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LI Xibao(李喜宝), LU Jinshan(卢金山), LUO Junming(罗军明), ZHANG Jianjun(张建军), OU Junfei(欧军飞), XU Haitao(徐海涛). Mechanical Properties of Thermoplastic Polyurethanes Laminated Glass Treated by Acid Etching Combined with Cold Plasma[J]. Plasma Science and Technology, 2014, 16(10): 964-968. DOI: 10.1088/1009-0630/16/10/11
Citation: LI Xibao(李喜宝), LU Jinshan(卢金山), LUO Junming(罗军明), ZHANG Jianjun(张建军), OU Junfei(欧军飞), XU Haitao(徐海涛). Mechanical Properties of Thermoplastic Polyurethanes Laminated Glass Treated by Acid Etching Combined with Cold Plasma[J]. Plasma Science and Technology, 2014, 16(10): 964-968. DOI: 10.1088/1009-0630/16/10/11

Mechanical Properties of Thermoplastic Polyurethanes Laminated Glass Treated by Acid Etching Combined with Cold Plasma

Funds: supported by Aeronautical Science Foundation of China (Nos. 2012ZF56025, 2011ZF56013), the Scientific Research Project Foun- dation of Jiangxi Provincial Education Department (Nos. GJJ11497, GJJ13477), and State Key Laboratory of Advanced Technology for Materials Synthesis and Processing of China (Wuhan University of Technology) (No. 2012-KF-8)
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  • Received Date: August 20, 2013
  • To overcome the problem of interlaminar delamination of thermoplastic polyurethane laminated glass, silicate glass was etched with hydrofluoric acid and thermoplas- tic polyurethane was then treated with cold plasma. Compared with the untreated samples, the interlaminar shear strength of acid etching samples, cold plasma-treated samples and acid etching combined with cold plasma-treated samples increased by 97%, 84% and 341%, respectively. Acid etching combined with cold plasma-treated samples exhibited a higher flexural strength and strain as compared with the untreated samples. The impact energy of acid etching samples, cold plasma- treated samples and acid etching combined with cold plasma-treated samples increased by 8.7%, 8.1% and 11.6%, respectively, in comparison with the untreated samples. FT-IR analysis showed that a large number of –C=O, –CO–N and –CO–O–C– groups appeared on the surface of cold plasma-treated thermoplastic polyurethane, which resulted in the formation of hydrogen bonds. SEM results showed that some pittings formed on the surface of the silicate glass treated by acid etching, which resulted in the formation of a three-dimensional interface structure between the silicate glass and polyurethane. Hydrogen bonds combined with the three-dimensional interface between silicate glass and polyurethanes co-improved the mechanical properties of thermoplastic polyurethanes laminated glass.
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