Influence of Crystal Structure on the Set of Physicomechanical Characteristics of Composite Materials Based on Ultra-High Molecular Weight Polyethylene

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Дәйексөз келтіру

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Рұқсат жабық Тек жазылушылар үшін

Аннотация

Composite fibers containing boron(III) have been obtained based on solid solutions of cellulose in N-methylmorpholine-N-oxide and orthoboric acid with their subsequent transformation into a viscous-flow state. The rheological behavior of cellulose solutions with different content of orthoboric acid and water studied under conditions of continuous and dynamic shear loading has confirmed the intermolecular interaction between the components. It has been shown that the mechanical characteristics of the composite fibers obtained from a 16% solution in N-methylmorpholine-N-oxide are comparable to these for hydrated cellulose fibers. The process of transformation of the composite fibers of various compositions into carbon fiber has been investigated by means of thermogravimetric analysis and differential scanning calorimetry. Chemical, structural and morphological properties of composite hydrated cellulose fibers and carbon fibers obtained from them have been studied using FTIR-spectroscopy, X-ray diffraction, and scanning electron microscopy. The influence of boron(III) compounds on the carbonization process and the formation of graphite-like structures in carbon fiber has been investigated by Raman-spectroscopy.

Авторлар туралы

A. Zabolotnov

Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences

Email: zabolotnov.ru@gmail.com
119991, Moscow, Russia

S. Gostev

Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences

Email: zabolotnov.ru@gmail.com
119991, Moscow, Russia

I. Maklakova

Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences

Email: zabolotnov.ru@gmail.com
119991, Moscow, Russia

A. Bakirov

Enikolopov Institute of Synthetic Polymer Materials, Russian Academy of Sciences; Kurchatov Institute National Research Center

Email: zabolotnov.ru@gmail.com
117393, Moscow, Russia; 119454, Moscow, Russia

L. Novokshonova

Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences

Email: zabolotnov.ru@gmail.com
119991, Moscow, Russia

A. Kiyasov

MIREA Russian Technological University

Хат алмасуға жауапты Автор.
Email: zabolotnov.ru@gmail.com
119454, Moscow, Russia

