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相关概念视频

Stress: General Loading Conditions01:15

Stress: General Loading Conditions

383
To grasp the intricacy of real-world conditions where multiple loads are applied simultaneously to a structure, one might visualize a section passing through a specific point within a body, aligned parallel to the xy plane. This section is subjected to various forces, including original loads, normal forces, and shearing forces.
The shearing force, possessing potential directionality within the plane of the section, is simplified into two component forces running parallel to the x and y axes....
383
General State of Stress01:21

General State of Stress

310
The general state of stress within a material can be accurately depicted using a stress tensor. This tensor encapsulates the internal forces distributed within a material subjected to external forces or deformations.
Specifically, consider a tetrahedral element where one face, labeled XYZ, is perpendicular to the line OA, and the remaining faces align with the coordinate axes with point O as the origin. At any point, such as point O, the stress tensor can be used to determine the stress...
310
Elastic Strain Energy for Shearing Stresses01:20

Elastic Strain Energy for Shearing Stresses

297
As discussed in previous lessons, strain energy in a material is the energy stored when it is elastically deformed, a concept crucial in materials science and mechanical engineering. This energy results from the internal work done against the cohesive forces within the material. When a material undergoes shearing stress and corresponding shearing strain, the strain energy density, which is the energy stored per unit volume, is calculated. Within the elastic limit, where the stress is...
297
Elastic Strain Energy for Normal Stresses01:22

Elastic Strain Energy for Normal Stresses

266
Strain energy quantifies the energy stored within a material due to deformation under loading conditions, a fundamental concept in materials science and engineering. The strain energy can be modeled when a material is subjected to axial loading with uniformly distributed stress. In this scenario, the stress experienced by the material is the internal force divided by the cross-sectional area, and the strain induced is directly proportional to this stress through the modulus of elasticity.
If...
266
First Law: Particles in Two-dimensional Equilibrium01:18

First Law: Particles in Two-dimensional Equilibrium

5.2K
Recall that a particle in equilibrium is one for which the external forces are balanced. Static equilibrium involves objects at rest, and dynamic equilibrium involves objects in motion without acceleration; but it is important to remember that these conditions are relative. For instance, an object may be at rest when viewed from one frame of reference, but that same object would appear to be in motion when viewed by someone moving at a constant velocity.
Newton's first law tells us about...
5.2K
Components of Stress01:23

Components of Stress

285
Stress analysis under multiple loading conditions is intricate, necessitating a comprehensive grasp of normal and shearing stresses. Consider a small cube at point O, subjected to stress on all six faces, visible or not. Normal stress components σx, σy, σz act perpendicularly to the x, y, and z axes. Shearing stress components τxy and τxz are exerted on faces perpendicular to these axes.
Interestingly, the hidden cube faces also experience these stresses, equal and...
285

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相关实验视频

Updated: Sep 18, 2025

An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
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在具有波动性活力应力的二维系统中的远程顺序.

Yann-Edwin Keta1, Silke Henkes1

  • 1Instituut-Lorentz for Theoretical Physics, Universiteit Leiden, 2333 CA Leiden, The Netherlands. keta@lorentz.leidenuniv.nl.

Soft matter
|June 25, 2025
PubMed
概括

2D组织中的对智能活性力稳定了远程秩序,并创造了超均性,挑战了传统的物理定理. 这种隐藏的顺序在分析模型和细胞组织的数值模拟中都被观察到.

科学领域:

  • 软物质物理学 软物质物理学
  • 生物物理学的生物物理.
  • 材料科学 材料科学 材料科学

背景情况:

  • 二维组织表现出来自细胞骨收缩的活跃应力.
  • 标准活性物质模型通常假定粒子智能独立的波动力.
  • 在这些系统中,分散通常由周围的三维环境提供.

研究的目的:

  • 在二维弹性系统中分析和数量研究对智能活力应力的效应.
  • 探索长距离秩序和超均性的出现.
  • 为了研究活跃应激的细胞组织模型中的相变.

主要方法:

  • 从对式随机力中分析推导保存的质量中心动力学.
  • 开发和模拟一个顶点模型与随机交叉收缩.
  • 基于活性布朗粒子的活跃磁盘模型的开发和模拟.

主要成果:

  • 配对的活性力减轻了大波长波动,在二维中稳定了远距离的转换顺序.
  • 在q → 0极限中出现具有特定结构因子 (S(q) ~ q^2) 的超均性.
  • 数字模型证实了长距离的顺序和超均性,即使在无序的阶段,也表明了隐藏的顺序.
  • 在主动磁盘模型中观察到有序和无序相之间的第一阶段过渡.

更多相关视频

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
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Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops
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Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops

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相关实验视频

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An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
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Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
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Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction

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Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops
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Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal Drops

Published on: July 11, 2025

491

结论:

  • 双智的活性应力可以导致2D系统的远程顺序和超均性,从而挑战Mermin-Wagner定理.
  • 隐藏秩序的发现机制是普遍的,适用于生物和人工系统.
  • 预计结果可以在活体和合成活性物质中进行实验测试.