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相关概念视频

Thin-Walled Hollow Shafts01:15

Thin-Walled Hollow Shafts

176
In analyzing a thin-walled hollow shaft subjected to torsional loading, a segment with width dx is isolated for examination. Despite its equilibrium state, this segment faces torsional shearing forces at its ends. These forces are quantitatively described by the product of the longitudinal shearing stress on the segment's minor surface and the area of this surface, leading to the concept of shear flow. This shear flow is consistent throughout the structure, indicating a uniform distribution...
176
Transformation of Plane Strain01:12

Transformation of Plane Strain

159
When analyzing elongated structures like bars subjected to uniformly distributed loads, it is essential to understand the transformation of plane strain when coordinate axes are rotated. This transformation helps to assess how material deformation characteristics vary with orientation, which is crucial in materials science and structural engineering.
Under plane strain conditions, typical for members where one dimension significantly exceeds the others, deformations and resultant strains are...
159
Three-Dimensional Analysis of Strain01:29

Three-Dimensional Analysis of Strain

209
Three-dimensional strain analysis is crucial for understanding how materials deform under stress, particularly in elastic, homogeneous materials. This method employs principal stress axes to simplify complex stress states into more understandable forms. Subjected to stress, a small cubic element within a material either expands or contracts along these axes, transforming into a rectangular parallelepiped. This transformation effectively illustrates the material's deformation. The principal...
209
Spherical Coordinates01:23

Spherical Coordinates

10.0K
Spherical coordinate systems are preferred over Cartesian, polar, or cylindrical coordinates for systems with spherical symmetry. For example, to describe the surface of a sphere, Cartesian coordinates require all three coordinates. On the other hand, the spherical coordinate system requires only one parameter: the sphere's radius. As a result, the complicated mathematical calculations become simple. Spherical coordinates are used in science and engineering applications like electric and...
10.0K
Relative Motion Analysis using Rotating Axes01:25

Relative Motion Analysis using Rotating Axes

450
Consider a component AB undergoing a linear motion. Along with a linear motion, point B also rotates around point A. To comprehend this complex movement, position vectors for both points A and B are established using a stationary reference frame.
However, to express the relative position of point B relative to point A, an additional frame of reference, denoted as x'y', is necessary. This additional frame not only translates but also rotates relative to the fixed frame, making it...
450
Stress Concentrations in Circular Shafts01:18

Stress Concentrations in Circular Shafts

167
Consider the elastic torsion formula, which applies to a circular shaft with a consistent cross-section. This formula assumes that the shaft's ends are loaded with rigid plates firmly attached. However, in many cases, torques are applied to the shaft through mechanisms like flange couplings or gears, which are connected by keys inserted into keyways. This application method modifies the stress distribution near the point of torque application, causing it to deviate from the distributions...
167

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相关实验视频

Updated: Jun 14, 2025

Quantification of Strain in a Porcine Model of Skin Expansion Using Multi-View Stereo and Isogeometric Kinematics
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在复杂的圆柱形外结构中的冲击定位基于时间逆转虚拟聚焦三角化方法.

Xiufeng Huang1,2, Rongwu Xu1,2, Wenjing Yu1,2

  • 1Laboratory of Vibration and Noise, Naval University of Engineering, Wuhan 430033, China.

Sensors (Basel, Switzerland)
|August 29, 2024
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概括

这项研究引入了一种使用时间逆转虚拟聚焦的大型结构的新影响本地化方法. 该技术在没有先前的结构数据的情况下准确地确定冲击点,改进了传统方法.

关键词:
影响本地化影响本地化.大规模的隔间结构.时间逆转虚拟聚焦 时间逆转虚拟聚焦三角测量定位定位定位

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科学领域:

  • 结构健康监测 结构健康监测
  • 声学信号处理 声学信号处理
  • 波浪力学 波浪力学

背景情况:

  • 撞击源在大型异型化的硬化隔间圆柱体外中的定位是复杂的.
  • 现有的方法往往需要先前了解结构性质或波速.
  • 准确的定位对于损坏评估和结构完整性至关重要.

研究的目的:

  • 为复杂的外结构开发一种新的非接触式冲击本地化方法.
  • 通过不要求事先的结构信息来克服传统方法的局限性.
  • 提高撞击探测的准确性和可靠性.

主要方法:

  • 利用一个时间逆转的虚拟聚焦三角化方法.
  • 采用能量功率过用于关键传感器选择.
  • 应用波束包分解用于Lamb波信号提取和合成.
  • 集成的时间逆转放大器,用于改进信号识别.

主要成果:

  • 在非机动条件下,实现了0.89m的平均定位误差.
  • 在机动运行条件下报告了1.12米的平均误差.
  • 与传统的三角测量方法相比,证明了优越的本地化性能,即使有背景噪声.
  • 确定选择前三名的能源功率排名传感器会产生更高的准确性.

结论:

  • 拟议的时间逆转虚拟聚焦方法为具有挑战性的结构中的冲击本地化提供了强大的解决方案.
  • 该技术有效地提取和增强Lamb波信号,以准确识别源.
  • 基于能量功率排名的传感器选择显著提高了定位精度.