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Cortaderıa Selloana Kısa Elyaf Takviyeli Sürdürülebilir Kompozit Malzemenin Isı Yalıtımı ve Su Emme Özelliklerinin İncelenmesi

Year 2024, Volume: 6 Issue: 2, 92 - 98
https://doi.org/10.55979/tjse.1500381

Abstract

Son yıllarda polimer matrisli kompozitlerde selülozik lif takviyelerin kullanımı artmıştır. Bu çalışmada, Cortaderia selloanabitkisinden elde edilen lifler ile kompozit üretilmiş ve elde edilen numunelerin absorpsiyon ve termal özellikleri araştırılmıştır. Farklı yoğunluklarda kısa Cortaderia selloana (pampa otu) elyafları yüksek performanslı epoksi polimer matrisi kullanılarak sıkıştırılmış kalıplama yoluyla kompozit numuneler üretilmiştir. Büyük miktarlarda elyaf ile kompozit üreterek absorpsiyon ve termal özellikleri geliştirilmiş malzeme üretilmesi amaçlanmıştır. Basınçlı kalıplama tekniği kullanılarak hazırlanan farklı yoğunlukta elde edilmiş Cortaderia selloana elyaf takviyeli epoksi kompozitlerin termal özellikleri ve su emme davranışları incelenmiştir. Deneyler, kompozit yoğunluğu (50, 60, 70, 80, 90 ve 100 kg/ m3) değiştirilerek gerçekleştirilmiştir. Buna ek olarak, su emme davranışı 10°C ila 40°C'lik farklı sıcaklıklarında analiz edilmiştir. Yoğunluğu 75 kg/m3 olan Cortaderia selloana elyaf takviyeli kompozitler 30°C'lik sıcaklıkta daha iyi termal özellikler göstermiştir. Yoğunluğu 66.3 kg/m3 olan, Cortaderia selloana elyafla güçlendirilmiş kompozitlerde 40°C’lik sıcaklıkta su emme oranı daha iyi çıkmıştır. Ayrıca, sıcaklığının arttırılmasıyla kompozitlerin su emme oranı da artmaktadır.

