問題: 應(yīng)用于等離子清洗纖維表面,從而改變纖維表面性質(zhì),提高纖維的性能。用于改性的科學(xué)研究。
回復(fù):總體而言,我們的等離子清洗機(jī)用于纖維表面的等離子改性。等離子體處理可用于結(jié)構(gòu)性纖維如碳纖維、凱夫拉、聚乙烯纖維等的纖維表面化學(xué)性能的改性,以此提高粘附與纖維增強(qiáng)復(fù)合材料中基質(zhì)的特性。等離子體處理也應(yīng)用于組織工程學(xué)及生物醫(yī)學(xué)等。等離子體處理可提高纖維表面的親水性。下面是資料是研究人員使用我們的等離子體處理儀應(yīng)用于纖維改性方面的技術(shù)參考資料。
————————————————————————————
FIBERS IN COMPOSITE MATERIALS
* Yuan, Xiaowen, Krishnan Jayaraman, Debes Bhattacharyya. "Effects of Plasma Treatment in Enhancing the Performance of Woodfibre-Polypropylene Composites." Composites: Part A (2004) 35(12): 1363-1374.
* S. Feih and P. Schwartz, "Modification of the carbon fiber/matrix interface using gas plasma treatment with acetylene and oxygen", J. Adhesion Sci. Technol., 12, 523-539 (1998).
* Waldman, D., Y. Zou, A. Netravali. "Ethylene/Ammonia Plasma Polymer Deposition for Controlled Adhesion of Graphite Fibers to PEEK. I. Characterization of Plasma Formed Polymers." J. Adhes. Sci. Technol. (1995) 9: 1475-1503.
FIBERS IN TISSUE ENGINEERING
* Moroni, L., M. Curti, M. Welti, S. Korom, W. Weder, J. R. De Wijn, C. A. Van Blitterswijk. "Anatomical 3D fiber-deposited scaffolds for tissue engineering: Designing a neotrachea." Tissue Eng. (2007) 13(10): 2483-2493.
* He, W., T. Yong, Z. W. Ma, R. Inai, W. E. Teo, S. Ramakrishna. "Biodegradable polymer nanofiber mesh to maintain functions of endothelial cells." Tissue Eng. (2006) 12(9): 2457-2466.
* Ma, Z. W., W. He, T. Yong, S. Ramakrishna. "Grafting of Gelatin on Electrospun Poly(caprolactone) Nanofibers to Improve Endothelial Cell Spreading and Proliferation and to Control Cell Orientation." Tissue Eng. (2005) 11(7/8): 1149-1158.
* Vehof, Johan W. M., Paul H. M. Spauwen, John A. Jansen. "Bone Formation in Calcium-Phosphate-Coated Titanium Mesh." Biomaterials (2000) 21: 2003-2009.
歡迎您關(guān)注我們的微信公眾號了解更多信息