PSI - Issue 68

Carlos Fernandes da Silva et al. / Procedia Structural Integrity 68 (2025) 1252–1258 C. F. das Silva et al. / Structural Integrity Procedia 00 (2024) 000–000

1258

7

Acknowledgments

CGS acknowledges the financial support of the Conselho Nacional de Desenvolvimento Cient´ıfico e Tecnolo´gico (CNPq, Bras´ılia-DF, Brazil) through grant no. 307627 / 2021-7 The authors thank Prof. Dr. Fabiano Moreno Peres (Universidade Te´cnica Federal Rural do Parana´, Campus Londrina-PR, Brazil) for valuable discussions. We thank the company CITEPE (Companhia Integrada Teˆxtil de Pernambuco, Alpek Polyester group, Ipojuca-PE, Brazil) for donating the PET resin and to Masterpolymers (Sa˜o Paulo-SP, Brazil, EMS-Grivory group) for the PA 6T6I resin. This work was partially supported by the Foundation for Coordination and Improvement of Higher Education Personnel (CAPES, Bras´ılia-DF, Brazil). Al-Muntaser, A.A., Pashameah, R.A., Alzahrani, E., AlSubhi, S.A., Hameed, S.T., Morsi, M.A., 2023. Graphene nanoplatelets / TiO 2 hybrid nanofiller boosted PVA / CMC blend based high performance nanocomposites for flexible energy storage applications. J. Polym. Envir. 31, 2534 – 2548. doi: 10.1007/s10924-022-02748-z . Box, G.E.P., 1978. Statistics for experimenters: an introduction to design, data analysis and model building. Wiley, New York. Deopura, B.L., Alagirusamy, L., Joshi, M., Gupta, B. (Eds.), 2008. Polyesters and polyamides. Woodhead Publishing Limited, Cambridge, UK. Djukic, S., 2020. Damage mechanisms under tensile stress of amorphous and low semi-crystalline polymers. Material chemistry (Dr thesis). Universite´ de Lyon. Herna´ndez-Garcia, E., Pacheco-Romeralo, N., Pascual-Ram´ırez, L., Vargas, M., Torres-Giner, S., 2023. Synthesis and characterization of polyamide 1010 and evaluation of its cast-extruded films for meat preservation. Food packaging and shelf life 36, 101058. doi: 10.1016/j.fpsl.2023. 101058 . Karger-Kokcis, J., Moskala, E.J., 2000. Molecular dependence of the essential and non-essential work of fratuce of amorphous films of poly(ethylene-2,6-naphthalate) (PEN). Polymer 41, 6301 – 6310. Li, Z., Song, S., Lv, X., Sun, S., 2021. Enhanced the melt strength, toughness and sti ff ness balance of the reactive PB-g-SAG core–shell par ticles modified polylactide blends with the aid of a multifunctional epoxy-based chain extender. J. Polym. Res. 28, 151. doi: 10.1007/ s10965-021-02511-3 . Marangoni Jr, L., Augusto, P.E.D., Vieira, R.P., Borges, D.F., Ito, D., Teixeira, F.G., Balardin, F., Dantas, H., Padula, M., 2023. Food-package processing relationships in emerging technologies: ultrasound e ff ects on polyamide multilayer packaging in contact with di ff erent food simu lants. Food Res. Int. 163, 112217. doi: 10.1016/j.foodres.2022.112217 . Maspoch, M.L., Ferrer, D., Gordillo, A., Santana, O.O., Martinez, A.B., 1999. E ff ect of specimen dimensions and of test speed on the fracture toughness of iPP by essential work of fracture (EWF) method. J. Appl. Polym. Sci. 73, 177 – 187. Mei, L., Lixian, Z., Jialin, Y., Zihan, Z., Yufu, L., Kancheng, M., 2024. Polylactic acid / poly(butylene adipate-co-terephthalate) / diatomite compos ites with antimicrobial properties for green packing. Polym. Bull. 81, 1729 – 1742. doi: 10.1007/s00289-023-04767-9 . Meijer, H.E.H., Govaert, L., 2005. Mechanical performance of polymer systems: the relation between structure and properties. Progr. Polym. Sci. 30, 915 – 938. Namazi, H., 2017. Polymers in our daily life. Bioimpacts 7, 73 – 74. doi: 10.15171/bi.2017.09 . Padhan, R.K., Gupta, A.A., 2015. Poly(ethylene terephtalate) based blends, composites and nanocomposites. Willian Andrew Applied Science Publishers, Chadds Ford-PA, USA. chapter Polyethylene terephtalate-based blends: thermoplastic and thermoset. pp. 65 – 73. doi: 10.1016/ B978-0-323-31306-3.00012.9 . Peres, F.M., Scho¨n, C.G., 2008. Application of the essential work of fracture in ranking the performance in-service of high-density polyethylene resins employed in pressure pipes. J. Mater. Sci. 43, 1844 – 1850. Rosales, C., Hocine, N.A., Bernal, C., Pettarin, V., 2024. Toughness improvement of LLDPE / PP blend by incorporation of gtr waste. Polym. Bull. 81, 6763 – 6740. doi: 10.1007/s00289-023-05027-6 . Utracki, L.A., 2002. Polymer blends handbook. Kluwer Academic Publisher, Dordrecht. chapter Introduction to polymer blends. pp. 1 – 122. Walpole, R.E., Myers, R.E., Myers, S.L., 1998. Probability and statistics for Engineers and Scientists. 6 ed., Prentice Hall Int., Uper Saddle River-NJ. Xavier, S.F., 2002. Polymer blends handbook. Kluwer Academic Publisher, Dordrecht. chapter Properties and performance of polymer blends. pp. 860–950. Yeh, J.T., Chang, C.J., Tsai, F.C., Chen, K.N., Huang, K.S., 2009. Oxygen barrier and blending properties of blown films of blends of modified polyamide and polyamide-6 clay-mineral nanocomposites. Appl. Clay Sci. 45, 1 – 9. doi: 10.1016/j.clay.2008.04.005 . Zengin, E., Durmaz, B.U., Yildiz, M., Aytac, A., 2023. E ff ects of di ff erent catalysts on the mechanical, thermal, and rheological properties of poly(lactic acid) / polycarbonate blend. Iranian Polym. J. 32, 103 – 114. doi: 10.1007/s13726-022-01106-z . References

Made with FlippingBook - Online Brochure Maker