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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 31, 2018 - Issue 5
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Original Articles

Characterization of the boiling width on metal quenching with spray cooling

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Pages 391-404 | Received 02 Oct 2017, Accepted 18 Jan 2018, Published online: 01 Feb 2018

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Xiao Zhao, Haifeng Zhang, Xiuzhi Xi, Feng Liu & Bo Zhang. (2023) Effect of unidirectional surface roughness on heat transfer performance of spray cooling. Experimental Heat Transfer 36:1, pages 96-119.
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Xiao Zhao, Zhichao Yin & Bo Zhang. (2020) Experimental study on transient heat transfer characteristics of intermittent spray cooling. Experimental Heat Transfer 33:7, pages 613-632.
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A. R. Pati & S. S. Mohapatra. (2019) The effect of oxide layer in case of novel coolant spray at very high initial surface temperature. Experimental Heat Transfer 32:2, pages 116-132.
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Articles from other publishers (3)

Xiangdong Meng, Shi Li, Weidong Fu, Yuwei Chen, Qiangling Duan & Qingsong Wang. (2022) Experimental study of intermittent spray cooling on suppression for lithium iron phosphate battery fires. eTransportation 11, pages 100142.
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Yuan Fang, Hermann Woche & Eckehard Specht. (2020) Influence of surface roughness on heat transfer during quenching hot metals with different nozzles. Heat and Mass Transfer 56:8, pages 2355-2365.
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Beata Hadała, Zbigniew Malinowski, Tadeusz Telejko, Artur Szajding & Agnieszka Cebo-Rudnicka. (2019) Experimental identification and a model of a local heat transfer coefficient for water – Air assisted spray cooling of vertical low conductivity steel plates from high temperature. International Journal of Thermal Sciences 136, pages 200-216.
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