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相关概念视频

Dry Friction01:30

Dry Friction

324
Dry friction occurs between two solid surfaces in contact as they attempt to move relative to one another. In daily life, dry friction is encountered in various forms, such as when walking on the ground, sliding an object across a table, or rubbing hands together. Despite its ubiquity, the underlying mechanisms behind dry friction are not readily visible.
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
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Surface Tension, Capillary Action, and Viscosity02:57

Surface Tension, Capillary Action, and Viscosity

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Surface Tension
The various IMFs between identical molecules of a substance are examples of cohesive forces. The molecules within a liquid are surrounded by other molecules and are attracted equally in all directions by the cohesive forces within the liquid. However, the molecules on the surface of a liquid are attracted only by about one-half as many molecules. Because of the unbalanced molecular attractions on the surface molecules, liquids contract to form a shape that minimizes the number...
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Frictional Force01:07

Frictional Force

6.6K
When a body is in motion, it encounters resistance because the body interacts with its surroundings. This resistance is known as friction, a common yet complex force whose behavior is still not completely understood. Friction opposes relative motion between systems in contact, but also allows us to move. Friction arises in part due to the roughness of surfaces in contact. For one object to move along a surface, it must rise to where the peaks of the surface can skip along the bottom of the...
6.6K
Characteristics of Dry Friction01:21

Characteristics of Dry Friction

442
Dry friction occurs when two solid surfaces slide against each other without any lubrication or fluid present. It causes resistance when pushing objects along a surface, like a gardener pushing a wheelbarrow. The force applied to move the cart causes dry friction between the wheel and the ground.
Before the wheelbarrow starts moving, the static frictional force acts tangentially to the contact surface, opposing the force that is about to induce the motion. This frictional force prevents the...
442
Rolling Resistance01:21

Rolling Resistance

241
When a solid cylinder rolls steadily on a rigid surface, the normal force applied by the surface on the cylinder is perpendicular to the tangent at the contact point. However, since no materials are entirely rigid, the surface's reaction to the cylinder involves a range of normal pressures.
For instance, imagine a hard cylinder rolling on a comparatively soft surface. The cylinder's weight compresses the surface beneath it. As the cylinder moves, the material in front of it slows down...
241
Design Example: Deciding Thickness of Lubricating Fluid in a Shaft01:23

Design Example: Deciding Thickness of Lubricating Fluid in a Shaft

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Effective lubrication between a rotating shaft and its bearing housing is essential in rotating machinery to minimize friction, wear, and energy loss. With carefully controlled thickness and viscosity, the lubricant layer prevents metal-to-metal contact, ensuring smooth operation.
To calculate the required thickness of the lubricant layer, the tangential velocity at the shaft's surface must first be determined. This velocity is calculated by converting the rotational speed to angular...
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Rendering SiO2/Si Surfaces Omniphobic by Carving Gas-Entrapping Microtextures Comprising Reentrant and Doubly Reentrant Cavities or Pillars
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在纹理滑剂注入表面上的湿生长动态.

Haobo Xu1, Tomasz Kulakowski1,2, Young Jin Lee1

  • 1Energy Transport Lab, Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109, United States.

ACS applied materials & interfaces
|May 8, 2025
PubMed
概括

研究人员研究了滑剂注入的表面上的湿. 这条对液滴流动性至关重要的山脊比液滴大约30%更宽,并独立于油脂粘度保持其半体积.

关键词:
连接线路的固定方式流体结构相互作用.滑剂耗尽 耗尽 滑剂耗尽用滑剂注入的表面.三相连接线的连接线是三相连接线.湿的山脊 湿的山脊包装层是一个包装层.

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科学领域:

  • 表面科学与工程 表面科学与工程
  • 流体动力学 流体动力学
  • 微流体学 微流体学

背景情况:

  • 滴滴-表面相互作用对于微流体和芯片上的实验室应用至关重要.
  • 滑剂注入的表面表现出一个轴对称的环状湿,与传统的超表面不同.
  • 由于界面力不平衡,导致这种湿的形成机制仍然不清楚.

研究的目的:

  • 实验性地描述和分析地建模滑剂注入表面上的湿.
  • 为了阐明湿在滴水流动中的作用.
  • 为了建立一个机械的理解湿的动态.

主要方法:

  • 开发基于几何学的分析模型,用于稳定状态的湿形状.
  • 分析模型的实验验证.
  • 数字模拟以进一步验证模型并了解山脊动态.

主要成果:

  • 稳定状态湿半径大约比滴滴半径大30%.
  • 湿的高度达到滴滴半径的一半.
  • 湿的体积大约是滴滴体积的50%,不论油的粘度如何.

结论:

  • 已经建立了一个对湿形状的验证分析模型.
  • 湿地脊的关键几何参数 (半径,高度,体积) 已得到量化.
  • 这些发现增强了对滑剂注入表面的滴水行为的理解.