带有自主稳定系统的移动履带式平台冲击载荷研究

A. Tkachuk, O. Gromovyi, O. Bezvesilna, V. Bondarchuk
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引用次数: 0

摘要

这项工作提出了一个开发的移动机器人平台的3D模型,该平台具有用于侦察操作的自主稳定系统。移动机器人平台被广泛应用于情报领域,因为它们可以帮助从危险和难以到达的地方收集信息,并减少情报人员的生命风险。无人机和带履带的移动机器人平台主要用于侦察。履带式移动机器人的一个重要特征是其机动性。每个轨道都有独立的驱动,移动机器人可以很容易地改变自己的运动方向。对具有自主稳定系统的移动履带式平台进行了冲击载荷(可引起系统变形、损坏或破坏的外部影响)的研究,并描述了研究结果。采用SOLIDWORKS软件环境对移动平台进行建模设计。对于冲击载荷的数值研究,建议采用线弹性各向同性材料和双线性米塞斯塑性材料。给出了开发结构移动平台在1、5、10、25 m/s不同速度和平台材料碳钢、橡胶碰撞时的运动和应力模拟结果。当移动平台以高达25 m/s的速度碰撞时,最大应力不超过1.85 MPa,这使得所选移动平台材料在发生冲击载荷时具有足够的强度余量。使用钢制嵌套可以降低冲击载荷下的最大接触应力值,但会增加移动平台的成本,增加总重量,从而减少安装动力电池的操作时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESEARCH ON IMPACT LOADING OF A MOBILE TRACKED PLATFORM WITH AN AUTONOMOUS STABILIZATION SYSTEM
The work presents a developed 3D model of a mobile robotic platform with an autonomous stabilization system for reconnaissance operations. Mobile robotic platforms have been found to be widely used in intelligence because they can help gather information from dangerous and hard-to-reach places and reduce the risk to the lives of intelligence personnel. Unmanned aerial vehicles and mobile robotic platforms with tracks are mainly used in reconnaissance. An important distinguishing quality of tracked mobile robots is their maneuverability. Having an independent drive for each of the tracks separately, the mobile robot can easily change the direction of its own movement. A study on shock loads (external influences on the system that can cause deformation, damage or destruction) of a mobile tracked platform with an autonomous stabilization system was conducted and the obtained results were described. The SOLIDWORKS software environment was used to model the design of the mobile platform. For numerical studies on impact loads, it is advisable to use linear elastic isotropic materials and bilinear Mises plastic materials. The results of the simulation of the movement of the mobile platform of the developed structure and the stresses in the collision with different speeds of 1, 5, 10, 25 m/s and the platform material carbon steel and rubber are presented. It was established that when a mobile platform collides with speeds of up to 25 m/s, the maximum stresses do not exceed 1.85 MPa, which gives a sufficient margin of strength in the event of impact loads for the selected material of the mobile platform. The use of steel inserts allows you to reduce the value of the maximum contact stresses under impact load, but increases the cost of the mobile platform, increases the total weight and, accordingly, reduces the operating time from the installed power batteries.
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