优化背包腰带设计:对步态力学的一种人体工程学视角
Abbas Farjad Pezeshk1, Farideh Aghahasani1, Mohammad Yousefi1
1Faculty of Physical Education and Sport Sciences, Department of Sport Sciences, University of Birjand, Birjand, Iran.
Ergonomics
|September 29, 2025
概括
背包腰带设计显著影响行走机制. 弹横框设计最好保持自然的骨盆和干部协调,与固定或可移动的皮带不同.
科学领域:
- 生物力学 生物力学
- 人类运动科学科学 人类运动科学
- 人体工程学就是人体工程学.
背景情况:
- 背包腰带的设计是为了重新分配负载,但它们对干移动性的影响尚未完全理解.
- 骨盆和骨干横平面旋转的潜在限制可能会影响步态力学.
研究的目的:
- 为了研究不同背包腰带设计如何影响步态动力学和肌肉活动.
- 为了比较可移动,弹横框和固定腰带设计的效果.
主要方法:
- 16名参与者带着13公斤的负载在三种腰带条件下行走:可移动,弹横框和固定.
- 使用惯性测量单位 (IMU) 传感器收集动力学数据.
- 用电肌图 (EMG) 测量肌肉活动.
主要成果:
- 弹横架和可移动的腰带都保持了与正常步行相比的中性骨盆运动能力.
- 弹横框设计独特地促进了类似于自然行走的骨盆-骨干协调.
- 与固定带相比,交叉框架设计减少了起器脊柱肌肉的激活.
结论:
- 腰带的设计在行走时调节干部和骨盆运动方面发挥着至关重要的作用.
- 弹横框设计在保持自然步态协调和减少肌肉紧张方面显得优越.
相关概念视频
Frames: Problem Solving II
Consider a hydraulic hoist supporting a load of 1 kN. Assuming a simplified schematic representation of this frame structure, the force acting on BD and BF members can be determined.
Machines: Problem Solving II
Machines are complex structures consisting of movable, pin-connected multi-force members that work together to transmit forces. Consider a lifting tong carrying a 100 kg load. It comprises movable sections DAF and CBG linked together with member AB.
Cable Subjected to a Distributed Load
The analysis of suspension bridges is a complex and critical process that involves multiple factors, including the shape and tension of the main cables. The main cables of suspension bridges are subjected to distributed loads, which result in changes in tensile forces and deformation of the cable. These loads must be carefully considered to ensure that the bridge is safe and capable of supporting the weight of different loads.
Cable: Problem Solving
When dealing with a cable that is fixed to two supports and subjected to uniform loading, it is crucial to determine the maximum tension in the cable. This process can be broken down into several key steps, as outlined below:
Stress: General Loading Conditions
To grasp the intricacy of real-world conditions where multiple loads are applied simultaneously to a structure, one might visualize a section passing through a specific point within a body, aligned parallel to the xy plane. This section is subjected to various forces, including original loads, normal forces, and shearing forces.
The shearing force, possessing potential directionality within the plane of the section, is simplified into two component forces running parallel to the x and y axes.
The shearing force, possessing potential directionality within the plane of the section, is simplified into two component forces running parallel to the x and y axes.
Impact Loading
Impact loading occurs when a moving object collides with a stationary structure, such as a rod with a uniform cross-sectional area fixed at one end. Under these conditions, the rod absorbs the kinetic energy from the striking object, leading to deformation and subsequent stress development. As the rod returns to its original position and reaches maximum stress, the absorbed energy, initially manifested as kinetic energy, transforms entirely into strain energy.
In cases of elastic deformation,...
In cases of elastic deformation,...


