DC Field | Value | Language |
dc.contributor.author | Чобіт, М. Р. | |
dc.contributor.author | Васильєв, В. П. | |
dc.contributor.author | Chobit, M. | |
dc.contributor.author | Vasylyev, V. | |
dc.date.accessioned | 2020-03-02T09:14:42Z | - |
dc.date.available | 2020-03-02T09:14:42Z | - |
dc.date.created | 2019-02-28 | |
dc.date.issued | 2019-02-28 | |
dc.identifier.citation | Чобіт М. Р. Використання відпрацьованої рослинної олії для створення полімерних композитів / М. Р. Чобіт, В. П. Васильєв // Chemistry, Technology and Application of Substances. — Lviv : Lviv Politechnic Publishing House, 2019. — Том 2. — № 2. — С. 178–184. | |
dc.identifier.uri | https://ena.lpnu.ua/handle/ntb/46405 | - |
dc.description.abstract | Метою роботи є перевірка можливості використання відпрацьованої соняшникової
олії для модифікування поверхні крейди та гідроксиду магнію та вивчення впливу таких
наповнювачів на фізико-механічні властивості полімерних композиційних матеріалів. За
результатами досліджень вперше доведено можливість модифікування дисперсних
мінеральних наповнювачів відпрацьованою (пересмаженою) соняшниковою олією, не
придатною для харчових цілей. Створено полімерні композити на основі поліетилену
низького тиску, пластифікованого ПВХ та епоксидної смоли, наповнені крейдою та
гідроксидом магнію, модифікованими відпрацьованою соняшниковою олією. | |
dc.description.abstract | The purpose of this work is to check the possibility of using sunflower oil for modification of the chalk
surface and magnesium hydroxide and to study the effect of such fillers on the physical and mechanical
properties of polymer composite materials. According to the research results, for the first time the
possibility of modification of the dispersed mineral fillers by the used (redone) sunflower oil unsuitable for
food was investigated. Polymer composites based on low-density polyethylene, plasticized PVC and epoxy
resin were filled with chalk and magnesium hydroxide with modified sunflower oil. | |
dc.format.extent | 178-184 | |
dc.language.iso | uk | |
dc.publisher | Lviv Politechnic Publishing House | |
dc.publisher | Lviv Politechnic Publishing House | |
dc.relation.ispartof | Chemistry, Technology and Application of Substances, 2 (2), 2019 | |
dc.subject | полімерні композити | |
dc.subject | крейда | |
dc.subject | поліетилен | |
dc.subject | ПВХ | |
dc.subject | соняшникова олія | |
dc.subject | епоксидна смола | |
dc.subject | polymer composite | |
dc.subject | chalk | |
dc.subject | polyethylene | |
dc.subject | PVC | |
dc.subject | sunflower oil | |
dc.subject | epoxy resin | |
dc.title | Використання відпрацьованої рослинної олії для створення полімерних композитів | |
dc.title.alternative | Usage of waste vegetable oil for making polymer composites | |
dc.type | Article | |
dc.rights.holder | © Національний університет „Львівська політехніка“, 2019 | |
dc.contributor.affiliation | Національний університет “Львівська політехніка” | |
dc.contributor.affiliation | Lviv Polytechnic National University | |
dc.format.pages | 7 | |
dc.identifier.citationen | Chobit M. Usage of waste vegetable oil for making polymer composites / Chobit M., Vasylyev V. // Chemistry, Technology and Application of Substances. — Lviv : Lviv Politechnic Publishing House, 2019. — Vol 2. — No 2. — P. 178–184. | |
