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相关概念视频

Centroid of a Body: Problem Solving01:03

Centroid of a Body: Problem Solving

1.8K
The centroid of a body is a crucial concept in engineering and physics. Finding the centroid of a body can help determine its stability, its balance point, and even its design. In this context, consider a thin wire bent in the form of a quarter circular arc. Polar coordinates are used to calculate the centroid. The wire is first divided into small differential elements of a length equal to the radius multiplied by the differential angle.
The x-coordinates and y-coordinates of each element's...
1.8K
Centroid of a Body01:16

Centroid of a Body

1.7K
The centroid is an important concept in engineering, physics, and mechanics. It is the geometric center of a body. It always lies within the body except in cases with holes or cavities. When the material that a body is composed of is uniform or homogeneous, the centroid coincides with its center of mass or the center of gravity.
For a homogeneous body with constant density, the centroid can usually be found using equations representing a balance of the moments of the body's volume. If the...
1.7K
Centroid for the Paraboloid of Revolution01:16

Centroid for the Paraboloid of Revolution

844
The paraboloid of revolution is an axially symmetric surface generated by rotating a parabola around its axis. This shape has several applications in mechanical engineering due to its advantageous structural properties, such as strength against stress concentration points and rotational symmetry.
The centroid for the paraboloid of revolution is the point where all the mass of the paraboloid is concentrated. This centroid is important for engineering applications, as it determines how forces are...
844
Distance Measurements by Taping01:18

Distance Measurements by Taping

386
Tapes are essential in surveying for accurate, durable, and short-distance measurements. Made from lightweight, nylon-coated steel, they offer flexibility and strength for rugged outdoor use. The nylon coating protects against rust and wear, extending the tape's life. Standard lengths, around 30 meters, are marked in meters and millimeters for precision.Surveyors select tapes based on site conditions and accuracy needs. Lightweight, nylon-coated tapes are commonly used for ease of handling and...
386

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相关实验视频

Updated: Jan 9, 2026

Three-Dimensional Finger Motion Tracking during Needling: A Solution for the Kinematic Analysis of Acupuncture Manipulation
08:27

Three-Dimensional Finger Motion Tracking during Needling: A Solution for the Kinematic Analysis of Acupuncture Manipulation

Published on: October 28, 2021

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基于3D扫描和胡克定律的高精度中心点测量方法.

Xin He1, Zhen Li2, Xin Pan2

  • 1Engineering Training Center, Tianjin University of Technology and Education, Tianjin 300222, China.

Sensors (Basel, Switzerland)
|December 11, 2025
PubMed
概括

一种新的方法结合了3D扫描和胡克定律传感,以精确确定物体的中心点. 这种方法克服了传统方法的局限性,为工程和制造应用提供了更高的准确性.

关键词:
通过3D扫描扫描.胡克的法则 胡克的法则中心点测量测量中心点多点称重方法多点称重方法

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Automatic Laser-based Geometry Capture for Finite Element Analysis of Weld Beads
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Automatic Laser-based Geometry Capture for Finite Element Analysis of Weld Beads

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Easy and Accurate Mechano-profiling on Micropost Arrays
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Easy and Accurate Mechano-profiling on Micropost Arrays

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相关实验视频

Last Updated: Jan 9, 2026

Three-Dimensional Finger Motion Tracking during Needling: A Solution for the Kinematic Analysis of Acupuncture Manipulation
08:27

Three-Dimensional Finger Motion Tracking during Needling: A Solution for the Kinematic Analysis of Acupuncture Manipulation

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Automatic Laser-based Geometry Capture for Finite Element Analysis of Weld Beads
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Automatic Laser-based Geometry Capture for Finite Element Analysis of Weld Beads

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科学领域:

  • 计量学 计量学 计量学
  • 机械工程 机械工程
  • 航空航天工程 航空航天工程

背景情况:

  • 准确的中心点测定对于航空航天和制造业的质量控制至关重要.
  • 像多点称重这样的传统方法存在范围限制,对齐错误和侧向力干扰,从而降低精度.

研究的目的:

  • 开发一种新的测量框架,以精确确定心脏中心点.
  • 为了克服现有的中心点测量技术的局限性.

主要方法:

  • 将高精度的3D扫描与基于胡克定律的机械传感相协同.
  • 利用非接触式3D扫描来实现几何兼容性,并消除机械定位依赖.
  • 整合了基于线性弹的力传导和积极的抗倾斜补偿与3D扫描和电机平衡.

主要成果:

  • 实验验证显示,与多点称重相比,准确度小于毫米.
  • 测量到的中心点偏差为0.01毫米 (X轴),0.06毫米 (Y轴) 和0.03毫米 (Z轴).
  • 实现了0.07毫米的复合空间精度.

结论:

  • 拟议的方法为心体测量系统提供了增强的操作能力.
  • 提供新的理论见解和测量复杂部件和系统的强有力的方法.