Controlling Topography and Crystallinity of Melt Electrowritten Poly(e-Caprolactone) Fibers

被引:17
作者
Blum, Carina [1 ,2 ]
Weichhold, Jan [1 ,2 ]
Hochleitner, Gernot [1 ,2 ]
Stepanenko, Vladimir [3 ]
Wuerthner, Frank [3 ,4 ,5 ]
Groll, Juergen [1 ,2 ]
Jungst, Tomasz [1 ,2 ]
机构
[1] Univ Wurzburg, Inst Funct Mat & Biofabricat IFB, Dept Funct Mat Med & Dent, Pleicherwall 2, D-97070 Wurzburg, Germany
[2] Bavarian Polymer Inst BPI, KeyLab Polymers Med, Pleicherwall 2, D-97070 Wurzburg, Germany
[3] Univ Wurzburg, Inst Organ Chem, Wurzburg, Germany
[4] Univ Wurzburg, Ctr Nanosyst Chem CNC, Wurzburg, Germany
[5] Univ Wurzburg, Bavarian Polymer Inst, Wurzburg, Germany
基金
欧洲研究理事会;
关键词
melt electrowriting; poly(ɛ -caprolactone); fiber topography; process parameters;
D O I
10.1089/3dp.2020.0290
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Melt electrowriting (MEW) is an aspiring 3D printing technology with an unprecedented resolution among fiber-based printing technologies. It offers the ability to direct-write predefined designs utilizing a jet of molten polymer to fabricate constructs composed of fibers with diameters of only a few micrometers. These dimensions enable unique construct properties. Poly(e-caprolactone) (PCL), a semicrystalline polymer mainly used for biomedical and life science applications, is the most prominent material for MEW and exhibits excellent printing properties. Despite the wealth of melt electrowritten constructs that have been fabricated by MEW, a detailed investigation, especially regarding fiber analysis on a macro- and microlevel is still lacking. Hence, this study systematically examines the influence of process parameters such as spinneret diameter, feeding pressure, and collector velocity on the diameter and particularly the topography of PCL fibers and sheds light on how these parameters affect the mechanical properties and crystallinity. A correlation between the mechanical properties, crystallite size, and roughness of the deposited fiber, depending on the collector velocity and applied feeding pressure, is revealed. These findings are used to print constructs composed of fibers with different microtopography without affecting the fiber diameter and thus the macroscopic assembly of the printed constructs.
引用
收藏
页码:315 / 321
页数:7
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