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相关概念视频

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
Euler's Formula to Columns: Problem Solving01:23

Euler's Formula to Columns: Problem Solving

183
Euler's formula is used in structural engineering to determine the buckling load of columns under various conditions. However, when dealing with systems that incorporate both rigid elements and elastic components, such as springs, the analysis requires a finer approach to determine the critical load. The problem described involves two rigid bars connected at a pivot point with a spring attached and a vertical load applied at one end.
The system comprises two vertical rigid bars, AB and BC,...
183
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

257
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.
257
Deformation in a Circular Shaft01:10

Deformation in a Circular Shaft

273
One of the distinctive characteristics of circular shafts is their ability to maintain their cross-sectional integrity under torsion. In other words, each cross-section continues to exist as a flat, unaltered entity, simply rotating like a solid, rigid slab. To understand the distribution of shearing stress within such a shaft, consider a cylindrical section inside this circular shaft. This section has a length of L and a radius of R, with one end fixed. The radius of the cylindrical section is...
273
Torsion of Noncircular Members01:16

Torsion of Noncircular Members

130
Circular shafts undergoing torsional stress maintain their cross-sectional integrity due to their axisymmetric nature. This symmetry ensures an even distribution of stress, allowing the shaft to withstand torsion without distorting. In contrast, square bars, lacking this axial symmetry, experience significant distortion across their cross-sections when subjected to torsion, with the exception of along their diagonals and at lines connecting midpoints. A detailed examination of a cubic element...
130
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

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相关实验视频

Updated: Jun 16, 2025

Structural Design and Manufacturing of a Cruiser Class Solar Vehicle
14:57

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改进的矩形螺旋弹的增强压缩性能,内置了支功能.

Zhipeng Zhang1,2, Lihua He1,3, Jing Ni1

  • 1School of Mechanical Engineering, Hangzhou Dianzi University, Hangzhou, China.

Heliyon
|August 21, 2024
PubMed
概括

一种具有集成支的新型矩形螺旋弹提高了检查的性能. 这种工程弹减少了横向偏移,并改善了力反,从而提高了门操作的稳定性和效率.

关键词:
轴向压缩是一种轴向压缩.压缩性能 压缩性能对于女性来说,FEM就是女性.螺旋式弹 螺旋式弹 螺旋式弹支持功能支持功能.

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Last Updated: Jun 16, 2025

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科学领域:

  • 机械工程 机械工程
  • 材料科学 材料科学 材料科学

背景情况:

  • 弹系统对于检查的性能至关重要,影响定时和流量稳定.
  • 传统的弹在稳定性和精度方面存在局限性.

研究的目的:

  • 为了评估一个精致的矩形螺旋弹的压缩性能与集成的支功能.
  • 为了比较工程弹与常规弹的性能.

主要方法:

  • 使用有限元法 (FEM) 设计和建模精炼弹.
  • 实验室实验以验证FEM模拟结果.
  • 在相同条件下,工程弹和常规弹之间的比较分析.

主要成果:

  • 支持特征弹显示横向偏移减少10.1% (2.84毫米).
  • 工程弹表现出强力移位曲线,振动间隔和振幅减少.
  • 在支持特色弹中观察到17.5%的改善力反.

结论:

  • 集成的支功能显著提高了矩形螺旋弹的压缩性能.
  • 精致的弹设计为回扣应用提供了更好的稳定性和力反.
  • 这种工程弹代表了优化检查功能的一项可行的进步.