vibration

Complex approach for improvement stability of electronic devices to mechanical destabilizing factors

The paper considers complex ways to improve the stability of electronic devices (ED) to shocks and vibrations, which are the main destabilizing factors among mechanical effects. In mechanical shock, the inertial overload may reach up to 5..15 units. In many situations, the upper limit of the energy spectrum of acceleration reaches 50..150 m/s2. Such large inertial overload very quickly (in tens or hundreds of beats) causes the destruction of regular ED.

Process Optimization of Vibroresonance Sewage Disinfection

Для процесів кавітаційного очищення стічних вод від органічних домішок розроблено математичні моделі, що адекватно поєднують їх технологічні параметри із показниками якості обробки. У якості стічних вод розглянуто води пивоваріння, молокопереробної промисловості та воду громадського використання.

The hydro-automatic damping system against dynamic vibrations

A review and analysis of the developed hydraulic system for quenching dynamic oscillations has been carried out. A mathematical model for determining the operation delay time of the hydraulic system of the dynamic quenching of oscillations has been created. A period’s calculation of cleavage of the soil and the operation delay time of quencher dynamic oscillations from which it is possible in theory to establish the ability of the hydraulic system of dynamic quenching of oscillations to operate in due time is performed.