Academic literature on the topic 'Aerosol deposition (ADM)'
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Journal articles on the topic "Aerosol deposition (ADM)"
Mihara, Kensuke, Takuya Hoshina, Hirofumi Kakemoto, Hiroaki Takeda, and Takaaki Tsurumi. "Effects of Pretreatments on Deposition Rate of Films in Aerosol Deposition Method." Key Engineering Materials 421-422 (December 2009): 165–68. http://dx.doi.org/10.4028/www.scientific.net/kem.421-422.165.
Full textAkedo, Jun. "Aerosol Deposition Method for Fabrication of Nano Crystal Ceramic Layer." Materials Science Forum 449-452 (March 2004): 43–48. http://dx.doi.org/10.4028/www.scientific.net/msf.449-452.43.
Full textUemichi, Yuta, Koji Nishikawa, Yuuki Sato, and Shinzo Yoshikado. "Fabrication and Evaluation of Al2O3 Films Using the Aerosol Deposition Method." Key Engineering Materials 485 (July 2011): 211–14. http://dx.doi.org/10.4028/www.scientific.net/kem.485.211.
Full textLeupold, Nico, Michael Schubert, Jaroslaw Kita, and Ralf Moos. "Influence of high temperature annealing on the dielectric properties of alumina films prepared by the aerosol deposition method." Functional Materials Letters 11, no. 02 (April 2018): 1850022. http://dx.doi.org/10.1142/s1793604718500224.
Full textMa, Ji Feng, Yuan Hua Lin, Ce Wen Nan, and Takaaki Tsurumi. "Preparation and Properties of CaCu3Ti4O12 Thick Film by Aerosol Deposition Method." Key Engineering Materials 368-372 (February 2008): 126–28. http://dx.doi.org/10.4028/www.scientific.net/kem.368-372.126.
Full textSchubert, Michaela, Jaroslaw Kita, Christian Münch, and Ralf Moos. "Analysis of the characteristics of thick-film NTC thermistor devices manufactured by screen-printing and firing technique and by room temperature aerosol deposition method (ADM)." Functional Materials Letters 10, no. 06 (December 2017): 1750073. http://dx.doi.org/10.1142/s1793604717500734.
Full textSONG, WOOJIN, KYUBONG JUNG, DOO-MAN CHUN, SUNG-HOON AHN, and CAROLINE SUNYONG LEE. "DEPOSITION OF Al2O3 POWDERS USING NANO-PARTICLE DEPOSITION SYSTEM." Surface Review and Letters 17, no. 02 (April 2010): 189–93. http://dx.doi.org/10.1142/s0218625x10013710.
Full textIsaza-Ruiz, Marllory, Joseph Henon, Olivier Durand-Panteix, Gregory Etchegoyen, Fabrice Rossignol, and Pascal Marchet. "Elaboration of lead-free Na 0.5 Bi 0.5 TiO 3 –BaTiO 3 (NBT-BT) thick films by aerosol deposition method (ADM)." Ceramics International 42, no. 13 (October 2016): 14635–41. http://dx.doi.org/10.1016/j.ceramint.2016.06.084.
Full textDonker, Nils, Daniela Schönauer-Kamin, and Ralf Moos. "Mixed-Potential Ammonia Sensor Based on a Dense Yttria-Stabilized Zirconia Film Manufactured at Room Temperature by Powder Aerosol Deposition." Sensors 24, no. 3 (January 26, 2024): 811. http://dx.doi.org/10.3390/s24030811.
Full textKim, C. S., M. A. Eldridge, L. Garcia, and A. Wanner. "Aerosol deposition in the lung with asymmetric airways obstruction: in vivo observation." Journal of Applied Physiology 67, no. 6 (December 1, 1989): 2579–85. http://dx.doi.org/10.1152/jappl.1989.67.6.2579.
Full textDissertations / Theses on the topic "Aerosol deposition (ADM)"
Chrir, Anass. "Dépôt de couches épaisses piézoélectriques par dépôt d’aérosol (ADM) : Maîtrise du procédé, résolution des défis post-recuit, et démonstration d’application en récupération d’énergie." Electronic Thesis or Diss., Limoges, 2024. http://www.theses.fr/2024LIMO0101.
Full textThis thesis explores the fabrication of lead-free piezoelectric thick films using the Aerosol Deposition Method (ADM) for energy harvesting applications. The work initially focused on the deposition of thick BaTiO3 (BT) layers, with a mastering of the deposition parameters. Films over 100 µm thick were successfully deposited onto Kovar® but lacked ferro/piezoelectric properties due to the grain size effect. Heat treatments above 800 °C restored these properties, thanks to annealing-induced grain growth. The addition of Li2CO3 (BT-Li) reduced the annealing temperature required to restore the functional properties to 650°C, while improving them at 800 and 900°C. Nevertheless, Kovar® substrates showed oxidation after annealing for all temperature and atmosphere conditions. Hence, stainless steel (SUS) substrates were used successfully for BT andBT-Li films, leading to improvements after annealing. Above 900°C, lithium insertion into the BT lattice hardened the ferroelectric behavior, and reduced the piezoelectric response. NBT-6BT films were also deposited onto SUS sheets, showing promising properties after annealing. An innovative aspect of this thesis was the exploration of the co-deposition of ceramic-polymer composites (CPC), making it possible to obtain films with ferro/piezoelectric properties without annealing. These films were deposited onto Kovar®, polyimide and silicon, paving the way for applications on all types of substrates, including temperature-sensitive ones such as polymers. Finally, energy recovery demonstrators were fabricated with BT, NBT-6BT and CPC layers, all validating energy harvesting potential, including non-annealed CPC demonstrators
Conference papers on the topic "Aerosol deposition (ADM)"
Seong, Byeong-Geun, Jung-Hoon Song, Young-Min Park, Hong-Youl Bae, Jin-Soo Ahn, Do-Hyeong Kim, Joong-Hwan Jun, Jong-Jin Choi, and Dong-Soo Park. "Anode Supported SOFC With GDC Barrier Layer Deposited by Aerosol Deposition Method." In ASME 2010 8th International Conference on Fuel Cell Science, Engineering and Technology. ASMEDC, 2010. http://dx.doi.org/10.1115/fuelcell2010-33288.
Full textBruckner, M., J. Kita, R. Moos, C. Münch, S. Schuurman, and V. Poulain. "P1.4 - Dense ceramic NTC thermistor films produced at room temperature by the novel aerosol deposition method (ADM) for temperature sensor applications." In AMA Conferences 2017. AMA Service GmbH, Von-Münchhausen-Str. 49, 31515 Wunstorf, Germany, 2017. http://dx.doi.org/10.5162/sensor2017/p1.4.
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