Nowadays, the design and the management of industrial machinery and plants must keep into account the energy sustainability issue. As a matter of fact, the Sustainable Development Goal 9 of the United Nations (SDG9) “Industry, innovation and infrastructure” refers to efficiency and optimization of the energy usage as one of the key-points for a sustainable production system. Hence, the engineering design process must consider energy sustainability. In the context of industrial machinery, the actuators are the components that mostly use energy to perform the function that the machine is designed for; they are unavoidably characterized by energy wasting, even more if they are hydraulic actuators. The paper precisely deals with a management and control method conceived by the authors aimed at the reduction of the energy consumption of hydraulic actuators. The method is based on an estimate of the supply pressure required by the hydraulic system and on an innovative unconventional usage of a servo-valve as the component devoted to the control of such pressure. The paper demonstrates, through the simulation of a real work-cycle, that this innovative usage of a servo-valve for supply pressure regulation purposes, is a successful solution for the CO2 footprint reduction of hydraulic servo-axes.

(2025). New Management Strategy for a Significant Reduction of the Impact on CO2 Footprint of Hydraulic Actuators . Retrieved from https://hdl.handle.net/10446/304088

New Management Strategy for a Significant Reduction of the Impact on CO2 Footprint of Hydraulic Actuators

Righettini, Paolo;Strada, Roberto;Cortinovis, Filippo;Santinelli, Jasmine
2025-01-01

Abstract

Nowadays, the design and the management of industrial machinery and plants must keep into account the energy sustainability issue. As a matter of fact, the Sustainable Development Goal 9 of the United Nations (SDG9) “Industry, innovation and infrastructure” refers to efficiency and optimization of the energy usage as one of the key-points for a sustainable production system. Hence, the engineering design process must consider energy sustainability. In the context of industrial machinery, the actuators are the components that mostly use energy to perform the function that the machine is designed for; they are unavoidably characterized by energy wasting, even more if they are hydraulic actuators. The paper precisely deals with a management and control method conceived by the authors aimed at the reduction of the energy consumption of hydraulic actuators. The method is based on an estimate of the supply pressure required by the hydraulic system and on an innovative unconventional usage of a servo-valve as the component devoted to the control of such pressure. The paper demonstrates, through the simulation of a real work-cycle, that this innovative usage of a servo-valve for supply pressure regulation purposes, is a successful solution for the CO2 footprint reduction of hydraulic servo-axes.
2025
Inglese
Proceedings of I4SDG Workshop 2025 - IFToMM for Sustainable Development Goals
Carbone, Giuseppe; Quaglia, Giuseppe;
9783031911507
179
505
512
cartaceo
online
Switzerland
Cham
Springer
I4SDG 2025: 3rd International Workshop IFToMM for Sustainable Development Goals, Villa San Giovanni, Italy, 9-12 June
3rd
Villa San Giovanni, Italy
9-12 June 2025
internazionale
contributo
Settore IIND-02/A - Meccanica applicata alle macchine
carbon footprint reduction; energy consumption; hydraulic actuators; hydraulic servo-valves; SDG9
eISBN 978-3-031-91151-4
info:eu-repo/semantics/conferenceObject
4
Righettini, Paolo; Strada, Roberto; Cortinovis, Filippo; Santinelli, Jasmine
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
reserved
Non definito
273
(2025). New Management Strategy for a Significant Reduction of the Impact on CO2 Footprint of Hydraulic Actuators . Retrieved from https://hdl.handle.net/10446/304088
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