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Article

Multi-Objective Optimization of Abrasive Cutting Process Conditions to Increase Economic Efficiency

by
Irina Aleksandrova
1,2
1
Department of Mechanical Engineering Equipment and Technologies, Technical University of Gabrovo, 5300 Gabrovo, Bulgaria
2
Center of Competence “Smart Mechatronic, Eco-and Energy-Saving Systems and Technologies”, 5300 Gabrovo, Bulgaria
Technologies 2025, 13(8), 337; https://doi.org/10.3390/technologies13080337
Submission received: 19 June 2025 / Revised: 18 July 2025 / Accepted: 31 July 2025 / Published: 3 August 2025
(This article belongs to the Section Innovations in Materials Science and Materials Processing)

Abstract

Existing studies on the abrasive cutting process have primarily focused on the influence of cutting conditions on key parameters such as temperature, cut-off wheel wear, and machined surface quality. However, the choice of working conditions is often made based on the experience of qualified personnel or using data from reference sources. The literature also provides optimal values for the cutting mode elements, but these are only valid for specific methods and cutting conditions. This article proposes a new multi-objective optimization approach for determining the conditions for the implementation of the abrasive cutting process that leads to Pareto-optimal solutions for improving economic efficiency, evaluated by production rate and manufacturing net cost parameters. To demonstrate this approach, the elastic abrasive cutting process of structural steels C45 and 42Cr4 has been selected. Theoretical–experimental models for production rate and manufacturing net cost have been developed, reflecting the complex influence of the conditions of the elastic abrasive cutting process (compression force of the cut-off wheel on the workpiece and rotational frequency of the workpiece). Multi-objective compromise optimization based on a genetic algorithm has been conducted by applying two methods—the determination of a compromise optimal area for the conditions of the elastic abrasive cutting process and the generalized utility function method. Optimal conditions for the implementation of the elastic abrasive cutting process have been determined, ensuring the best combination of high production rate and low manufacturing net cost.
Keywords: elastic abrasive cutting; multi-objective optimization; economic efficiency; generalized utility function; Pareto-optimal solutions; C45 and 42Cr4 steels elastic abrasive cutting; multi-objective optimization; economic efficiency; generalized utility function; Pareto-optimal solutions; C45 and 42Cr4 steels

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MDPI and ACS Style

Aleksandrova, I. Multi-Objective Optimization of Abrasive Cutting Process Conditions to Increase Economic Efficiency. Technologies 2025, 13, 337. https://doi.org/10.3390/technologies13080337

AMA Style

Aleksandrova I. Multi-Objective Optimization of Abrasive Cutting Process Conditions to Increase Economic Efficiency. Technologies. 2025; 13(8):337. https://doi.org/10.3390/technologies13080337

Chicago/Turabian Style

Aleksandrova, Irina. 2025. "Multi-Objective Optimization of Abrasive Cutting Process Conditions to Increase Economic Efficiency" Technologies 13, no. 8: 337. https://doi.org/10.3390/technologies13080337

APA Style

Aleksandrova, I. (2025). Multi-Objective Optimization of Abrasive Cutting Process Conditions to Increase Economic Efficiency. Technologies, 13(8), 337. https://doi.org/10.3390/technologies13080337

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