References

  • Ajithram, A., Winowlin Jappes, J. T., Siva, I., & Brintha, N. C. (2022). Influence of extraction methods on mechanical, absorption and morphological properties of water hyacinth (Eichhornia crassipes) natural fibre composites: Environmental threat to successive commercial products. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 236(8), 1614-1622.
  • Bakatovich, A., Davydenko, N., & Gaspar, F. (2018). Thermal insulating plates produced on the basis of vegetable agricultural waste. Energy and Buildings, 180, 72-82.
  • Binici, H., Eken, M., Kara, M., & Dolaz, M. (2013). An environment-friendly thermal insulation material from sunflower stalk, textile waste and stubble fibers. In 2013 International conference on renewable energy research and applications (ICRERA) (pp. 833-846).
  • Çeven, E. K., & Günaydin, K. G. (2018a). Investigation of moisture management and air permeability properties of fabrics with linen and linen-polyester blend yarns. Fibres & Textiles in Eastern Europe, 4(130), 39-47.
  • Çeven, E. K., & Günaydın, K. G. (2019). Investigation of some mechanical and air permeability properties of shirting fabrics produced from compact yarns made of natural and synthetic fibres. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 24(2), 445-460.
  • Çeven, E. K., & Günaydin, K. G. (2018b). Investigation of selected physical properties of knitted fabrics produced from macaroni yarns. Fibres & Textiles in Eastern Europe, 26(130) 59-66.
  • Çeven, E. K., Eren, H. A., Karakan Günaydın, G., Sevim, Ö., & Şan, C. (2018). Effect of washing cycle on tenacity and stretching properties of denim fabrics containing elastane. Journal of Fashion Technology & Textile Engineering, 2(5), 1-5.
  • Díaz, C., Jiménez, M., Navacerrada, M. A., & Pedrero, A. (2012). Acoustic properties of reed panels. Materiales de Construcción, 62(305), 55-66.
  • Hassan, T., Jamshaid, H., Mishra, R., Khan, M. Q., Petru, M., Tichy, M., & Muller, M. (2021). Factors affecting acoustic properties of natural-fiber-based materials and composites: a review. Textiles, 1(1), 55-85.
  • Jain, N., Singh, V. K., & Chauhan, S. (2017). A review on mechanical and water absorption properties of polyvinyl alcohol based composites/films. Journal of the Mechanical Behavior of Materials, 26(5-6), 213-222.
  • Kaya, A. İ., & Dalgar, T. (2017). Ses yalıtımı açısından doğal liflerin akustik özellikleri. Mehmet Akif Ersoy Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 8(Özel), 25-37.
  • Kodaloğlu, M., & Akarslan Kodaloğlu, F. (2024a). Mechanical properties of natural fibre‑reinforced sustainable epoxy composites, Uluslararası Sürdürülebilir Mühendislik ve Teknoloji Dergisi, 8(2), 1-7.
  • Kodaloğlu, M., & Kodaloğlu, A. F. (2024b). Environmentally friendly recycled leather reinforced composite: thermal and acoustic properties. Teknik Bilimler Dergisi, 14(2), 29-34.
  • Merli, F., Fiorini, C. V., Barbanera, M., Pietroni, G., Spaccini, F., & Buratti, C. (2023). Thermal, acoustic, and hygrothermal properties of recycled bovine leather cutting waste-based panels with different compositions. Sustainability, 15(3), 1779.
  • Onyekachi, O. E., & Iwuozor, K. O. (2019). Mechanical and water absorption properties of polymeric compounds. American Journal of Mechanical and Materials Engineering, 3(2), 36-46.
  • Ramesh, M., Deepa, C., Selvan, M. T., Rajeshkumar, L., Balaji, D., & Bhuvaneswari, V. (2021). Mechanical and water absorption properties of Calotropis gigantea plant fibers reinforced polymer composites. Materials Today: Proceedings, 46, 3367-3372.
  • Reixach, R., Del Rey, R., Alba, J., Arbat, G., Espinach, F. X., & Mutjé, P. (2015). Acoustic properties of agroforestry waste orange pruning fibers reinforced polypropylene composites as an alternative to laminated gypsum boards. Construction and Building Materials, 77, 124-129.
  • Rezaieyan, E., Taban, E., Berardi, U., Mortazavi, S. B., Faridan, M., & Mahmoudi, E. (2024). Acoustic properties of natural fiber reinforced composite micro-perforated panel (NFRC-MPP) made from cork fiber and polylactic acid (PLA) using 3D printing. Journal of Building Engineering, 108491.
  • Şaşmaz, S., Karaağaç, B., & Uyanık, N. (2019). Utilization of chrome-tanned leather wastes in natural rubber and styrene-butadiene rubber blends. Journal of Material Cycles and Waste Management, 21(1), 166-175.
  • Seçgin, A., İhtiyaroğlu, Y., Kara, M., & Ozankan, A. (2017). Akustik yalıtım malzemelerinin ses yutma katsayılarının farklı sıcaklık koşulları altındaki değişiminin deneysel olarak incelenmesi. 18. Ulusal Makina Teorisi Sempozyumu, 317(324), 1-11.
  • Simoni, R. C., Lemes, G. F., Fialho, S., Gonçalves, O. H., Gozzo, A. M., Chiaradia, V., ... & Leimann, F. V. (2017). Effect of drying method on mechanical, thermal and water absorption properties of enzymatically crosslinked gelatin hydrogels. Anais da Academia Brasileira de Ciências, 89, 745-755.
  • Yahya, M. N., Sambu, M., Latif, H. A., & Junaid, T. M. (2017). A study of acoustics performance on natural fibre composite. IOP Conference Series: Materials Science and Engineering, 226(1), 012013.

