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    • 10. 发明授权
    • Micro-nano fluid damper
    • 微纳米流体阻尼器
    • US09422997B2
    • 2016-08-23
    • US14262853
    • 2014-04-28
    • National Applied Research Laboratories
    • Fang-Yao YehKuo-Chun ChangTsung-Wu ChenChung-Han Yu
    • F16F9/00F16F9/512F16F9/34F16F9/19F16F9/20
    • F16F9/006F16F9/19F16F9/20
    • A micro-nano fluid damper includes a sleeve, a piston assembly and a micro-nano fluid. The sleeve has an accommodating space. The piston assembly has a piston head and at least one piston rod. The piston assembly is movably disposed in the accommodating space. The piston rod extends out of the sleeve from a side of the piston head. The micro-nano fluid is filled between the sleeve and the piston assembly, and the micro-nano fluid flows in the accommodating space by the back-and-forth movement of the piston. When a shear strain rate of the micro-nano fluid is greater than 1s−1, an exponent of velocity of the micro-nano fluid damper is less than 1, and the micro-nano fluid has a shear thinning threshold and a shear thickening threshold.
    • 微纳米流体阻尼器包括套筒,活塞组件和微纳米流体。 袖子有一个容纳空间。 活塞组件具有活塞头和至少一个活塞杆。 活塞组件可移动地设置在容纳空间中。 活塞杆从活塞头的一侧延伸出套筒。 微纳米流体填充在套筒和活塞组件之间,并且微纳米流体通过活塞的往复运动而流入容纳空间。 当微纳米流体的剪切应变速率大于1s-1时,微纳米流体阻尼器的速度指数小于1,微纳米流体具有剪切稀化阈值和剪切增稠阈值 。