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十年的熔融电纺丝。

A Decade of Melt Electrowriting.

机构信息

Phil and Penny Knight Campus for Accelerating Scientific Impact, University of Oregon, 1505 Franklin Boulevard, Eugene, OR, 97403-6231, USA.

出版信息

Small Methods. 2023 Jul;7(7):e2201589. doi: 10.1002/smtd.202201589. Epub 2023 May 30.

Abstract

Over the past decade, melt electrowriting (MEW) has established the fundamental understanding of processing (and printer) requirements. Iterative work on parametric development and dissemination of this recent additive manufacturing technology has been performed across many systems and polymers (mainly poly-(ε-caprolactone)), showing similarities and trends. However, the software and hardware ecosystems of MEW are not mature. Further, due to its multi-parametric nature, MEW can be challenging for laboratories to master. This review intends to provide a unique perspective on the dynamic relationship between MEW processing parameters. Such parameters can be divided into 1) those that affect the polymer flow rate to or 2) from the nozzle, and 3) environmental conditions. The most influential parameters for high-quality printing are applied voltage, applied pressure, collector speed, polymer temperature, nozzle diameter, and the conditions that lead to charge buildup (e.g., relative humidity). Other factors such as ambient temperature, nozzle size, and protrusion, collector temperature and conductivity, and collector distance can all affect the process. Success for MEW printing means fibers fall onto the collector according to their pre-programmed path with predicted fiber diameter. Here, the authors elucidate how the dynamic relationship between these parameters can converge into ideal printing conditions to produce scaffolds.

摘要

在过去的十年中,熔融电纺 (MEW) 已经为加工(和打印机)要求奠定了基本的理解。许多系统和聚合物(主要是聚(ε-己内酯))都对这种最近的增材制造技术的参数开发和传播进行了反复的工作,展示了相似性和趋势。然而,MEW 的软件和硬件生态系统还不够成熟。此外,由于其多参数的性质,MEW 可能对实验室来说难以掌握。

本篇综述旨在提供一个独特的视角,来观察 MEW 加工参数之间的动态关系。这些参数可以分为 1)影响聚合物流向或从喷嘴流出的速度的参数,和 2)环境条件。对于高质量打印最具影响力的参数是施加电压、施加压力、收集器速度、聚合物温度、喷嘴直径,以及导致电荷积累的条件(例如,相对湿度)。其他因素,如环境温度、喷嘴尺寸和突出、收集器温度和导电性以及收集器距离,都可能影响该过程。

MEW 打印成功意味着纤维按照预定的路径落在收集器上,并且具有预测的纤维直径。在这里,作者阐明了这些参数之间的动态关系如何能够收敛到理想的打印条件,以产生支架。

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