Wu Xiangfan, Guo Yangyang, Tian Zuzhi, Li Haopeng, Shi Zhiyuan
School of Mechanical and Electrical Engineering, Xuzhou University of Technology, Xuzhou 221018, China.
School of Mechanical and Electrical Engineering, China University of Mining and Technology, Xuzhou 221116, China.
Materials (Basel). 2025 Aug 15;18(16):3840. doi: 10.3390/ma18163840.
Magnetorheological fluid exhibits shear-thinning behavior when subjected to high temperature environments exceeding 100 °C, which will significantly compromise the operational stability and reliability of the associated mechanical systems. To enhance the performance of magnetorheological fluid, this study selects soft magnetic particles, base carrier fluid, and surfactants based on their resistance to high temperatures and shear-thinning effects. A novel magnetorheological fluid with enhanced thermal stability and shear stability is subsequently developed by carefully selecting flake-shaped carbonyl iron powder, dimethyl silicone oil, and surfactant exhibiting both sedimentation stability and high temperature resistance. The apparent rheological properties and mechanical performance of the fluid are systematically evaluated. Experimental results indicate that the sedimentation rate of the prepared magnetorheological fluid is 3.86% after standing for 10 days, the thermal expansion rate at 200 °C is 12.8%, and the evaporation rate following repeated high temperature applications is only 0.66%. The shear yield stress of the prepared magnetorheological fluid is 31.2 kPa under the magnetic field of 817 mT. The prepared magnetorheological fluid demonstrates excellent thermal stability and shear-thinning resistance, which holds significant potential for enhancing the performance of magnetorheological devices in future applications.
当磁流变液处于超过100°C的高温环境中时,会表现出剪切变稀行为,这将显著损害相关机械系统的运行稳定性和可靠性。为了提高磁流变液的性能,本研究基于其耐高温性和抗剪切变稀效应,选择了软磁颗粒、基础载液和表面活性剂。随后,通过精心选择具有沉降稳定性和耐高温性的片状羰基铁粉、二甲基硅油和表面活性剂,开发出了一种具有增强热稳定性和剪切稳定性的新型磁流变液。系统地评估了该流体的表观流变性能和力学性能。实验结果表明,制备的磁流变液静置10天后的沉降率为3.86%,200°C时的热膨胀率为12.8%,反复高温作用后的蒸发率仅为0.66%。在817 mT的磁场下,制备的磁流变液的剪切屈服应力为31.2 kPa。制备的磁流变液表现出优异 的热稳定性和抗剪切变稀性能,在未来应用中提高磁流变装置的性能方面具有巨大潜力。