Gotowa bibliografia na temat „EHLA process fabrication”

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Artykuły w czasopismach na temat "EHLA process fabrication"

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Rezvanpour, Alireza, William B. Krantz, and Chi-Hwa Wang. "Scaling analysis of the electrohydrodynamic atomization (EHDA) process for pharmaceutical particle fabrication." Chemical Engineering Science 80 (October 2012): 81–90. http://dx.doi.org/10.1016/j.ces.2012.06.007.

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Chen, Lihong, Chengbo Ru, Hongguo Zhang, et al. "Progress in Electrohydrodynamic Atomization Preparation of Energetic Materials with Controlled Microstructures." Molecules 27, no. 7 (2022): 2374. http://dx.doi.org/10.3390/molecules27072374.

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Constructing ingenious microstructures, such as core–shell, laminate, microcapsule and porous microstructures, is an efficient strategy for tuning the combustion behaviors and thermal stability of energetic materials (EMs). Electrohydrodynamic atomization (EHDA), which includes electrospray and electrospinning, is a facile and versatile technique that can be used to process bulk materials into particles, fibers, films and three-dimensional (3D) structures with nanoscale feature sizes. However, the application of EHDA in preparing EMs is still in its initial development. This review summarizes
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Zhou, Jianfeng, Liangzhe Wang, Wenjian Gong, Bo Wang, Deng-Guang Yu, and Yuanjie Zhu. "Integrating Chinese Herbs and Western Medicine for New Wound Dressings through Handheld Electrospinning." Biomedicines 11, no. 8 (2023): 2146. http://dx.doi.org/10.3390/biomedicines11082146.

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In this nanotechnology era, nanostructures play a crucial role in the investigation of novel functional nanomaterials. Complex nanostructures and their corresponding fabrication techniques provide powerful tools for the development of high-performance functional materials. In this study, advanced micro-nanomanufacturing technologies and composite micro-nanostructures were applied to the development of a new type of pharmaceutical formulation, aiming to achieve rapid hemostasis, pain relief, and antimicrobial properties. Briefly, an approach combining a electrohydrodynamic atomization (EHDA) te
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Esa, Zulfikre, Malik Muhammad Nauman, Lei Jin, et al. "An additive manufacturing approach based on electrohydrodynamic printing to fabricate P3HT:PCBM thin films." Scientific Reports 13, no. 1 (2023). http://dx.doi.org/10.1038/s41598-023-43113-x.

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AbstractAdditive manufacturing (AM) enables the production of high value and high performance components with applications from aerospace to biomedical fields. We report here on the fabrication of poly(3-hexylthiophene): phenyl-C61-butyric acid methyl ester (P3HT:PCBM) thin films through the electrohydrodynamic atomization (EHDA) process and its integration as absorber layer for organic solar cells. Prior to the film fabrication, the optimization of the process was carried out by developing the operating envelope for the P3HT:PCBM ink to determine the optimal flow rate and the appropriate appl
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Sun, Liang, Jianfeng Zhou, Yaoning Chen, Deng-Guang Yu, and Ping Liu. "A combined electrohydrodynamic atomization method for preparing nanofiber/microparticle hybrid medicines." Frontiers in Bioengineering and Biotechnology 11 (November 15, 2023). http://dx.doi.org/10.3389/fbioe.2023.1308004.

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Bacterial prostatitis is a challenging condition to treat with traditional dosage forms. Physicians often prescribe a variety of dosage forms with different administration methods, which fail to provide an efficient and convenient mode of drug delivery. The aim of this work was to develop a new type of hybrid material incorporating both electrosprayed core-shell microparticles and electrospun nanofibers. A traditional Chinese medicine (Ningmitai, NMT) and a Western medicine (ciprofloxacin, CIP) were co-encapsulated within this material and were designed to be released in a separately controlle
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Rozprawy doktorskie na temat "EHLA process fabrication"

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Bonay, Elodie. "Revêtements à base de carbures cermets par procédé EHLA sur disques de frein dans le but de réduire les émissions de particules au freinage." Electronic Thesis or Diss., Limoges, 2024. http://www.theses.fr/2024LIMO0042.

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La pollution de l’air est une préoccupation grandissante et les règlementations évoluent rapidement. Les émissions de particules au freinage des véhicules notamment, sont particulièrement dangereuses pour les voies respiratoires des populations. Dans cette thèse, des revêtements à base d’acier austénitique, ferritique (316L et 430L), de carbure (WC) et de cermets (NbCFeCr, TiCFeCr) sont mis en œuvre par procédé EHLA (Extreme High Speed Laser Material deposition) sur des disques de frein en fonte à graphite lamellaire. La nature, la proportion, la morphologie et la distribution des poudres util
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Streszczenia konferencji na temat "EHLA process fabrication"

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Maffia, Simone, Ondrej Kovarik, Jaroslav Cech, and Tobias Stittgen. "Investigating the Application of 3D-EHLA for Microstructure Control in Large-Scale Additive Manufacturing." In Euro Powder Metallurgy 2024 Congress & Exhibition. EPMA, 2024. http://dx.doi.org/10.59499/ep246283184.

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Conventional powder Laser-Based Directed Energy Deposition (DED-LB) has revolutionized Additive Manufacturing (AM) by enabling the fabrication of large, support-free geometries and minimizing material waste through targeted deposition. Despite these advantages, conventional DED-LB faces challenges in microstructure control, primarily due to high heat inputs, limiting fine adjustments and compromising material integrity. In this work, the transformative potential of Ponticon’s 3D Extreme High-Speed Laser Metal Deposition (EHLA) for large-scale applications is investigated, highlighting its capa
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