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Aggregate shape is classified based on the relative sharpness or roundness of the edges and corners. This classification includes categories like rounded, angular, elongated, and flaky, each with specific characteristics. Rounded aggregates, fully shaped by attrition, are typical of river or seashore gravel, while angular aggregates, such as crushed rock, have well-defined edges. Aggregates that are elongated and flaky are less desirable, as they can reduce the workability and strength of...
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Impact of Groups on Groups01:19

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Social psychologists analyze how groups influence one another, shaping social structures and interactions through both cooperation and competition. These dynamics manifest in various ways, ranging from economic partnerships to intergroup conflicts that shape societal structures and perceptions.Cooperation and Competition in Intergroup RelationsIntergroup relationships vary across contexts, sometimes fostering cooperation and mutual benefit while at other times leading to conflict and...
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Impact occurs when two bodies collide, leading to the application of impulsive forces between them. Analyzing impact mechanics involves considering two colliding particles moving along a line known as the line of impact, which passes through their centers and is perpendicular to the contact plane.
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Impacts can be classified in various forms, primarily under two subgroups: central impact and oblique impact. A central impact occurs when two objects collide head-on, possessing opposite velocities aligned along the line of impact. Conversely, an oblique impact occurs when two objects collide at an angle, resulting in a modification of both direction and velocity.
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液体图案使用滴滴对纹理非湿面的影响.

Biruk Teka Gidreta1, Elijah Williams1, Michal Remer1,2

  • 1Energy Transport Lab (ETL), Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan 48109-1382, United States.

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概括

研究人员精确地控制微柱上的滴滴撞击形状,创建各种多边形湿区域. 这一突破使新的微型制造和热管理应用成为可能.

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温泽尔州 温泽尔州滴水的冲击影响.液体图案 液体图案 液体图案它们是微型支柱.没有湿的表面.

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科学领域:

  • 表面科学和微流体学
  • 滴滴动力学和湿现象

背景情况:

  • 控制滴滴接触形状对于诸如喷墨印刷和喷雾冷却等工业流程至关重要.
  • 现有的方法缺乏精确控制滴滴基质相互作用.

研究的目的:

  • 开发一种新的方法,用于精确控制结构表面上的滴水冲击接触形状.
  • 调查表面地形和滴滴特性对湿区形态学的影响.

主要方法:

  • 实验研究滴滴对不同柱子排列和密度的不湿微柱的影响.
  • 基于接触线物理学的统一分析模型的开发,以预测湿形态.

主要成果:

  • 实现精确控制滴滴接触形状,形成多边形区域 (正方形,矩形,六边形,八边形,十二边形).
  • 证明了柱子排列 (直线与分层) 决定了特定的多边形形状.
  • 开发了一种有效的分析模型,用于稳定状态和暂时湿形态,适用于泡收缩.

结论:

  • 该研究提出了一种独特的方法来操纵微观结构表面上的滴滴冲击形态.
  • 这些发现揭示了滴水对不湿表面的影响和滴水蒸发在湿表面之间的相似之处.
  • 这种形状控制策略对微型制造,印刷电子产品和热管理具有重大潜力.