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在低速度下降的滑梯电气化
Chirag Hinduja1, Hans-Jürgen Butt1, Rüdiger Berger1
1Max Planck Institute for Polymer Research, 55128 Mainz, Germany. berger@mpip-mainz.mpg.de.
Soft matter
|April 2, 2024
概括
滑动滴的宽度,而不是它的速度,是电荷分离的关键. 这项研究引入了一种新的仪器来测量掉落电气化和摩擦,从而进一步了解表面电荷动态.
科学领域:
- 部落电力是部落的电力.
- 表面科学是一门学科.
- 流体动力学 流体动力学
背景情况:
- 滴滴的滑动电气化通常研究在倾斜的板上,使低速充电机制不清楚.
- 现有的方法缺乏同时测量滴放电电流和摩擦力.
研究的目的:
- 为了研究滑动开始时和低速度 (≤ 1 cm s-1) 降落电气化的情况.
- 开发和使用一种用于同时测量滴放电电流和摩擦力的新型仪器.
- 为了确定掉落几何和滑动速度对电荷分离的影响.
主要方法:
- 开发了电滴摩擦力仪器 (eDoFFI),用于精确控制掉落尺寸.
- 同时测量滴放电电流和摩擦力.
- 应用Kawasaki-Furmidge摩擦力方程与测量电流相结合,以确定表面电荷密度.
主要成果:
- 掉落宽度被确定为影响掉落放电电流和电荷分离的主要几何参数.
- 表面电荷密度 (σ) 在PFOTS上计算为大约45μCm-2和在OTS涂层表面上计算为20μCm-2.
- 通过移动滴滴的电荷分离被发现是独立于滑动速度低于1厘米s-1.
结论:
- eDoFFI仪器可以直接测量表面电荷密度,并促进研究低速滑梯电气化的研究.
- 跌幅显著影响电气化,而滑动速度在低速时的影响最小.
- 该研究跨越了摩擦力研究和滑梯电气化领域.
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