3 D MODELING OF FOUR-AXLE MACHINE MANEUVERING

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI Pub Date : 2023-01-01 DOI:10.33405/2409-7470/2023/1/41/280889
O. Chernikov, V. Garmash
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Abstract

One of the ways to increase the maneuverability of the wheeled vehicles of the National Guard of Ukraine is to use a four-axle wheeled chassis with two turntables, which will allow the machine to turn with the smallest radius, move crab, sideways and turn around its own vertical axis. The creation of such a chassis is associated with a large amount of various experiments and tests of the finished sample. The development of computer technology and technologies has led to the creation of software applications for computer (simulation) modeling, which allow research and study of the properties of technical objects and systems under different conditions. The article developed a digital model of the chassis of a four-axle machine with two turntables and identified its features. For modeling, a powerful package of solid modeling Autodesk Inventor was chosen, which provides a comprehensive flexible set of tools for 3D design, visualization, instrumentation, analysis and calculations. When building a general 3D model of the chassis, the main features of the layout of parts and assemblies of this wheeled vehicle were taken into account. The forced rotation of the wheels and the rotation of the platforms were modeled by entering the value of a single parameter or setting using a graph. Depending on the needs of the experiment, graphs were set for displacements, speed or acceleration. In the course of a visual experiment, a simulation of the maneuvering of a four-axle vehicle was carried out for three options: turning the chassis to move in the opposite direction; changing the direction of movement through the turn of the chassis is a difficult maneuver; turning the chassis for sideways movement. The analysis of virtual studies showed that the control of the front, rear or both turntables is a promising way to increase the maneuverability of wheeled vehicles. In addition, the created computer prototype allows you to determine the main characteristics of the future product, carry out analysis, upgrade and necessary modification, set the desired trajectory of movement, including when passing through obstacles.
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四轴机械操纵的三维建模
提高乌克兰国民警卫队轮式车辆机动性的方法之一是使用带有两个转盘的四轴轮式底盘,这将允许机器以最小的半径旋转,移动螃蟹,侧向移动和围绕自己的垂直轴旋转。这种底盘的创建与成品样品的大量各种实验和测试有关。计算机技术和技术的发展导致了计算机(仿真)建模的软件应用程序的创建,这使得研究和研究技术对象和系统在不同条件下的属性成为可能。本文建立了带有两个转盘的四轴机床底盘的数字模型,并对其特征进行了识别。对于建模,选择了强大的实体建模软件包Autodesk Inventor,它为3D设计,可视化,仪器,分析和计算提供了一套全面灵活的工具。在建立轮式车辆底盘总体三维模型时,考虑了轮式车辆零部件布局的主要特点。通过输入单个参数的值或使用图形进行设置,对车轮的强制旋转和平台的旋转进行建模。根据实验需要,可以设置位移、速度或加速度的图形。在视觉实验过程中,对四轴车辆进行了三种机动仿真:将底盘转向反方向运动;通过底盘的转动来改变运动方向是一个困难的操作;把底盘为侧向运动。仿真分析表明,对轮式车辆的前后转台或双转台进行控制是提高轮式车辆机动性能的有效途径。此外,创建的计算机原型可以让您确定未来产品的主要特性,进行分析,升级和必要的修改,设置所需的运动轨迹,包括通过障碍物时。
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DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI MULTIDISCIPLINARY SCIENCES-
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