Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids

Ching Wen Lou, Po Ching Lu, Jin-Jia Hu, Syue Wun Fu, Jia Horng Lin

研究成果: Conference contribution

摘要

Polylactic acid (PLA) is a synthetic polymer that has biocompatibility and biodegradation. This study aims to examine the influence of manufacturing parameters on the physical properties of tubular PLA/Spandex/Gelatin composite braids. PLA fibers and spandex are combined, braided and then immersed in gelatin solution to form tubular PLA/Spandex/Gelatin composite braids. The tensile strength, bursting strength, and porosity of the resulting braids are tested, and the experiment results show that a greater twist per inch (T.P.I.) causes a higher tensile strength and bursting strength, but does not change the porosity distinctively.

原文English
主出版物標題Materials, Manufacturing Engineering and Information Technology
發行者Trans Tech Publications
頁面165-169
頁數5
ISBN(列印)9783038350651
DOIs
出版狀態Published - 2014 一月 1
事件2nd International Conference on Advanced Composite Materials and Manufacturing Engineering, CMME 2014 - Wuhan, China
持續時間: 2014 三月 222014 三月 23

出版系列

名字Advanced Materials Research
910
ISSN(列印)1022-6680

Other

Other2nd International Conference on Advanced Composite Materials and Manufacturing Engineering, CMME 2014
國家China
城市Wuhan
期間14-03-2214-03-23

指紋

Acids
Composite materials
Tensile strength
Porosity
Biodegradation
Biocompatibility
Physical properties
Fibers
Polymers
Experiments

All Science Journal Classification (ASJC) codes

  • Engineering(all)

引用此文

Lou, C. W., Lu, P. C., Hu, J-J., Fu, S. W., & Lin, J. H. (2014). Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids. 於 Materials, Manufacturing Engineering and Information Technology (頁 165-169). (Advanced Materials Research; 卷 910). Trans Tech Publications. https://doi.org/10.4028/www.scientific.net/AMR.910.165
Lou, Ching Wen ; Lu, Po Ching ; Hu, Jin-Jia ; Fu, Syue Wun ; Lin, Jia Horng. / Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids. Materials, Manufacturing Engineering and Information Technology. Trans Tech Publications, 2014. 頁 165-169 (Advanced Materials Research).
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abstract = "Polylactic acid (PLA) is a synthetic polymer that has biocompatibility and biodegradation. This study aims to examine the influence of manufacturing parameters on the physical properties of tubular PLA/Spandex/Gelatin composite braids. PLA fibers and spandex are combined, braided and then immersed in gelatin solution to form tubular PLA/Spandex/Gelatin composite braids. The tensile strength, bursting strength, and porosity of the resulting braids are tested, and the experiment results show that a greater twist per inch (T.P.I.) causes a higher tensile strength and bursting strength, but does not change the porosity distinctively.",
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Lou, CW, Lu, PC, Hu, J-J, Fu, SW & Lin, JH 2014, Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids. 於 Materials, Manufacturing Engineering and Information Technology. Advanced Materials Research, 卷 910, Trans Tech Publications, 頁 165-169, 2nd International Conference on Advanced Composite Materials and Manufacturing Engineering, CMME 2014, Wuhan, China, 14-03-22. https://doi.org/10.4028/www.scientific.net/AMR.910.165

Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids. / Lou, Ching Wen; Lu, Po Ching; Hu, Jin-Jia; Fu, Syue Wun; Lin, Jia Horng.

Materials, Manufacturing Engineering and Information Technology. Trans Tech Publications, 2014. p. 165-169 (Advanced Materials Research; 卷 910).

研究成果: Conference contribution

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AB - Polylactic acid (PLA) is a synthetic polymer that has biocompatibility and biodegradation. This study aims to examine the influence of manufacturing parameters on the physical properties of tubular PLA/Spandex/Gelatin composite braids. PLA fibers and spandex are combined, braided and then immersed in gelatin solution to form tubular PLA/Spandex/Gelatin composite braids. The tensile strength, bursting strength, and porosity of the resulting braids are tested, and the experiment results show that a greater twist per inch (T.P.I.) causes a higher tensile strength and bursting strength, but does not change the porosity distinctively.

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Lou CW, Lu PC, Hu J-J, Fu SW, Lin JH. Manufacturing Technique and Property Evaluations of Tubular PLA/Spandex/Gelatin Composite Braids. 於 Materials, Manufacturing Engineering and Information Technology. Trans Tech Publications. 2014. p. 165-169. (Advanced Materials Research). https://doi.org/10.4028/www.scientific.net/AMR.910.165