https://oldena.lpnu.ua/handle/ntb/45143
Title: | Rheological properties of polymer colloid–cellulose thickener systems |
Other Titles: | Реологічні властивості системи водна дисперсія полімеру–целюлозний загусник |
Authors: | Sviderskyi, Valentyn Melnyk, Liubov Shendera, Anna Fleisher, Hanna |
Affiliation: | National Technical University of Ukraine “Igor Sikorsy Kyiv Polytechnic Institute” |
Bibliographic description (Ukraine): | Rheological properties of polymer colloid–cellulose thickener systems / Valentyn Sviderskyi, Liubov Melnyk, Anna Shendera, Hanna Fleisher // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 12. — No 2. — P. 207–212. |
Bibliographic description (International): | Rheological properties of polymer colloid–cellulose thickener systems / Valentyn Sviderskyi, Liubov Melnyk, Anna Shendera, Hanna Fleisher // Chemistry & Chemical Technology. — Lviv : Lviv Politechnic Publishing House, 2018. — Vol 12. — No 2. — P. 207–212. |
Is part of: | Chemistry & Chemical Technology, 2 (12), 2018 |
Journal/Collection: | Chemistry & Chemical Technology |
Issue: | 2 |
Volume: | 12 |
Issue Date: | 20-Jan-2018 |
Publisher: | Lviv Politechnic Publishing House |
Place of the edition/event: | Lviv |
Keywords: | реологічні властивості в’язкість водна дисперсія полімеру естер целюлози структурно- механічні властивості rheological properties viscosity polymer colloids cellulose esters structural and mechanical properties |
Number of pages: | 6 |
Page range: | 207-212 |
Start page: | 207 |
End page: | 212 |
Abstract: | Запропоновано спосіб модифікації полі-
мерних водних дисперсій за допомогою загусників, а саме
естерів целюлози. Досліджено вплив природи плівко-
утворюючого агенту на реологічні властивості системи за
різного ступеню деформації зсуву. Визначено структурно-
механічні та реологічні властивості досліджуваних систем.
Встановлено, що гідроксиетилцелюлоза є кращим загусником у
порівнянні з карбоксиметилцелюлозою. Гідроксиетилцелюлоза
надає двокомпонентним системам більш чітко визначені
псевдопластичні властивості, що полегшує виробництво та
застосування фарб. Результати дослідження можуть бути
використані при виробництві водоемульсійних лакофарбових
покриттів An approach to water emulsions modification with structure forming additives, namely cellulose esters, is proposed in the article. Influence of the film former origin on the system rheological properties at different shear-strain rates was examined. Structural and mechanical, as well as rheological properties of the studied systems were determined. The results confirm that hydroxyethylcellulose has a greater structure forming effect in comparison with carboxymethylcellulose. Hydroxyethylcellulose provides well-definite pseudoplastic properties to the two-component systems that facilitate the production and application of paints. The results of the investigation could be used in the emulsion paint (coatings) production. |
URI: | https://ena.lpnu.ua/handle/ntb/45143 |
