LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Enhanced electrospinning: Multi-level fiber alignment by control of electrohydrodynamic jet motion for tissue engineering

Photo from wikipedia

Abstract This paper proposes a novel electrospinning method for controllable fiber alignment and deposition on a dielectric substrate by the electric field manipulation using nanosecond rise time high-voltage pulse generators.… Click to show full abstract

Abstract This paper proposes a novel electrospinning method for controllable fiber alignment and deposition on a dielectric substrate by the electric field manipulation using nanosecond rise time high-voltage pulse generators. A peculiarity of the proposed technical solution is the ability to control polymer jet localization in the interelectrode space with the possibility of stabilization and retention of the jet at an arbitrary point. A preliminary numerical simulation shows electric field distribution in proposed geometry with a syringe and two cylindrical collectors. Samples of oriented materials based on a polyamide 6/66 copolymer with 2–4° degrees of disorientation were obtained. The study of thermal and mechanical behavior of oriented materials based on polyamide was carried out, and for the first time for electrospun fibers the microscale orientation effects of polymer crystallites were found by X-ray diffraction in small and wide angles. Orientation occurs in the developed materials both at macro and micro levels. The possibility to create material by stacking multiple layers with given fiber orientation at 65° and 90° and polymer spinning on various dielectric materials by means of the reverse polarity operating principle is demonstrated. The ability to control fiber alignment in electrospinning will expand the possibilities of high-performance production of polymeric nonwoven materials with a given architecture and unique physicochemical characteristics required for solving a whole range of medical and technological challenges of a different profile.

Keywords: engineering; fiber alignment; control; enhanced electrospinning; jet; electrospinning multi

Journal Title: Chemical Engineering Journal
Year Published: 2020

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.