半分析性动态建模和撞击机制分析的硬涂层圆柱形外随意圆孔
1School of Mechanical Engineering and Automation, University of Science and Technology Liaoning, Anshan, 114051, China.
Scientific reports
|March 7, 2025
概括
这项研究引入了一种分析穿孔圆柱体外振动的新方法. 这些发现揭示了穿孔模式显著改变自然频率的特定条件,有助于减少振动的设计.
科学领域:
- 机械工程 机械工程
- 振动分析 振动分析
- 复合材料 复合材料 复合材料
背景情况:
- 圆柱形外是航空航天领域的关键组成部分.
- 了解它们的自由振动对于结构完整性至关重要.
- 穿孔可以显著改变外动态.
研究的目的:
- 开发一种新的半分析方法来建模穿孔圆柱体外的自由振动.
- 为了有效地整合轴向和圆周穿孔参数.
- 分析穿孔配置对振动特性的影响.
主要方法:
- 开发了一种创新的轴域分解方法.
- 运用了Love的第一阶剪切变形理论.
- 应用雷利-里茨方法进行能源计算.
主要成果:
- 已确立的通用半分析公式用于穿孔复合材料外.
- 确定了穿孔数和频率变化的波数之间的关键关系.
- 在特定的穿孔比下观察到自然频率的急剧变化.
结论:
- 拟议的方法准确地模拟了具有任意穿孔的硬涂层圆柱体外的自由振动.
- 这些发现为航空航天应用中的减振策略提供了理论支持.
- 了解穿孔的影响对于设计强大的发动机组件至关重要.
更多相关视频
06:34Finite Element Modeling for the Simulation of the Quasi-Static Compression of Corrugated Tapered Tubes
Published on: January 6, 2023
1.6K
10:52Conducting Elevated Temperature Normal and Combined Pressure-Shear Plate Impact Experiments Via a Breech-end Sabot Heater System
Published on: August 7, 2018
8.5K
相关概念视频
Thin-Walled Hollow Shafts
159
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...
159
Plastic Deformation in Circular Shafts
176
When materials are subjected to forces that surpass their yield strength, they undergo a process known as plastic deformation. This results in a permanent alteration or strain in their structure. This concept can be specifically applied to circular shafts, where the deformation leads to a change in its shape. The precise evaluation of this plastic deformation requires understanding the stress distribution within the circular shaft, which is achieved by calculating the maximum shearing stress in...
176
Stress Concentrations in Circular Shafts
158
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...
158
Deformation in a Circular Shaft
258
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...
258
Statically Indeterminate Problem Solving
354
Statically indeterminate problems are those where statics alone can not determine the internal forces or reactions. Consider a structure comprising two cylindrical rods made of steel and brass. These rods are joined at point B and restrained by rigid supports at points A and C. Now, the reactions at points A and C and the deflection at point B are to be determined. This rod structure is classified as statically indeterminate as the structure has more supports than are necessary for maintaining...
354
Circular Shafts - Elastoplastic Materials
91
The study of solid circular shafts under stress shows that within the elastic limit, stress increases directly to the distance from the shaft's center. This relationship holds until the shaft reaches a critical point of stress, beyond which it begins to yield, marking the transition from elastic to plastic deformation. At this crucial juncture, the maximum torque the shaft can endure without permanent deformation is determined, signifying the limit of its elastic behavior.
As torque on the...
As torque on the...
91