Әдебиет тізімі

  1. Gürgen S. // Polym. Degrad. Stab. 2022. V. 199. P. 109912.
  2. Gürgen S. // Composites B.2019. V. 173. P. 106967.
  3. Dangsheng X. // Mater. Lett. 2005. V. 59. № 2–3. P. 175.
  4. Gürgen S., Sert A., Kuşhan M.C. // J. Appl. Polym. Sci. 2021. V. 138. № 16. P. 50245.
  5. Aliyu I.K., Azam M.U., Lawal D.U. // Arabian J. Sci. Eng. 2019. V. 849. № 45. P. 849.
  6. Rodrigues M.M., Fontoura C.P., Maddalozzo A.E., Leidens L.M., Quevedo H.G., Souza K. dos S., Crespo J. da S., Michels A.F., Figueroa C.A., Aguzzoli C. // Composites B. 2020. V. 189. P. 107909.
  7. Panin S.V., Kornienko L.A., Ivanova L.R., Nguen Suan T., Poltaranin M. A., Shil’ko S.V. // J. Frict. Wear. 2014. V. 35. № 4. P. 444.
  8. Pettarin V., Churruca M.G., Felhos D., Karger-Kocsis J., Frontini P.M. // Wear. 2010. V. 269. P. 31.
  9. Gogoleva O.V., Petrova P.N., Popov S.N., Okhlopkova A.A. // J. Frict. Wear. 2015. V. 36. №. 4. P. 301.
  10. Tong J., Ma Y., Arnell R.D., Ren L. // Composites A. 2006. V. 37. P. 38
  11. Новокшонова Л.А., Мешкова И.Н. // Высокомолек. соед. 1994. Т. 36. № 4. С. 629.
  12. Yusrina M.D., Tan W.S. // Proc. Adv. Mater., Eng. Technol. 2020. V. 2291. P. 020029-1.
  13. Chang B.P., Akil H.M., Nasir R.B., Khan A. // Tribol. Int. 2015. V. 88. P. 252.
  14. Chang B.P., Akil H.M., MD Nasir R.B. // Sains Malaysiana. 2015. V. 44. № 6. P. 819.
  15. Aderikha V.N., Shapovalov V.A., Krasnov A.P. // Composites. 2008. V. 29. № 4. P. 318.
  16. Liu C.Y., Ishigami A., Kurose T., Ito H. // J. Polym. Eng. 2019. V. 9. № 3. P. 264.
  17. Panin S.V., Kornienko L.A., Ivanova L.R., Nguen Suan T., Poltaranin M.A., Shil’ko S.V. // J. Frict. Wear. 2014. V. 35. № 4. P. 290.
  18. Wood W.J., Maguire R.G., Zhong W.H. // Composites B. 2011. V. 42. P. 584.
  19. Panin S.V., Kornienko L.A., Alexenko V.O., Buslovich D.G., Bochkareva S.A., Lyukshin B.A. // Materials. 2020. V. 13. P. 338.
  20. Samad M.A., Sinha S.K. // Trib. Int. 2011. V. 44. P. 1932.
  21. Diabb J.M., Leija Guti’errez H.M., C’ardenas E.S., Mamidi N., Elías-Zúñiga A., Morales-Avalos R., Villela-Castrejón J. // J. Mech. Behavior Biomed. Mater. 2021. V. 120. P. 104554.
  22. An Y., Tai Z., Qi Y., Yan X., Xue Q., Liu B., Pei J. // J. Appl. Polym. Sci. 2014. V. 131. № 1. P. 39640.
  23. Pang W., Jialiang W.P., Zhang W.Q. // RSC Adv. 2017. V. 7. P. 55536.
  24. Chen X., Zhang S., Zhang L., Zhu P., Zhang G. // Polymers. 2021. V. 13. P. 482.
  25. Nazarov V.G., Stolyarov V.P., Doronin F.A., Evdokimov A.G., Rytikov G.O., Brevnov P.N., Zabolotnov A.S., Novokshonova L.A., Berlin A.A. // Polymer Science A. 2019. V. 61. № 3. P. 325.
  26. Юхаева Г.Р. Дис. … канд. хим. наук. М.: ИХФ РАН, 2012.
  27. Shiyanova K.A., Gudkov M.V., Gorenberg A.Y. // ACS Omega. 2020. № 5. V. 39. P. 25148.
  28. Liang G., Xu J., Xu W. // J. Appl. Polym. Sci. 2004. V. 91. № 5. P. 3054.
  29. Simis K.S., Bistolfi A., Bellare A., Pruitt L.A. // Biomaterials. 2006. V. 27. № 9. P. 1688.
  30. Guofang G., Huayong Y., Xin F. // Wear. 2004. V. 256. № 1. P. 88.
  31. Panin S., Kornienko L., Piriyaon S., Ivanova L., Shil’ko S., Pleskachevskii Y., Orlov V.M. // J. Frict. Wear. 2011. V. 32. № 4. P.269.
  32. Liu C., Qiu H., Liu C.J., Zhang J. // Polym. Compos. 2012. V. 33. № 11. P. 1987.
  33. Qun Y., Run Z., Mingfei L., Ping X., Lichao L. // Polymers. 2023. № 15. P. 186.
  34. Guojun S., Zhen C., Xiaotian Y., Qiuyi W. // Mater. Chem. Phys. 2019. № 236. P. 121778.
  35. Anqi L., Fuzhen L., Kancheng M., Zishou Z. // Adv. Polym. Tec. 2022. V. 1. P. 1.
  36. Jing H., Siyue D., Wenge Z., Wenya L., Hua L. // Polym. Adv. Technol. 2013. № 24. P. 888.
  37. Sattari M., Mirsalehi S.A., Khavandi A., Alizadeh O., Naimi-Jamal M.R. // J. Therm. Analysis Calorimetry. 2015. V. 122. P. 1319.

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© А.С. Заболотнов, С.С. Гостев, И.А. Маклакова, А.В. Бакиров, Л.А. Новокшонова, А.А. Киясов, 2023