ТЕХНОЛОГІЯ СТВОРЕННЯ ЕЛЕМЕНТІВ БЕЗПІЛОТНИХ ЛІТАЛЬНИХ АПАРАТІВ ЗА АДИТИВНИМИ ТЕХНОЛОГІЯМИ

Вячеслав Бачинський, Олександр Шкурпіт, Сергій Чванов
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引用次数: 1

Abstract

The article describes the technology of building elements of unmanned aerial vehicles (UAV) based on the use of additive technologies (AT). AT opened a fundamentally new direction in the concept of UAV manufacturing, which makes it possible to obtain a final product of a given shape and size based on a digital prototype. The modern equipment used in JSC is constantly being improved and allows for high printing speeds to increase the quality of the product at relatively low costs. The use of AT makes it possible to significantly reduce the weight of UAV elements due to the reduction of material costs. The article examines the technological process of 3D printing of UAV elements and the technological scheme of materials selection for the manufacture of UAV elements. In the course of the conducted research, a number of problems related to the need to improve the process of 3D printing of complex elements of UAVs, in order to effectively use the latest additive 3D printing technologies in modern production in combat conditions, were identified. The results of test printing, plastic tests and calculations made it possible to develop a general methodology for the production of UAV elements using additive technologies. The introduction of additive technologies for the production of UAV elements in the field will contribute to solving a wide range of combat tasks. It has been established that the use of additive technologies will entail the adjustment of UAV design principles, the development of printing technologies, the use of new construction strategies, the emergence of new technologies related to 3D printing. The analysis of quality control mechanisms for the development of UAV elements shows that the technological scheme for the selection of composite material is an important element in the 3D printing of modern UAVs and their components. It was determined that with the improvement of technological equipment and the development of methods of material selection for the manufacture of UAV elements, the direction of creating new UAVs with the help of AT will steadily expand. Keywords: additive technologies, UAV, 3D printing, technology, structure.
介绍了基于增材制造技术(AT)的无人机构件制造技术。AT在无人机制造概念上开辟了一个全新的方向,这使得基于数字原型获得给定形状和尺寸的最终产品成为可能。JSC使用的现代设备不断改进,并允许高印刷速度,以相对较低的成本提高产品质量。由于材料成本的降低,AT的使用使得显著减少UAV元件的重量成为可能。本文论述了无人机部件3D打印的工艺流程和无人机部件制造材料选择的技术方案。在进行的研究过程中,为了在战斗条件下有效地将最新的增材3D打印技术应用于现代生产,确定了一些与改进无人机复杂部件3D打印工艺相关的问题。测试打印、塑料测试和计算的结果使得开发一种使用增材技术生产无人机元件的通用方法成为可能。在该领域引入用于生产无人机元件的增材技术将有助于解决广泛的作战任务。已经确定,使用增材技术将需要无人机设计原则的调整,打印技术的发展,使用新的建造策略,以及与3D打印相关的新技术的出现。对无人机部件研制质量控制机制的分析表明,复合材料的选择技术方案是现代无人机及其部件3D打印的重要组成部分。确定了随着技术装备的改进和无人机元件制造材料选择方法的发展,利用自动驾驶技术制造新型无人机的方向将稳步扩大。关键词:增材技术,无人机,3D打印,技术,结构
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