Investigation of Thermal Insulation and Water Absorption Properties of Cortaderia Selloana Short Fibers Reinforced Sustainabilit Composite Material

Year 2024, Volume: 6 Issue: 2, 92 - 98
https://doi.org/10.55979/tjse.1500381

Abstract

Times In recent years, the use of cellulosic fiber reinforcements in polymer matrix composites has increased. In this study, composites were produced with fibers obtained from the Cortaderia selloana plant and the absorption and thermal properties of the obtained samples were investigated. Composite samples were produced by compression molding using a high-performance epoxy polymer matrix of short Cortaderia selloana (pampa grass) fibers of different densities. It is aimed to produce materials with improved absorption and thermal properties by producing composites with large amounts of fiber. Thermal properties and water absorption behaviors of Cortaderia selloana fiber reinforced epoxy composites of different densities prepared using the compression molding technique were examined. The experiments were carried out by varying the composite density (50, 60, 70, 80, 90 and 100 kg/m3). In addition, the water absorption behavior was analyzed at different temperatures of 10°C to 40°C. Cortaderia selloana fiber reinforced composites with a density of 75 kg/m3 showed better thermal properties at 30°C. The water absorption rate was better at 40°C in Cortaderia selloana fiber reinforced composites with a density of 66.3 kg/m3. Additionally, by increasing the temperature, the water absorption rate of the composites also increases.

