Resumen: En esta investigación, se considera la vigilancia tecnológica de las nanofibras no tejidas a base de Nylon-6 producidas por electrospinning, diferentes parámetros sobre el proceso de electrospun (concentración, voltaje, distancia de punta a colector de aguja y caudal), fueron analizados para su aplicación en entornos hospitalarios. Se encontró que el Nylon 6 presenta buenas propiedades mecánicas, biocompatibilidad y eficiencia como filtros de agua que permite su uso en un proceso de electrospinning para desarrollar nanofibras no tejidas con porosidad, gran área superficial por unidad de masa y alta permeabilidad, lo que lo hace un material opcional para entornos hospitalarios. La variación de los parámetros de electrospinning favorece la conformación de nanofibras no tejidas, reduce las gotas y proporciona diámetros de nanofibras más pequeños.Palabras clave: Nylon-6, no tejido, nanofibra, nanotextil, electrospinning, entornos hospitalarios. Abstract:In this research, we consider about the technological surveillance of nonwoven nanofibers based on nylon-6 produced via electrospinning, different parameters about the process of electrospun (concentration, voltage, needle tip-to-collector distance, and flow rate), were analyzed for their application in hospital environments. We found that Nylon 6 exhibits good mechanical properties, biocompatibility, and efficiency as water filters that permits their use in a process of electrospinning to develop non-woven nanofibers with porosity, large surface area per unit mass, and high permeability, it makes a good option material for hospital environments. The variation of electrospinning parameters favors the conformation of non-woven nanofibers, reduce the drops, and provides smaller nanofiber diameters.
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