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椰子油硅胶的热阻尼应用及其流变特性

Thermal Damping Applications of Coconut Oil-Silica Gels and Their Rheological Properties.

作者信息

Jiménez-Galea Jesús Javier, Gómez-Merino Ana Isabel

机构信息

Department of Civil, Materials and Manufacturing Engineering, University of Malaga, Dr. Ortiz Ramos s/n, 29071 Malaga, Spain.

Department of Applied Physics II, University of Malaga, Dr. Ortiz Ramos s/n, 29071 Malaga, Spain.

出版信息

Gels. 2025 Apr 2;11(4):261. doi: 10.3390/gels11040261.

Abstract

Phase change materials (PCMs) have the advantage of using the latent thermal heat as energy storage. Coconut oil (CO) has attracted much attention as PCM due to its high stability against oxidation. Although the viscosity of CO-based dispersions has extensively been studied, little research has been performed on time-dependent flow behaviors. In this work, the rheological properties of fumed silica dispersed in CO at fractions of 1, 2, 3, and 4 vol.% were investigated. All suspensions showed shear-thinning behavior, which became more Newtonian at temperatures above the phase change. The 3 and 4 vol.% suspensions showed gel-like microstructures. The thixotropic properties of the 3 vol.% suspension at 30 °C and 35 °C were mainly studied through stepwise changes in the shear rate. The results were consistent with thixotropic behavior, with a complete recovery of the microstructure. The sweep frequency of this sample demonstrated the dominance of the elastic modulus at both temperatures. Therefore, a thixoelastic nature of this gel could be inferred. This gel-like material flowed under high stress, providing superior thermal damping capabilities compared to conventional fluids. A reduction of 8.65 °C was confirmed after 30 min. of the laptop power supply operation.

摘要

相变材料(PCM)具有利用潜热进行能量存储的优势。椰子油(CO)因其对氧化具有高稳定性而作为相变材料备受关注。尽管对基于CO的分散体的粘度已进行了广泛研究,但对其随时间变化的流动行为的研究却很少。在这项工作中,研究了气相二氧化硅以1、2、3和4体积%的比例分散在CO中的流变特性。所有悬浮液均表现出剪切变稀行为,在高于相变温度时变得更接近牛顿流体。3体积%和4体积%的悬浮液表现出凝胶状微观结构。主要通过剪切速率的逐步变化研究了3体积%悬浮液在30°C和35°C下的触变性。结果与触变行为一致,微观结构完全恢复。该样品的扫描频率表明在两个温度下弹性模量均占主导地位。因此,可以推断出这种凝胶具有触变弹性性质。这种凝胶状材料在高应力下流动,与传统流体相比具有卓越的热阻尼能力。在笔记本电脑电源运行30分钟后,确认温度降低了8.65°C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6499/12027126/1967f7e4f310/gels-11-00261-g001.jpg

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