期刊文献+

Preparation and Characterization of Waterborne Polyurethane with Unique Nanoparticles by Controlling Water 被引量:1

下载PDF
导出
摘要 A facile method,focusing on emulsification,chain extension and dispersion process in preparing waterborne polyurethane,was developed to prepare emulsion with rod-like nanoparticles.The facile method involves a water addition procedure by in situ generated water to react with polyurethane prepolymer instead of the external water addition process.As a comparison,waterborne polyurethane was synthesized through the external water addition process.According to the characterization methods including FTIR,1H-NMR,TEM and water swelling experiments,it is suggested there are two kinds of hydrogen bonds interactions in hard/soft domain of the novel polyurethane,and the phase separation of hard/soft domains increases significantly.The morphology of the two polyurethanes was quite different(nanorods and spherical particles,respectively),presenting a different surface property.In addition,the water swelling of the novel polyurethane indicates that it holds significant potential application as degradable material.
作者 Xing Zhou
机构地区 Faculty of Printing
出处 《Journal of Renewable Materials》 SCIE EI 2022年第6期1623-1639,共17页 可再生材料杂志(英文)
基金 The author acknowledges the financial support provided by the National Natural Science Foundation of China[Grant No.51802259] China Postdoctoral Science Foundation Funded Project[Grant No.2019M663785] the Opening Project of Shanxi Key Laboratory of Advanced Manufacturing Technology[Grant No.XJZZ202001] the Scientific Research Project of Shaanxi Education Department[Grant No.20JS108] the Promotion Program for Youth of Shaanxi University science and technology association[Grant No.20190415] Fund of Key Laboratory of Processing and Quality Evaluation Technology of Green Plastics of China National Light Industry council[Grant No.PQETGP2019003] the Innovation Guidance of Technology Program of Shaanxi Province[Grant No.2020CGXNG-022] Xi’an Programs for Science and Technology Plan[Grant No.2020KJRC0090] The author also acknowledges the previous work[https://www.sciencedirect.com/science/article/pii/S030094401630323X].
  • 相关文献

参考文献2

二级参考文献47

  • 1L.T. Sin, W. Rahman, A.R. Rahmat, T.T. Tee, S.T. Bee, L. Chong-Yu, J. Manuf. Process. 14 (2012) 8-19,.
  • 2R.A. Malloy, Plastic Part Design for Injection Molding, Hanser Gardner Publications, Cincinnati, OH, 1994.
  • 3S.W. Kim, L.S. Turng, Model. Simul. Mater. Sci. Eng. 12 (2004) S151-S173.
  • 4M. ercer, D. Godec, B. Bujani6, in: Materials Processing and Design: Modeling, Simulation and Applications, NUMIFORM 2007,.
  • 5J.M.A. C6sar de S,% A.D. Santos (Eds.) Proceedings of the 9th International Conference on Numerical Methods in industrial Forming Processes, American Institute of Physics, Porto, 2007, pp. 1067-1072.
  • 6V.W.S. Yeung, K.H. Lau, J. Mater. Process. Technol. 63 (1997) 481-487.
  • 7J. Shoemaker, J. Shoemaker, Moldflow Design Guide, 2006.
  • 8S.S.S. lmihezri, S.M. Sapuan, S. Sulaiman, M.M. Hamdan, E.S. Zainuddin, M.R. Osman, M.Z.A. Rahman, ]. Mater. Process. Technol. 171 (2006) 358-365.
  • 9W.A.W.A. Rahman, L.T. Sin, A.R. Rahmat, J. Mater. Process. Technol. 197 (2008) 22-30.
  • 10S.H. Tang, Y.J. Tan, S.M. Sapuan, S. Sulaiman, N. Ismail, 1 Samin, J. Mater. Process. Technol. 182 (2007) 418-426.

共引文献30

同被引文献9

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部