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相关概念视频

Bending of Members Made of Several Materials01:08

Bending of Members Made of Several Materials

148
In analyzing a structural member composed of two different materials with identical cross-sectional areas, it is crucial to understand how their distinct elastic properties affect the member's response under load. The analysis involves assessing stress and strain distributions using the transformed section concept, which accounts for variations in material properties.
Hooke's Law determines stress in each material, stating that stress is proportional to strain but varies due to each...
148
Members Made of Elastoplastic Material01:19

Members Made of Elastoplastic Material

97
The behavior of elastoplastic materials under bending stresses, particularly in structural members with rectangular cross-sections, is crucial for predicting material responses and understanding failure modes. Initially, when a bending moment is applied, the stress distribution across the section follows Hooke's Law and is linear and elastic. This distribution means the stress increases from the neutral axis to the maximum at the outer fibers, up to the elastic limit.
As the bending moment...
97
Dynamic Modulus of Elasticity of Concrete01:16

Dynamic Modulus of Elasticity of Concrete

322
The dynamic modulus of elasticity assesses how a concrete structure deforms under impact or dynamic loads. It is typically higher than the static modulus of elasticity, measured under slow, steady loading conditions.
The sonic test is a common method to determine the dynamic modulus. In this test, a concrete beam, sized either 6 x 6 x 30 inches or 4 x 4 x 20 inches, is clamped at its center. Vibrations are initiated at one end of the beam by an electromagnetic exciter unit powered by...
322
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity01:15

Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity

264
Deformation occurs in axial and transverse directions when an axial load is applied to a slender bar. This deformation impacts the cubic element within the bar, transforming it into either a rectangular parallelepiped or a rhombus, contingent on its orientation. This transformation process induces shearing strain. Axial loading elicits both shearing and normal strains. Applying an axial load instigates equal normal and shearing stresses on elements oriented at a 45° angle to the load axis.
264
Plastic Deformations01:19

Plastic Deformations

129
Plastic deformation represents a fundamental concept in materials science, which explains the irreversible change in the shape of a material when it experiences stress beyond its elastic capability. This phenomenon is important in structural engineering, especially in designing and analyzing cantilever beams—structures that are securely fixed at one end and bear loads at the opposite end. When these beams are subjected to loads within their elastic range, they will return to their...
129
Plastic Behavior01:21

Plastic Behavior

196
A material's elastic behavior is characterized by the disappearance of stress once the load is removed, allowing the material to return to its original state. However, when stress surpasses the yield point, yielding commences, marking the onset of plastic deformation or permanent set. This change from elastic to plastic behavior is influenced by the peak stress value and the duration before the load is removed. An intriguing observation occurs when a specimen is loaded, unloaded, and...
196

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相关实验视频

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Characterizing Dissipative Elastic Metamaterials Produced by Additive Manufacturing
09:39

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使用粘性弹性聚合物的功能分级复合结构的动态性能.

Shaoqing Wang1,2,3, Yaqin Song4, Yanmei Qiao5

  • 1School of Mechanical and Automotive Engineering, Liaocheng University, Liaocheng, 252000, China. wangshaoqing@lcu.edu.cn.

Scientific reports
|March 31, 2024
PubMed
概括

本研究介绍了一种功能分级复合结构的简化动态模型,使用粘弹性聚合物,增强振动和阻尼分析. 该模型准确地预测动态性能,帮助航空航天和机械工程应用.

关键词:
建模建模模型是什么模拟是通过模拟进行的.结构 财产关系 结构粘弹性 粘弹性 特性

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A Testing Platform for Durability Studies of Polymers and Fiber-reinforced Polymer Composites under Concurrent Hygrothermo-mechanical Stimuli
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科学领域:

  • 复合材料科学 复合材料科学
  • 机械工程 机械工程
  • 振动分析 振动分析

背景情况:

  • 具有粘弹性聚合物的功能分级复合材料提供了很好的阻尼,但缺乏有效的理论模型.
  • 复杂性阻碍了对这些先进结构的精确动态性能预测.
  • 现有的理论建模文献是有限的,需要新的方法.

研究的目的:

  • 为使用粘性弹性聚合物的功能分级复合结构建立一个简化的动态模型.
  • 为了能够有效地预测动态性能,包括振动和阻尼特性.
  • 分析结构参数对动态行为的影响.

主要方法:

  • 开发了一个简化的动态模型,考虑了层间的位移转移.
  • 使用纳维尔法和复杂模块理论来导出支配微分方程.
  • 雷利-里茨方法被用来解决方程.

主要成果:

  • 通过与现有文献和ANSYS模拟进行比较,证实了理论模型的有效性.
  • 该模型成功分析了分级指数,弹性模量和几何参数的影响.
  • 获得了对振动和减噪特征的关键见解.

结论:

  • 开发的简化动态模型为分析具有粘性弹性聚合物的功能分级复合结构提供了有效的工具.
  • 这些发现有助于更好地了解这些材料中的振动和阻尼.
  • 该模型在航空航天和机械工程设计中具有广泛的适用性.