dc.relation.references | 1. Kurta S. A. (2012). Napovnyuvachi – sy`ntez, vlasty`vosti ta vy`kory`stannya: navchal`ny`j posibny`k. Ivano-Frankivs`k: Vyd-vo Prykarpat. nacz. un-tu im. V. Stefany`ka. P. 296. | |
dc.relation.references | 2. G. Schmid. (2010). Nanoparticles: from theory to application. Weinheim: WILEY-VCH Verlag GmbH, 522. | |
dc.relation.references | 3. Z. Bartczak, A. S. Argon, R. E. Cohen, M. Weinberg. (April 1999). Toughness mechanism in semi-crystalline polymer blends: II. High-density polyethylene toughened with calcium carbonate filler particles. Polymer. Vol. 40, Is. 9, 2347-2365. | |
dc.relation.references | 4. Chobit M. R. (2007). Peroxide modification of the cellulose for synthesis of the compound polymer systems. (Candidate’s thesis). Lviv. [in Ukrainian]. | |
dc.relation.references | 5. Savelyev Yuri, Gonchar Аlexey, Travinskaya Тamara. (2013). Monmorillonite modified with oligourethane ammonium chloride and based nanostructured polymers. American Journal of Nanoscience and Nanotechnology. 1(4), 87-93.: doi: 10.11648/j.nano.20130104.13. | |
dc.relation.references | 6. Yuri. V. Savelyev, Alexey N. Gonchar and Tamara V. Travinskaya. (2015). New Montmorillinite Modifier for Creation of Polyurethane Acrylate/Organoclay Nanocomposites by in situ Polymerization. J. Chem. Eng. Chem. Res. Vol. 2, No. 2, 511-52. | |
dc.relation.references | 7. Pietrzak, L., Sowinski, P., Bojda, J., Piorkowska, E., & Galeski, A. (2016). Toughening of syndiotactic polypropylene with chalk. Journal of Applied Polymer Science, 133(28), doi:10.1002/app.43651. | |
dc.relation.references | 8. Fazelinejad, S, Akesson, D, Skrifvars, M. 2017. Repeated Mechanical Recycling of Polylactic Acid Filled With Chalk. Progress In Rubber Plastics And Recycling Technology. 1 (33), 1-16. | |
dc.relation.references | 9. C. Mahesh, B. Kondapanaidu, K. Govindarajulu, V. Balakrishna. (Nov 2013). Experimental Investigation of Thermal and Mechanical Properties of Palmyra Fiber Reinforced Polyster Composites With and Without Chemical Treatment and Addition of Chalk Powder. International Journal of Engineering Trends and Technology (IJETT), V5 (5), 259-271. | |
dc.relation.references | 10. Domka L., Wąsicki A., Kozak M. (2003) The microstructure and mechanical properties of new HDPEchalk composites, Physicochemical Problems of Mineral Processing, 37, 141-147. | |
dc.relation.references | 11. Parashchuk L. Ya., Yakymechko Ya.B., PanchukB. R. (2010). Vplyv saxarydiv na kinetyku gasinnya vapna. Visnyk Nacionalnogo universytetu “Lvivska politexnika”. Ximiya, texnologiya rechovy`n ta yix zastosuvannya, No. 667, 16-20. | |
dc.relation.references | 12. B. N. Tiutiunnykov, Z. Y. Bukhshtab, F. F. Hladkyi and other. (1992). Xy`my`ya zhy`rov. М.: Kolos, 448. | |
dc.relation.references | 13. Chobit M. R., Vasylyev V. P., Kot V. A. (2015). Modyfikaciya krejdy roslynnymy` oliyamy. Visnyk Nacionalnogo universytetu “Lvivska politexnika”, №812, 438-443. | |
dc.relation.references | 14. Chobit M. R., Vasylyev V. P., Panchenko Yu. V. (2017). Vykory`stannya vidxodiv oliyezhyrovoyi promyslovosti dlya modyfikaciyi mineralnyx napovnyuvachiv. Visnyk Nacionalnogo universytetu “Lvivska politexnika”, No. 868, 318-325. | |
dc.relation.referencesen | 1. Kurta S. A. (2012). Napovnyuvachi – sy`ntez, vlasty`vosti ta vy`kory`stannya: navchal`ny`j posibny`k. Ivano-Frankivs`k: Vyd-vo Prykarpat. nacz. un-tu im. V. Stefany`ka. P. 296. | |
