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相关概念视频

Applications of Stress01:04

Applications of Stress

Consider a structure made of a boom and a rod designed to support a load. These two components are connected by a pin and stabilized by brackets and pins. The boom and the rod are detached from their supports to assess the different stresses imposed on this structure, and a free-body diagram is drawn. Then, all the forces applied, including the load acting on the structure, are identified. The reaction forces exerted on both the boom and the rod are computed using the equilibrium equations.
The...
Stress: General Loading Conditions01:15

Stress: General Loading Conditions

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.
Deformation of Member under Multiple Loadings01:11

Deformation of Member under Multiple Loadings

When a rod is made of different materials or has various cross-sections, it must be divided into parts that meet the necessary conditions for determining the deformation. These parts are each characterized by their internal force, cross-sectional area, length, and modulus of elasticity. These parameters are then used to compute the deformation of the entire rod.
In the case of a member with a variable cross-section, the strain is not constant but depends on the position. The deformation of an...
Stresses under Combined Loadings01:23

Stresses under Combined Loadings

When analyzing a bent tube with a circular cross-section subjected to multiple forces, it is crucial to determine the stress distribution in order to maintain structural integrity under varied load conditions.
The process begins by slicing the tube at critical points and analyzing the internal forces and stress components at these sections, focusing on the centroid. Normal stresses, generated by axial forces and bending moments, are either compressive or tensile and vary across the section from...
Elastic Strain Energy for Shearing Stresses01:20

Elastic Strain Energy for Shearing Stresses

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...
Impact Loading01:19

Impact Loading

Impact loading occurs when a moving object collides with a stationary structure, such as a rod with a uniform cross-sectional area fixed at one end. Under these conditions, the rod absorbs the kinetic energy from the striking object, leading to deformation and subsequent stress development. As the rod returns to its original position and reaches maximum stress, the absorbed energy, initially manifested as kinetic energy, transforms entirely into strain energy.
In cases of elastic deformation,...

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在多个网络弹性体中使用单个机械孔对多重网络弹性体进行定量应力和损伤映射.

Peng Sun1, Qi Wang2, Jin Yang3

  • 1State Key Laboratory of Fluid Power & Mechatronic System, Key Laboratory of Soft Machines and Smart Devices of Zhejiang Province, Zhejiang University, Hangzhou, Zhejiang, China.

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概括

这项研究引入了基于罗达胺的机械,用于弹性体中的同时应力和损伤映射. 通过分析循环加载期间的光变化,研究人员可以可视化材料应力并量化损害演变.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 聚合物化学 聚合物化学
  • 机械化学 机械化学

背景情况:

  • 机械化学探针可视化聚合物中的应力和损伤.
  • 使用单个探头同时绘制压力和损伤图是具有挑战性的.
  • 可逆环开放机制体报告了压力,但与损伤的相关性很差.

研究的目的:

  • 为了证明基于罗达胺的机械对弹性体的同时应力和损伤映射.
  • 开发一个机械化学损伤模型,整合实验和模拟.
  • 为了在坚固的弹性体中实现应力和损伤可视化.

主要方法:

  • 在多个网络弹性体中嵌入基于罗达胺的机械.
  • 应用循环负荷来诱导变形和损伤.
  • 分析光反应和压力-应变行为.
  • 开发和验证机械化学损伤模型.

主要成果:

  • 罗达胺机制体同时绘制压力分布和网络损伤的地图.
  • 累积的损伤导致光激活的延迟,并在重新加载时强度降低.
  • 比较光分析使得应力映射和损害量化成为可能.
  • 开发的模型准确地捕捉了压力-应变行为和光演变.

结论:

  • 罗达胺机械孔在弹性体中提供了应力和损伤可视化的双重功能.
  • 循环负荷分析提供了区分应力和损坏的方法.
  • 综合实验和模拟方法使材料行为的准确可视化成为可能.