Keyword search (4,163 papers available)

"power" Keyword-tagged Publications:

Title Authors PubMed ID
1 Investigating Workplace Bullying Using a Person-Centered Approach: Capturing Targets Exposure and Sense of Defenselessness Through Latent Profile Analysis Trépanier SG; Notelaers G; Birkeland Nielsen M; Morin AJS; 41902650
CONCORDIA
2 Entrepreneurship as a driver of rural women s empowerment in Iran Rezaei-Moghaddam K; Fatemi M; Ghafouri M; Golkarfard M; 41290906
ENCS
3 Queer occultism, sentimental biopower, and becoming bottoms as a means to divest from white supremacy among practitioners of magic in Montreal Sydney Sheedy 40078317
CONCORDIA
4 Effects of early midlife ovarian removal on sleep: Polysomnography-measured cortical arousal, homeostatic drive, and spindle characteristics Brown A; Gervais NJ; Gravelsins L; O' Byrne J; Calvo N; Ramana S; Shao Z; Bernardini M; Jacobson M; Rajah MN; Einstein G; 39178647
HKAP
5 The effects of competition and implicit power motive on men's testosterone, emotion recognition, and aggression Vongas JG; Al Hajj R; 28455183
JMSB
6 A Multilevel Person-Centered Perspective on the Role of Job Demands and Resources for Employees' Job Engagement and Burnout Profiles Gillet N; Morin AJS; Blais AR; 38698872
CONCORDIA
7 Microstructure of Deposits Sprayed by a High Power Torch with Flash Boiling Atomization of High-Concentration Suspensions Amrollahy Biouki S; Ben Ettouil F; C Liberati A; Dolatabadi A; Moreau C; 38612008
ENCS
8 A longitudinal investigation of structural empowerment profiles among healthcare employees Cougot B; Gillet N; Morin AJS; Gauvin J; Ollierou F; Moret L; Tripodi D; 38093467
CONCORDIA
9 Update on air pollution control strategies for coal-fired power plants Asif Z; Chen Z; Wang H; Zhu Y; 35572480
ENCS
10 Age of Acquisition Modulates Alpha Power During Bilingual Speech Comprehension in Noise Grant AM; Kousaie S; Coulter K; Gilbert AC; Baum SR; Gracco V; Titone D; Klein D; Phillips NA; 35548507
CRDH
11 Efficient Authentication Protocol and Its Application in Resonant Inductive Coupling Wireless Power Transfer Systems Ahene E; Ofori-Oduro M; Twum F; Walker J; Missah YM; 34960339
ENCS
12 Feasibility of Pressure-Retarded Osmosis for Electricity Generation at Low Temperatures Abbasi-Garravand E; Mulligan CN; 34436319
ENCS
13 Work Fatigue Profiles: Nature, Implications, and Associations With Psychological Empowerment. Blais AR, Gillet N, Houle SA, Comeau CA, Morin AJS 33329261
CONCORDIA
14 A Benchmark of Data Stream Classification for Human Activity Recognition on Connected Objects. Khannouz M; Glatard T; 33202905
ENCS
15 Differences in MEG and EEG power-law scaling explained by a coupling between spatial coherence and frequency: a simulation study. Bénar CG, Grova C, Jirsa VK, Lina JM 31292816
PERFORM
16 The relationship between exercise intensity, cerebral oxygenation and cognitive performance in young adults. Mekari S, Fraser S, Bosquet L, Bonnéry C, Labelle V, Pouliot P, Lesage F, Bherer L 26063061
PERFORM

 

Title:Microstructure of Deposits Sprayed by a High Power Torch with Flash Boiling Atomization of High-Concentration Suspensions
Authors:Amrollahy Biouki SBen Ettouil FC Liberati ADolatabadi AMoreau C
Link:https://pubmed.ncbi.nlm.nih.gov/38612008/
DOI:10.3390/ma17071493
Publication:Materials (Basel, Switzerland)
Keywords:flash boiling atomizationhigh concentration suspensionhigh plasma torch powersuspension plasma spray
PMID:38612008 Category: Date Added:2024-04-13
Dept Affiliation: ENCS
1 Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, QC H3G 1M8, Canada.
2 Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON M5S 3G8, Canada.

Description:

The main objective of this study was to use flash boiling atomization as a new method to inject suspensions with high solid content into the high-power plasma flow. The water-based suspension was prepared with submicron titanium oxide particles with an average size of 500 nm. The investigated solid concentrations were 20, 40, 55 and 70 wt%. Two plasma torches operated at 33, 70 and 110 kW were used to investigate the effect of increasing power on the deposited microstructure and deposition efficiency. At low torch power, the deposition efficiency decreased with increasing solid concentration, and deposits with a high number of unmelted particles were obtained with 70 wt% suspensions. At high torch power, the deposition efficiency increased with increasing solid concentration, and dense deposits were obtained with 70 wt% suspensions. XRD analysis was performed on all deposits to determine the distribution of rutile and anatase phases. The percentage of the anatase phase varied from 35.7% to 66.9%, depending on the power input and solid concentration.





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