Copyright owner: | © Національний університет „Львівська політехніка“, 2018 ©Sviderskyi V., Melnyk L., Shendera A., Fleisher H., 2018 |
URL for reference material: | http://www.irbis-nbuv.gov.ua/cgibin/irbis_nbuv/cgiirbis_64.exe?C21COM=2&I21DBN=UJRN&P21DBN=UJRN&IMAGE_FILE_DOWNLOAD=1&Image_file_name=PDF/Tti_2013_5_8.pdf https://doi.org/10.1016/S0928-0987(00)00196-2 http://vseokraskah.net/vodno-disp-kraski/3-3-4funkcionalnyedobavki.html https://doi.org/10.1021/la502790n https://doi.org/10.1021/la2035449 https://doi.org/10.1007/s10924-010-0248-2 https://doi.org/10.1122/1.4960336 https://doi.org/10.1039/C5SM02086G https://doi.org/10.1134/S1068162013070145 https://doi.org/10.1098/rsif.2013.0847 https://doi.org/10.1080/02678292.2013.834081 |
References (Ukraine): | [1] Brychko A.: Ukr. Lakokras. Zh., 2008, 1, 20. [2] Sviderkyi V., Karavaiev T.: Nauka i Zhizn, 2011, 1, 4. [3] http://www.irbis-nbuv.gov.ua/cgibin/irbis_nbuv/cgiirbis_64.exe?C21COM=2&I21DBN=UJRN&P21DBN=UJRN&IMAGE_FILE_DOWNLOAD=1&Image_file_name=PDF/Tti_2013_5_8.pdf. [4] Chobit M., Tokarev V., Voronov S.: Visnyk NU “Lvivska Politekhnika”, 2005, 536, 61. [5]Wu J., Ho H., SheuM.: European Journal of Pharmaceutical Sciences, 2001, 12, 417. https://doi.org/10.1016/S0928-0987(00)00196-2 [6] Arhipov A., Pozdnyakov A., Krupin A., BakanovM.: Tehnika i Tehnol. Pischev. Proizv., 2011, 41, 1. [7]Myroniuk A., Sikorskyi O., Karavaiev T., Sviderskyi V.: Vost.- Evr. Zh. Peredovykh Techn., 2012, 6, 12. [8] http://vseokraskah.net/vodno-disp-kraski/3-3-4funkcionalnyedobavki.html [9] Veen S., Kuijk A., Versluis P. et al.: Langmuir, 2014, 30, 13362.https://doi.org/10.1021/la502790n [10] Boluk Y., Zhao L., Incani V.: Langmuir, 2012, 28, 6114.https://doi.org/10.1021/la2035449 [11] Iotti M., Gregersen Ø., Moe S., LenesM.: J. Polym. Environ.,2011, 19, 137. https://doi.org/10.1007/s10924-010-0248-2 [12] Nazari B., Kumar V., Bousfield D., ToivakkaM.: J. Rheol.,2016, 60, 1151. https://doi.org/10.1122/1.4960336 [13] Veen S., Versluis P., Kuijk A., Velikov K.: Soft Matter, 2015,11, 8907. https://doi.org/10.1039/C5SM02086G [14] Tomer G., Patel H., Podczeck F., Newton J.: Eur. J. Pharm. Sci., 2001, 12, 321. [15] Voskoboinikov I., Konstantinova S., Korotkov A.: Rus. J.Bioorg. Chem., 2013, 39, 694. https://doi.org/10.1134/S1068162013070145 [16] Horibe H., Kamimura T., Yoshida K., The Japan Society of Applied Physics, 2005, 44, 1, 4A, 2025-2030. [17]Melnyk L., Melkonian A., Mizhnarod. Nauk. Zh. “Smart and Young”, 2015, 1, 36. [18] Melnyk L., Savchenko D., Matviienko T.: I Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2008, 241. [19] Melnyk L., Savchenko D., Matviienko T.: II Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2009, 166. [20] Melnyk L., Savchenko D., Matviienko T.: I Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2008, 239. [21] Panda H.: Handbook on Paint Testing Methods, Asia Pacific Business Press Inc., Delhi 2010. [22] Bauer G., Friedrich C., Gillig C. et al.: J.Roy. Soc. Interface,https://doi.org/10.1098/rsif.2013.0847 [23] Varela Lopez F., RosenM.: Lat. Am. Appl. Res., 2002, 32, 247. [24] Noroozi N., Grecov D., Shafiei-Sabet S.: Liq. Cryst., 2014, 41,55. https://doi.org/10.1080/02678292.2013.834081 |