References

  • Ajithram, A., Winowlin Jappes, J. T., Siva, I., & Brintha, N. C. (2022). Influence of extraction methods on mechanical, absorption and morphological properties of water hyacinth (Eichhornia crassipes) natural fibre composites: Environmental threat to successive commercial products. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 236(8), 1614-1622.
  • Bakatovich, A., Davydenko, N., & Gaspar, F. (2018). Thermal insulating plates produced on the basis of vegetable agricultural waste. Energy and Buildings, 180, 72-82.
  • Binici, H., Eken, M., Kara, M., & Dolaz, M. (2013). An environment-friendly thermal insulation material from sunflower stalk, textile waste and stubble fibers. In 2013 International conference on renewable energy research and applications (ICRERA) (pp. 833-846).
  • Çeven, E. K., & Günaydin, K. G. (2018a). Investigation of moisture management and air permeability properties of fabrics with linen and linen-polyester blend yarns. Fibres & Textiles in Eastern Europe, 4(130), 39-47.
  • Çeven, E. K., & Günaydın, K. G. (2019). Investigation of some mechanical and air permeability properties of shirting fabrics produced from compact yarns made of natural and synthetic fibres. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 24(2), 445-460.
  • Çeven, E. K., & Günaydin, K. G. (2018b). Investigation of selected physical properties of knitted fabrics produced from macaroni yarns. Fibres & Textiles in Eastern Europe, 26(130) 59-66.
  • Çeven, E. K., Eren, H. A., Karakan Günaydın, G., Sevim, Ö., & Şan, C. (2018). Effect of washing cycle on tenacity and stretching properties of denim fabrics containing elastane. Journal of Fashion Technology & Textile Engineering, 2(5), 1-5.
  • Díaz, C., Jiménez, M., Navacerrada, M. A., & Pedrero, A. (2012). Acoustic properties of reed panels. Materiales de Construcción, 62(305), 55-66.
  • Hassan, T., Jamshaid, H., Mishra, R., Khan, M. Q., Petru, M., Tichy, M., & Muller, M. (2021). Factors affecting acoustic properties of natural-fiber-based materials and composites: a review. Textiles, 1(1), 55-85.
  • Jain, N., Singh, V. K., & Chauhan, S. (2017). A review on mechanical and water absorption properties of polyvinyl alcohol based composites/films. Journal of the Mechanical Behavior of Materials, 26(5-6), 213-222.
  • Kaya, A. İ., & Dalgar, T. (2017). Ses yalıtımı açısından doğal liflerin akustik özellikleri. Mehmet Akif Ersoy Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 8(Özel), 25-37.
  • Kodaloğlu, M., & Akarslan Kodaloğlu, F. (2024a). Mechanical properties of natural fibre‑reinforced sustainable epoxy composites, Uluslararası Sürdürülebilir Mühendislik ve Teknoloji Dergisi, 8(2), 1-7.
  • Kodaloğlu, M., & Kodaloğlu, A. F. (2024b). Environmentally friendly recycled leather reinforced composite: thermal and acoustic properties. Teknik Bilimler Dergisi, 14(2), 29-34.
  • Merli, F., Fiorini, C. V., Barbanera, M., Pietroni, G., Spaccini, F., & Buratti, C. (2023). Thermal, acoustic, and hygrothermal properties of recycled bovine leather cutting waste-based panels with different compositions. Sustainability, 15(3), 1779.
  • Onyekachi, O. E., & Iwuozor, K. O. (2019). Mechanical and water absorption properties of polymeric compounds. American Journal of Mechanical and Materials Engineering, 3(2), 36-46.
  • Ramesh, M., Deepa, C., Selvan, M. T., Rajeshkumar, L., Balaji, D., & Bhuvaneswari, V. (2021). Mechanical and water absorption properties of Calotropis gigantea plant fibers reinforced polymer composites. Materials Today: Proceedings, 46, 3367-3372.
  • Reixach, R., Del Rey, R., Alba, J., Arbat, G., Espinach, F. X., & Mutjé, P. (2015). Acoustic properties of agroforestry waste orange pruning fibers reinforced polypropylene composites as an alternative to laminated gypsum boards. Construction and Building Materials, 77, 124-129.
  • Rezaieyan, E., Taban, E., Berardi, U., Mortazavi, S. B., Faridan, M., & Mahmoudi, E. (2024). Acoustic properties of natural fiber reinforced composite micro-perforated panel (NFRC-MPP) made from cork fiber and polylactic acid (PLA) using 3D printing. Journal of Building Engineering, 108491.
  • Şaşmaz, S., Karaağaç, B., & Uyanık, N. (2019). Utilization of chrome-tanned leather wastes in natural rubber and styrene-butadiene rubber blends. Journal of Material Cycles and Waste Management, 21(1), 166-175.
  • Seçgin, A., İhtiyaroğlu, Y., Kara, M., & Ozankan, A. (2017). Akustik yalıtım malzemelerinin ses yutma katsayılarının farklı sıcaklık koşulları altındaki değişiminin deneysel olarak incelenmesi. 18. Ulusal Makina Teorisi Sempozyumu, 317(324), 1-11.
  • Simoni, R. C., Lemes, G. F., Fialho, S., Gonçalves, O. H., Gozzo, A. M., Chiaradia, V., ... & Leimann, F. V. (2017). Effect of drying method on mechanical, thermal and water absorption properties of enzymatically crosslinked gelatin hydrogels. Anais da Academia Brasileira de Ciências, 89, 745-755.
  • Yahya, M. N., Sambu, M., Latif, H. A., & Junaid, T. M. (2017). A study of acoustics performance on natural fibre composite. IOP Conference Series: Materials Science and Engineering, 226(1), 012013.
There are 22 citations in total.

Details

Primary Language English
Subjects Textile Technology
Journal Section Research Articles
Authors

Murat Kodaloğlu 0000-0001-6644-8068

Feyza Akarslan Kodaloğlu 0000-0002-7855-8616

Early Pub Date December 19, 2024
Publication Date
Submission Date June 12, 2024
Acceptance Date September 24, 2024
Published in Issue Year 2024 Volume: 6 Issue: 2

Cite

APA Kodaloğlu, M., & Akarslan Kodaloğlu, F. (2024). Investigation of Thermal Insulation and Water Absorption Properties of Cortaderia Selloana Short Fibers Reinforced Sustainabilit Composite Material. Turkish Journal of Science and Engineering, 6(2), 92-98. https://doi.org/10.55979/tjse.1500381