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Self-synchronized Controlled Vibration Drive with Automated Oscillation Parameters Monitoring System for High-Tech Equipment

机译:具有自动化振荡参数监控系统的自同步控制振动驱动,用于高科技设备

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This article raises one of the important problems of the high-tech industry - aviation and rocket and space industry. The development of modern aircraft is accompanied by stringent requirements for resistance to the dynamic loads acting on them, as well as for the utilization of the fragile components included in the design of the aircraft. Complexity, in the process of utilization of fragile components, arises when certain requirements are meted out to geometrical shapes and sizes. Complexity, in the process of utilization of fragile components, arises when certain requirements are meted out to geometrical shapes and sizes. The most striking examples of fragile components being disposed of are solid propellant charges. In addition to the problem of recycling fragile components, aircraft are subjected to vibrational loads throughout the life cycle. The moment of take-off of the aircraft and the change in flight regimes, as well as the separation of stages are accompanied by intense vibration in a wide range of frequencies associated with a high level of overload. The main purpose of this article is to create a vibration drive that can be used in various technological operations, ranging from vibration testing of aircraft structures to the utilization of fragile LA components. In the course of research, a fundamentally new method for exciting synchronous oscillations in vibration drives was developed. To control and maintain the specified vibration parameters, an automated control system has been developed that allows one to perform vibration testing of the structure under various vibration modes that can be laid in the program part of the controller.
机译:本文提出了高科技行业 - 航空和火箭和空间产业的重要问题之一。现代飞机的开发伴随着严格的抵抗对其上的动态载荷的要求,以及利用包括在飞机设计中的脆弱部件。在利用脆弱组件的过程中,当达到几何形状和尺寸时,在利用脆弱组件的过程中出现。在利用脆弱组件的过程中,当达到几何形状和尺寸时,在利用脆弱组件的过程中出现。脆弱组件的最引人注目的例子是固体推进剂电荷。除了回收脆性组分的问题之外,飞机在整个生命周期中受到振动载荷。飞机的瞬间和飞行制度的变化以及阶段的分离伴随着与高水平过载相关的宽范围频率的强烈振动。本文的主要目的是创建一种可用于各种技术操作的振动驱动器,从飞机结构的振动测试到利用脆弱的LA部件。在研究过程中,开发了一种从根本上开发了振动驱动器中同步振荡的新方法。为了控制和维护指定的振动参数,已经开发了一种自动控制系统,其允许人们在控制器的程序部分中铺设的各种振动模式下的结构的振动测试。

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