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1-7 of 7
Keywords: microstructure
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Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. October 2021, 143(10): 102201.
Paper No: HT-21-1107
Published Online: September 8, 2021
... 24 06 2021 08 09 2021 chemical vapor deposition thin films GaN precursors MOCVD microstructure deposition In recent years, III-V compound semiconductors, which are alloys containing elements from groups III and V in the periodic table, particularly nitride semiconductors...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. July 2014, 136(7): 072701.
Paper No: HT-13-1160
Published Online: March 17, 2014
... – 76 . 10.1016/j.powtec.2012.07.045 [26] Kweon , S. C. , Ramer , E. , and Robinson , A. L. , 2003 , “ Measurement and Simulation of Ash Deposit Microstructure ,” Energy Fuels , 17 ( 5 ), pp. 1311 – 1323 . 10.1021/ef020277f [27] Goodwin , D. G. , and Mitchner , M...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. August 2013, 135(8): 081301.
Paper No: HT-12-1285
Published Online: June 27, 2013
... 2012 01 04 2013 Control of transport processes in composite microstructures is critical to the development of high-performance functional materials for a variety of energy storage applications. The fundamental process of conduction and its control through the manipulation of granular...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. July 2013, 135(7): 074504.
Paper No: HT-12-1483
Published Online: June 6, 2013
... had six turns and three sections, i.e., evaporator, condenser, and adiabatic section with lengths of 40 mm, 64 mm, and 51 mm, respectively. The cleaned copper tubing was chemically treated with a chemical solution and heated in a furnace. A microstructure layer of CuO was formed in the inner surface...
Journal Articles
Publisher: ASME
Article Type: Evaporation, Boiling, and Condensation
J. Heat Mass Transfer. July 2012, 134(7): 071504.
Published Online: May 24, 2012
... surface was examined with the contact angle of 0 deg, which had the microstructures as shown in Fig. 1 . The liquid spreading was estimated by the spreading diameter of water droplet. Figures 5 13 show that the spreading diameter of water droplet was largest; therefore, the receding region could...
Journal Articles
Publisher: ASME
Article Type: Technology Review
J. Heat Mass Transfer. February 2012, 134(2): 024001.
Published Online: December 19, 2011
... and recommended as a useful way. Kim et al. [( 30 ), 38 ] suggested that the CHF enhancement of nanofluids was due to a change in the surface microstructure and topography of the heater due to the nanoparticle surface coating formed during pool boiling. They based this on the experimental results...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. January 2007, 129(1): 79–90.
Published Online: June 8, 2006
... formulations. nanostructured materials rapid thermal processing thermal stresses heat radiation thermal diffusion Maxwell equations electromagnetic microstructure nanoscale properties radiation Parameters of selected cases, where d G and d T are the depths...