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Modeling and Dynamic Analysis of the Structure Parameters of Radio-Electronic Modules Based on the Method of Autonomous Blocks

机译:基于自治块的无线电电子模块结构参数建模与动力学分析

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In the article the technique for application of autonomous blocks for the research of dynamic processes in heterogeneous structures of radio-electronic modules under applied shock is considered. The modeling of the state dynamics of radio-electronic modules is carried out on the basis of their presentation in the form of some heterogeneous structure. As a result, a mathematical model for research of the dynamics of a heterostructure of the radio-electronic module is obtained, and an analysis of the spectral density of shock acceleration and the spectrum of natural frequencies for various pouring materials is conducted. In the process of research, it was proved that an increase in stiffness of the pouring material of the electronic module leads to a decrease in the number of natural frequencies of longitudinal vibrations in a given frequency range of external disturbances. The derivation of natural frequencies from the operating frequency range of the radio-electronic module will increase its vibration and shock resistance and, consequently, the reliability of the entire product.
机译:在本文中,考虑了将自主模块应用于在施加冲击的情况下研究无线电电子模块异质结构中的动态过程的技术。无线电电子模块状态动力学的建模是基于它们以某种异构结构的形式表示的。结果,获得了用于研究无线电电子模块的异质结构的动力学的数学模型,并且对各种浇注材料的冲击加速度的频谱密度和固有频率的频谱进行了分析。在研究过程中,已证明,在给定的外部干扰频率范围内,电子模块浇注材料的刚度增加会导致纵向振动的固有频率数量减少。从无线电电子模块的工作频率范围推导固有频率将增加其抗振性和抗冲击性,从而提高整个产品的可靠性。

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