References (International): | [1] Brychko A., Ukr. Lakokras. Zh., 2008, 1, 20. [2] Sviderkyi V., Karavaiev T., Nauka i Zhizn, 2011, 1, 4. [3] http://www.irbis-nbuv.gov.ua/cgibin/irbis_nbuv/cgiirbis_64.exe?P.21COM=2&I21DBN=UJRN&P21DBN=UJRN&IMAGE_FILE_DOWNLOAD=1&Image_file_name=PDF/Tti_2013_5_8.pdf. [4] Chobit M., Tokarev V., Voronov S., Visnyk NU "Lvivska Politekhnika", 2005, 536, 61. [5]Wu J., Ho H., SheuM., European Journal of Pharmaceutical Sciences, 2001, 12, 417. https://doi.org/10.1016/S0928-0987(00)00196-2 [6] Arhipov A., Pozdnyakov A., Krupin A., BakanovM., Tehnika i Tehnol. Pischev. Proizv., 2011, 41, 1. [7]Myroniuk A., Sikorskyi O., Karavaiev T., Sviderskyi V., Vost, Evr. Zh. Peredovykh Techn., 2012, 6, 12. [8] http://vseokraskah.net/vodno-disp-kraski/3-3-4funkcionalnyedobavki.html [9] Veen S., Kuijk A., Versluis P. et al., Langmuir, 2014, 30, 13362.https://doi.org/10.1021/la502790n [10] Boluk Y., Zhao L., Incani V., Langmuir, 2012, 28, 6114.https://doi.org/10.1021/la2035449 [11] Iotti M., Gregersen Ø., Moe S., LenesM., J. Polym. Environ.,2011, 19, 137. https://doi.org/10.1007/s10924-010-0248-2 [12] Nazari B., Kumar V., Bousfield D., ToivakkaM., J. Rheol.,2016, 60, 1151. https://doi.org/10.1122/1.4960336 [13] Veen S., Versluis P., Kuijk A., Velikov K., Soft Matter, 2015,11, 8907. https://doi.org/10.1039/P.5SM02086G [14] Tomer G., Patel H., Podczeck F., Newton J., Eur. J. Pharm. Sci., 2001, 12, 321. [15] Voskoboinikov I., Konstantinova S., Korotkov A., Rus. J.Bioorg. Chem., 2013, 39, 694. https://doi.org/10.1134/S1068162013070145 [16] Horibe H., Kamimura T., Yoshida K., The Japan Society of Applied Physics, 2005, 44, 1, 4A, 2025-2030. [17]Melnyk L., Melkonian A., Mizhnarod. Nauk. Zh. "Smart and Young", 2015, 1, 36. [18] Melnyk L., Savchenko D., Matviienko T., I Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2008, 241. [19] Melnyk L., Savchenko D., Matviienko T., II Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2009, 166. [20] Melnyk L., Savchenko D., Matviienko T., I Mizhnarod. Konf. Studentiv, Aspirantiv ta Molodykh Vchenykh z Khimii ta Khim. Tekhn. Ukraine, Kyiv 2008, 239. [21] Panda H., Handbook on Paint Testing Methods, Asia Pacific Business Press Inc., Delhi 2010. [22] Bauer G., Friedrich C., Gillig C. et al., J.Roy. Soc. Interface,https://doi.org/10.1098/rsif.2013.0847 [23] Varela Lopez F., RosenM., Lat. Am. Appl. Res., 2002, 32, 247. [24] Noroozi N., Grecov D., Shafiei-Sabet S., Liq. Cryst., 2014, 41,55. https://doi.org/10.1080/02678292.2013.834081 |
Content type: | Article |
Appears in Collections: | Chemistry & Chemical Technology. – 2018. – Vol. 12, No. 2 |
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2018v12n2_Sviderskyi_V-Rheological_properties_207-212.pdf | 389.96 kB | Adobe PDF | View/Open | |
2018v12n2_Sviderskyi_V-Rheological_properties_207-212__COVER.png | 505.84 kB | image/png | View/Open |
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