热解持续时间对导热液体中分散 PCB 颗粒的热导率、稳定性和粘度的影响

Wahyuaji Narottama Putra, M. Ariati, Bambang Suharno, D. Ferdian, R. M. Ulum
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引用次数: 0

摘要

与流体相比,固体颗粒具有更高的导热性。因此,通常的做法是将固体颗粒分散在基础流体中,以增加其导热性。分散颗粒的流体称为导热流体。导热流体(如冷却剂)被广泛用作传热流体。有几种颗粒可用于提高流体的导热性,如金属颗粒、金属氧化物颗粒,甚至碳基颗粒。在本研究中,使用了碳基颗粒作为分散颗粒。这种颗粒是通过处理电子废料,特别是印刷电路板(PCB)获得的。PCB经过15、30和45分钟不等的热解,以增加碳含量。热解后,碾磨颗粒以减小其尺寸。随后,将多氯联苯颗粒加入蒸馏水中。加入十二烷基苯磺酸钠(SDBS)作为表面活性剂,以增加流体稳定性并防止颗粒团聚。在 15 分钟的热解过程中,导热性提高了 13%。添加 SDBS 表面活性剂还能将导热液体的稳定性提高到 -29.1 mV。导热液体的粘度略有增加,最高达到 0.984 mPa.S。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE EFFECT OF PYROLYSIS DURATION ON THERMAL CONDUCTIVITY, STABILITY, AND VISCOSITY OF DISPERSED PCB-BASED PARTICLES IN THERMAL FLUID
Solid particles have a higher thermal conductivity compared to a fluid. Therefore, it is a common practice to disperse solid particles inside a base fluid to increase its thermal conductivity. The particle-dispersed fluid is called a thermal fluid. Thermal fluid, such as a coolant, is widely used as a heat transfer fluid. Several types of particles can be used to increase the thermal conductivity of the fluid, i.e., metallic particles, metal-oxide particles, or even carbon-based particles. In this research, a carbon-based particle was used as the dispersed particle. The particle was obtained by processing electronic waste, specifically Printed Circuit Board (PCB). The PCB was pyrolyzed for variable duration at 15, 30, and 45 minutes to increase the carbon content. After pyrolyzing, the particle was milled to reduce its size. Subsequently, the PCB particle was added to distilled water. Sodium Dodecylbenzene Sulfonate (SDBS) was added as a surfactant to increase fluid stability and prevent particle agglomeration. Thermal conductivity was improved by up to a 13% increase at the 15-minute pyrolysis. Adding SDBS surfactant also improves the thermal fluid's stability to -29,1 mV. The fluid's viscosity was slightly increased up to a maximum of 0.984 mPa.S.
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