造基于光纤元件的皮肤智能结构

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The development of smart solutions based on optical fiber technology for any kind of structure such as buildings, aircrafts, or even for human body kinematics, is becoming more and more common. The ability to provide coverings for different structures that can enable monitoring functions beside the esthetic purpose of the covering is an important add-value characteristic. Nevertheless, an open issue is to find an effective solution for the fabrication and application procedure, preferably that scales at a production level. This article explores the insertion of optical fibers into polymeric PVC foils based on the spread-coating fabrication process. The success of this integration approach allows the use of photonic technology in different fields with minor application issues. The material choice for the substrate is a crucial step when choosing integrated solution. Three PVC paste formulations were explored in order to guarantee the optimal integration of optical fiber. A high-viscosity and not monolithic paste formulation emerged as the best choice. This formulation provided the best adhesion, reducing in great scale the surface undulation and paste displacement that the optical fiber tends to do and, its 362% stretch capability is sufficient for special applications, as strain sensitive one.
机译:基于光纤技术的智能解决方案在建筑物,飞机,甚至人体运动学等任何类型的结构上的开发越来越普遍。为不同的结构提供覆盖物的功能不仅可以实现覆盖物的美学目的,还可以实现监视功能,这是一项重要的附加值特性。然而,未解决的问题是为制造和应用程序找到有效的解决方案,最好在生产水平上扩大规模。本文探讨了基于铺涂工艺将光纤插入聚合物PVC箔中的过程。这种集成方法的成功实现,使得光子技术可以在不同的领域中使用,而存在一些小的应用问题。选择集成解决方案时,基板的材料选择是至关重要的一步。为了保证光纤的最佳集成,研究了三种PVC糊剂配方。最好的选择是高粘度而不是整体的糊剂配方。这种配方可提供最佳的粘合力,可大幅度减少光纤趋向于产生的表面起伏和焊膏位移,并且其362%的拉伸能力足以应对特殊应用,如应变敏感型产品。

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