1. Jelena Erić Obućina, Akademija strukovnih studija Šumadija (ASSŠ) – Odsek Trstenik, 37240 Trstenik, Serbia
2. Marina Karić, Akademija strukovnih studija Šumadija Odsek Trstenik, Serbia
Hydraulic components can be used in a large number of examples, such as: automotive industry, mechanical engineering, transportation devices and systems, construction and mining machinery, robots, etc. New designs of hydraulic components are increasingly made of modern and high-quality materials, with the following characteristics: higher operating accuracy, increased reliability, higher energy and higher efficiency. work regulations and characteristics, higher protocols and working pressure, higher power, longer service life and a wider area of application. For dynamic simulation of the behavior of hydraulic components and systems under different operating conditions and influencing signals, software systems and tools for that name are used. Of course, simulation allows engineers to observe the response system, identify potential problems such as oscillation or slow response times and analyze the impact of design changes without physical manufacturing. The most commonly used software system for dynamic simulation of the behavior of hydraulic components and systems is the MATLAB-Simulink software. It is intensively used in the design and analysis of hydraulic components and systems due to its capabilities in modeling, simulation and design of control systems. MATLAB-Simulink allows the creation of detailed models of hydraulic systems, including all hydraulic components, such as: servo valve, hydraulic cylinder and other related components, which is the goal of this work. This is achieved by representing each component as a block with defined mathematical relationships, encompassing the nonlinear dynamics inherent in hydraulic components and systems.
Ključne reči :
Tematska oblast:
SIMPOZIJUM A - Nauka materije, kondenzovane materije i fizika čvrstog stanja
Datum:
25.08.2025.
Contemporary Materials 2025 - Savremeni Materijali