摘要
制备了粒度分布为11-50nm的TiO2—H2O纳米流体,测量了纳米流体的相变潜热、表面张力和过冷度。相对于去离子水,质量分数为1%的纳米流体相变潜热减小了2.4%,表面张力增大了1.6%,过冷度降低了66.2%。纳米流体过冷度随TiO2浓度增大而降低,表面张力随TiO2浓度增大没有明显变化。运用相变动力学原理,对纳米流体过冷度降低的机理进行了分析。
TiO2-H2O nanofluids whose particle size ranged from llnm to 50nm was prepared. The latent heat of melting, the surface tension and the degree of supercooling of TiO2-H2O nanofluids were measured experimentaly. Com- pared with deionized water, the latent heat of melting of nanofluids (1 % mass fraction)reduced 2.4 %, the surface tension increased 1.6%,and the degree of supercooling reduced 66. 2%. With the increase of concentration of TiO2-H2O nanoflu- ids, the degree of supercooling reduced correspondingly, but the surface tension had no obvious change. The reduction of de- gree of supercooling of nanofluids was analyzed based on the theory of phase change dynamics.
出处
《化工新型材料》
CAS
CSCD
北大核心
2014年第3期125-126,129,共3页
New Chemical Materials
基金
国家自然科学基金(51276204)
关键词
纳米流体
潜热
表面张力
过冷度
nanofluid, latent heat, surface tension, degree of supercooling