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Vibrating Concrete01:19

Vibrating Concrete

121
Mechanical vibrators are instrumental in compacting newly poured concrete within formwork and around reinforcements. This process is essential to eliminate trapped air pockets and establish a dense concrete mass. One widely used method is vibrating by internal vibrators, often referred to as a poker vibrator or immersion vibrator. It is rapidly inserted through the full depth of the freshly laid concrete and slightly extends into the layer below it (which remains in a plastic state). Consistent...
121
Residual Stresses in Circular Shafts01:10

Residual Stresses in Circular Shafts

194
In materials that exhibit elastic and plastic behavior, known as elastoplastic materials, residual stresses can accumulate when these materials experience plastic deformation. This deformation arises from either high levels of shearing stress or significant strains. Residual stresses are internal stresses that persist within a material after removing the external force causing deformation. This phenomenon is demonstrated when observing the behavior of a shaft under torque; notably, the...
194
Stress Concentrations in Circular Shafts01:18

Stress Concentrations in Circular Shafts

198
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...
198
Stress on an Oblique Plane01:16

Stress on an Oblique Plane

619
Understanding stress on an oblique plane under axial loading is pivotal in material mechanics. This analysis offers insight into a material's durability and strength, which is crucial for civil engineering and structural design. Axial loading refers to force application along the material's central axis, causing compression or elongation and leading to normal stress. Normal stress occurs when a force acts perpendicularly to the material's area, resulting in compressive or tensile...
619
Abrasion Resistance of Concrete01:23

Abrasion Resistance of Concrete

159
Abrasion resistance is an essential characteristic of concrete that determines its durability and longevity under various wear conditions. Concrete surfaces are vulnerable to different types of abrasion. For instance, surfaces may wear down due to the constant movement of vehicles or be eroded by solids carried in water, as seen in concrete canal linings. Specific tests are conducted to measure the abrasion resistance of concrete.
One such test is the revolving disc test, where three plates...
159
Circular Shaft - Stresses in Linear Range01:13

Circular Shaft - Stresses in Linear Range

314
Consider a scenario where a circular shaft is subject to torque that remains within the boundaries of Hooke's Law, avoiding any permanent deformation. So, the formula for shearing strain is revisited. This formula is multiplied by the modulus of rigidity, and then Hooke's Law for the shearing stress and strain is applied. As a result, the equation for shearing stress in a shaft can be derived.
314

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相关实验视频

Updated: Jul 16, 2025

Experiments on Ultrasonic Lubrication Using a Piezoelectrically-assisted Tribometer and Optical Profilometer
09:21

Experiments on Ultrasonic Lubrication Using a Piezoelectrically-assisted Tribometer and Optical Profilometer

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斜振动表面研磨-实验研究研究.

Grzegorz Bechcinski1, Norbert Kepczak1, Witold Pawlowski1

  • 1Institute of Machine Tools and Production Engineering, Faculty of Mechanical Engineering, Lodz University of Technology, Stefanowskiego 1/15, 90-537 Lodz, Poland.

Materials (Basel, Switzerland)
|September 9, 2023
PubMed
概括

振动表面研磨提高了表面粗性和波纹性. 垂直的振动方向产生了最好的结果,增强了几何结构参数,以获得卓越的表面.

关键词:
里埃分析 里埃分析表面研磨机 表面研磨机表面的粗度 表面的粗度表面波浪性 表面波浪性振动研磨机 振动研磨机

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科学领域:

  • 材料科学与工程 材料科学与工程
  • 制造过程 制造过程 制造过程
  • 表面计量学 表面计量学

背景情况:

  • 传统的表面研磨方法可能在实现最佳表面表面完成方面受到限制.
  • 振动表面研磨具有提高表面质量的潜力.
  • 了解振动参数的影响对于过程优化至关重要.

研究的目的:

  • 为了实验性地研究低频振动表面研磨.
  • 为了评估振动方向对表面粗性和波状性的影响.
  • 为了比较振动辅助研磨与传统研磨技术.

主要方法:

  • 使用带有振动表的生产表面研磨机进行实验研究.
  • 与桌面料相比,纵向,横向和斜向引入振动.
  • 用地面表面形状的富里埃分析来确定和元件.

主要成果:

  • 与传统研磨相比,振动表面研磨显著改善了表面粗性和波状性.
  • 对于几何结构参数来说,最有利的振动方向是垂直于纵向料.
  • 其他振动方向并没有同时改善粗度和波浪度参数.

结论:

  • 振动表面研磨是一种提高表面质量的有效方法.
  • 优化振动方向对于最大限度地改善表面地形学是至关重要的.
  • 垂直振动为表面粗性和波状性提供了卓越的结果.