dc.relation.referencesen | 2. G. Schmid. (2010). Nanoparticles: from theory to application. Weinheim: WILEY-VCH Verlag GmbH, 522. | |
dc.relation.referencesen | 3. Z. Bartczak, A. S. Argon, R. E. Cohen, M. Weinberg. (April 1999). Toughness mechanism in semi-crystalline polymer blends: II. High-density polyethylene toughened with calcium carbonate filler particles. Polymer. Vol. 40, Is. 9, 2347-2365. | |
dc.relation.referencesen | 4. Chobit M. R. (2007). Peroxide modification of the cellulose for synthesis of the compound polymer systems. (Candidate’s thesis). Lviv. [in Ukrainian]. | |
dc.relation.referencesen | 5. Savelyev Yuri, Gonchar Alexey, Travinskaya Tamara. (2013). Monmorillonite modified with oligourethane ammonium chloride and based nanostructured polymers. American Journal of Nanoscience and Nanotechnology. 1(4), 87-93., doi: 10.11648/j.nano.20130104.13. | |
dc.relation.referencesen | 6. Yuri. V. Savelyev, Alexey N. Gonchar and Tamara V. Travinskaya. (2015). New Montmorillinite Modifier for Creation of Polyurethane Acrylate/Organoclay Nanocomposites by in situ Polymerization. J. Chem. Eng. Chem. Res. Vol. 2, No. 2, 511-52. | |
dc.relation.referencesen | 7. Pietrzak, L., Sowinski, P., Bojda, J., Piorkowska, E., & Galeski, A. (2016). Toughening of syndiotactic polypropylene with chalk. Journal of Applied Polymer Science, 133(28), doi:10.1002/app.43651. | |
dc.relation.referencesen | 8. Fazelinejad, S, Akesson, D, Skrifvars, M. 2017. Repeated Mechanical Recycling of Polylactic Acid Filled With Chalk. Progress In Rubber Plastics And Recycling Technology. 1 (33), 1-16. | |
dc.relation.referencesen | 9. C. Mahesh, B. Kondapanaidu, K. Govindarajulu, V. Balakrishna. (Nov 2013). Experimental Investigation of Thermal and Mechanical Properties of Palmyra Fiber Reinforced Polyster Composites With and Without Chemical Treatment and Addition of Chalk Powder. International Journal of Engineering Trends and Technology (IJETT), V5 (5), 259-271. | |
dc.relation.referencesen | 10. Domka L., Wąsicki A., Kozak M. (2003) The microstructure and mechanical properties of new HDPEchalk composites, Physicochemical Problems of Mineral Processing, 37, 141-147. | |
dc.relation.referencesen | 11. Parashchuk L. Ya., Yakymechko Ya.B., PanchukB. R. (2010). Vplyv saxarydiv na kinetyku gasinnya vapna. Visnyk Nacionalnogo universytetu "Lvivska politexnika". Ximiya, texnologiya rechovy`n ta yix zastosuvannya, No. 667, 16-20. | |
dc.relation.referencesen | 12. B. N. Tiutiunnykov, Z. Y. Bukhshtab, F. F. Hladkyi and other. (1992). Xy`my`ya zhy`rov. M., Kolos, 448. | |
dc.relation.referencesen | 13. Chobit M. R., Vasylyev V. P., Kot V. A. (2015). Modyfikaciya krejdy roslynnymy` oliyamy. Visnyk Nacionalnogo universytetu "Lvivska politexnika", No 812, 438-443. | |
dc.relation.referencesen | 14. Chobit M. R., Vasylyev V. P., Panchenko Yu. V. (2017). Vykory`stannya vidxodiv oliyezhyrovoyi promyslovosti dlya modyfikaciyi mineralnyx napovnyuvachiv. Visnyk Nacionalnogo universytetu "Lvivska politexnika", No. 868, 318-325. | |
dc.citation.issue | 2 | |
dc.citation.spage | 178 | |
dc.citation.epage | 184 | |
dc.coverage.placename | Lviv | |
dc.coverage.placename | Lviv | |
Appears in Collections: | Chemistry, Technology and Application of Substances. – 2019. – Vol. 2, No. 2
|