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Continuous micron-scaled rope engineering using a rotating multi-nozzle electrospinning emitter

机译:使用旋转的多喷嘴静电纺丝机进行连续微米级的绳索工程

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摘要

Electrospinning (ES) enables simple production of fibers for broad applications (e.g., biomedical engineering, energy storage, and electronics). However, resulting structures are predominantly random; displaying significant disordered fiber entanglement, which inevitably gives rise to structural variations and reproducibility on the micron scale. Surface and structural features on this scale are critical for biomaterials, tissue engineering, and pharmaceutical sciences. In this letter, a modified ES technique using a rotating multi-nozzle emitter is developed and utilized to fabricate continuous micron-scaled polycaprolactone (PCL) ropes, providing control on fiber intercalation (twist) and structural order. Micron-scaled ropes comprising 312 twists per millimeter are generated, and rope diameter and pitch length are regulated using polymer concentration and process parameters. Electric field simulations confirm vector and distribution mechanisms, which influence fiber orientation and deposition during the process. The modified fabrication system provides much needed control on reproducibility and fiber entanglement which is crucial for electrospun biomedical materials.
机译:静电纺丝(ES)使纤维的生产变得简单,可用于广泛的应用(例如生物医学工程,能量存储和电子学)。但是,最终的结构主要是随机的。表现出明显的无序纤维缠结,不可避免地引起微米级的结构变化和重现性。如此规模的表面和结构特征对于生物材料,组织工程和制药科学至关重要。在这封信中,开发了一种使用旋转多喷嘴发射器的改良ES技术,并将其用于制造连续微米级的聚己内酯(PCL)绳索,从而提供了对纤维插层(扭曲)和结构顺序的控制。产生每毫米312捻的微米级绳索,并使用聚合物浓度和工艺参数调节绳索直径和节距长度。电场模拟确定了矢量和分布机制,这些机制会影响过程中的纤维取向和沉积。改进的制造系统提供了对重现性和纤维缠结的急需控制,这对于电纺生物医学材料至关重要。

著录项

  • 来源
    《Applied Physics Letters》 |2016年第15期|151903.1-151903.4|共4页
  • 作者单位

    Key Laboratory for Biomedical Engineering of Education Ministry of China, Hangzhou 310027, People's Republic of China ,Zhejiang Provincial Key Laboratory of Cardio-Cerebral Vascular Detection Technology and Medicinal Effectiveness Appraisal, Hangzhou 310027, People's Republic of China;

    Key Laboratory for Biomedical Engineering of Education Ministry of China, Hangzhou 310027, People's Republic of China;

    Key Laboratory for Biomedical Engineering of Education Ministry of China, Hangzhou 310027, People's Republic of China ,Zhejiang Provincial Key Laboratory of Cardio-Cerebral Vascular Detection Technology and Medicinal Effectiveness Appraisal, Hangzhou 310027, People's Republic of China;

    Leicester School of Pharmacy, De Montfort, University, The Gateway, Leicester LE1 9BH, United Kingdom;

    Key Laboratory for Biomedical Engineering of Education Ministry of China, Hangzhou 310027, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:14:53

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