纳米流体
冷却液
材料科学
猝灭(荧光)
水射流
传热
热力学
喷射(流体)
水冷
机械
复合材料
光学
物理
喷嘴
荧光
作者
Xiuhua Tian,Tianliang Fu,Jiawen Zhang,Zhaodong Wang,Guodong Wang
出处
期刊:Isij International
[The Iron and Steel Institute of Japan]
日期:2020-04-10
卷期号:60 (9): 1993-1999
被引量:4
标识
DOI:10.2355/isijinternational.isijint-2019-776
摘要
The industrial application of nanofluids had been explored by many researchers since nanofluids were proposed. However, there were different opinions on the effect in jet cooling. In this paper, 0.4 vol%, 0.8 vol%, 1.2 vol%, 1.8 vol%, 2.4 vol% Al2O3-water, TiO2-water, SiO2-water nanofluids and pure water were used as quenching coolants to complete single jet cooling experiments on the free surface of 50 mm high-temperature steel plate. The results showed that using low concentration (0.4–1.2 vol%) nanofluids could significantly improve the maximum heat fluxes, cooling speed peaks, and moving velocities of peaks along the thickness direction compared with pure water. However, the cooling uniformity in the horizontal direction was reduced, especially with high concentration nanofluids (≥1.8 vol%). Through comprehensive comparison, when 1.2 vol% Al2O3 + water was used as coolant, the optimal cooling efficiency could be achieved, and cooling speed peaks along the thickness were 8.14%–19.70%, 2.16%–3.48% and 0.74%–1.44% higher than that of pure water respectively.
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