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Design and functionalisation of shoe outsoles with antimicrobial properties using additive manufacturing technologies: industrial applications

机译:使用添加剂制造技术的抗微生物性能的设计和功能性:工业应用

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Cross-contamination by people movement is a serious problem in food and health environments. This is caused by the need for workers to move around different areas of the workspace, carrying bacterial agents in their shoes from one place to another. The disinfection methods commonly used do not completely eliminate the microorganisms, mainly due to the porous structure of the outsole of the footwear used. This document presents a new prototype of functional footwear for these environments, whose outsole design has been functionalised in such a way that it is presented through two independent fundamental elements: a main body made of EVA by injection; and a footprint, in direct contact with the pavement, which can be exchanged for another pathogen-free footprint when deemed necessary, avoiding the transfer of microorganisms when the user moves from one place to another. This footprint is manufactured by fused-filament 3D printing, using thermoplastic polyurethane (TPU) material additivated with silver nanoparticles (AgNPs), which give it antimicrobial properties. The industrial design of these two elements has been carried out with the aim of guaranteeing a solid attachment between them, but at the same time allowing the replacement of footprints in a simple and fast way, and without requiring the use of additional auxiliary elements. Through the experimentation phase, the antimicrobial and cytotoxic properties of the developed footprint have been analysed, and the physical-mechanical properties of the footprint as a whole have been evaluated according to various standards. (C) 2020 Elsevier B.V. All rights reserved.
机译:人们运动的交叉污染是食品和健康环境中的严重问题。这是由于工人需要移动工作空间的不同区域,从一个地方携带鞋子的细菌剂。常用的消毒方法不完全消除微生物,主要是由于所使用的鞋的外底的多孔结构。本文档为这些环境提供了新的功能鞋原型,其外底设计具有功能化,使其通过两个独立的基本要素:通过注射由EVA制成的主体;和占地面积,直接接触路面,在认为必要时可以换成另一种无病原体的占地面积,避免使用者当用户从一个地方移动到另一个地方时的微生物转移。该占地面积是通过熔融灯丝3D打印制造的,使用与银纳米颗粒(AgNP)加入的热塑性聚氨酯(TPU)材料,其给予IT抗微生物性质。这两个元素的工业设计已经进行,目的是保证它们之间的固体附件,但同时允许以简单快速的方式更换脚印,并且不需要使用额外的辅助元件。通过实验阶段,已经分析了发育占地面积的抗微生物和细胞毒性,并且根据各种标准评估了整体占地面积的物理机械性能。 (c)2020 Elsevier B.V.保留所有权利。

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