Uneingeschränkter Zugang

Intelligent optimization of process parameters and regulation mechanism for the preparation of water-based ink for polyethylene-polyvinyl acetate films

  
18. Nov. 2024

Zitieren
COVER HERUNTERLADEN

Zhao, L., Hong, C., Wang, C., Li, J., Ren, H., & Zhou, C. (2023). Enhancement of the adhesion strength of water-based ink binder based on waterborne polyurethane. Progress in Organic Coatings, 183, 107765. Search in Google Scholar

Ozcan, A., Sonmez, S., & Tutak, D. (2022). Effect of coating pigment type on paper printability with water-based inks. Journal of Coatings Technology and Research, 19(4), 1149-1157. Search in Google Scholar

McManus, D., Vranic, S., Withers, F., Sanchez-Romaguera, V., Macucci, M., Yang, H., ... & Casiraghi, C. (2017). Water-based and biocompatible 2D crystal inks for all-inkjet-printed heterostructures. Nature nanotechnology, 12(4), 343-350. Search in Google Scholar

Sharma, B., Sauraj, S., Kumar, B., Pandey, A., Dutt, D., Negi, Y. S., ... & Kulshreshtha, A. (2021). Synthesis of waterborne acrylic copolymer resin as a binding agent for the development of water‐based inks in the printing application. Polymer Engineering & Science, 61(5), 1569-1580. Search in Google Scholar

Sharma, H., Sharma, B., Raghuvanshi, S., Kadam, A., Kulshreshtha, A., & Dutt, D. (2024). Development of acrylic based antimicrobial water‐based ink using curcumin for active packaging applications. Polymer Engineering & Science, 64(1), 350-362. Search in Google Scholar

Ramirez, J. C. C., & Tumolva, T. P. (2018). Analysis and optimization of water-based printing ink formulations for polyethylene films. Applied Adhesion Science, 6, 1-21. Search in Google Scholar

Estelle, K. T., & Gozen, B. A. (2021). Humidity-controlled direct ink writing for micro-additive manufacturing with water-based inks. Journal of Manufacturing Processes, 69, 583-592. Search in Google Scholar

Franco, M., Alves, R., Perinka, N., Tubio, C., Costa, P., & Lanceros-Mendez, S. (2020). Water-based graphene inks for all-printed temperature and deformation sensors. ACS Applied Electronic Materials, 2(9), 2857-2867. Search in Google Scholar

Camargo, J. R., Silva, T. A., Rivas, G. A., & Janegitz, B. C. (2022). Novel eco-friendly water-based conductive ink for the preparation of disposable screen-printed electrodes for sensing and biosensing applications. Electrochimica Acta, 409, 139968. Search in Google Scholar

Tricase, A., Imbriano, A., Valentino, M., Ditaranto, N., Macchia, E., Franco, C. D., ... & Bollella, P. (2024). Water‐Based Conductive Ink Formulations for Enzyme‐Based Wearable Biosensors. Advanced Sensor Research, 3(3), 2300036. Search in Google Scholar

Yus, J., Gonzalez, Z., Sanchez-Herencia, A. J., Sangiorgi, A., Sangiorgi, N., Gardini, D., ... & Ferrari, B. (2019). Semiconductor water-based inks: Miniaturized NiO pseudocapacitor electrodes by inkjet printing. Journal of the European Ceramic Society, 39(9), 2908-2914. Search in Google Scholar

Cader, H. K., Rance, G. A., Alexander, M. R., Gonçalves, A. D., Roberts, C. J., Tuck, C. J., & Wildman, R. D. (2019). Water-based 3D inkjet printing of an oral pharmaceutical dosage form. International journal of pharmaceutics, 564, 359-368. Search in Google Scholar

Gao, C., Yu, W., Du, M., Zhu, B., Wu, W., Liang, Y., ... & Zhang, J. (2022). Facile synthesis of Ag/carbon quantum dots/graphene composites for highly conductive water-based inks. ACS Applied Materials & Interfaces, 14(29), 33694-33702. Search in Google Scholar

Mia, M., Królczyk, G., Maruda, R., & Wojciechowski, S. (2019). Intelligent optimization of hard-turning parameters using evolutionary algorithms for smart manufacturing. Materials, 12(6), 879. Search in Google Scholar

Moayyedian, M. (2018). Intelligent optimization of mold design and process parameters in injection molding. Springer. Search in Google Scholar

Mohanty, C. P., Mahapatra, S. S., & Singh, M. R. (2017). An intelligent approach to optimize the EDM process parameters using utility concept and QPSO algorithm. Engineering Science and Technology, an international journal, 20(2), 552-562. Search in Google Scholar

Xu, L., Huang, C., Li, C., Wang, J., Liu, H., & Wang, X. (2021). Estimation of tool wear and optimization of cutting parameters based on novel ANFIS-PSO method toward intelligent machining. Journal of Intelligent Manufacturing, 32, 77-90. Search in Google Scholar

Dey, A., & Yodo, N. (2019). A systematic survey of FDM process parameter optimization and their influence on part characteristics. Journal of Manufacturing and Materials Processing, 3(3), 64. Search in Google Scholar

Chia, H. Y., Wu, J., Wang, X., & Yan, W. (2022). Process parameter optimization of metal additive manufacturing: A review and outlook. Journal of Materials Informatics, 2(4), N-A. Search in Google Scholar

Marie Raffin,Pierre Yves Dugas,Timo Melchin,Franck D’Agosto & Muriel Lansalot. (2024). Synthesis of Well-Defined Poly(vinyl alcohol-co-vinyl acetate) Copolymers by Alcoholysis of Poly(vinyl acetate) Synthesized by Macromolecular Design via Interchange of Xanthate Polymerization, and Their Use as a Stabilizer in Emulsion (Co)polymerization of Vinyl Acetate. Biomacromolecules Search in Google Scholar

Vittoria Bisutti,Lucio Flavio Macedo Mota,Diana Giannuzzi,Alessandro Toscano,Nicolò Amalfitano, Stefano Schiavon... & Alessio Cecchinato. (2024). Infrared spectroscopy coupled with machine learning algorithms for predicting the detailed milk mineral profile in dairy cattle. Food Chemistry 140800-140800. Search in Google Scholar

Davide Rossi,Giulia Lazzari,Erica Franceschinis,Elisa Vettorato & Nicola Realdon. (2024). Characterization of Structure-Surface Correlations in Ointments Using Surface Tensiometry within the Concept of an Integrated Analytical Approach. Langmuir: the ACS journal of surfaces and colloids. Search in Google Scholar

Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
1 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Biologie, Biologie, andere, Mathematik, Angewandte Mathematik, Mathematik, Allgemeines, Physik, Physik, andere