| Naslov: | Integrated modeling and multi-criteria analysis of the turning process of 42CrMo4 steel using RSM, SVR with OFAT, and MCDM techniques |
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| Avtorji: | ID Marinkovic, Dejan (Avtor) ID Muhamedagic, Kenan (Avtor) ID Klančnik, Simon (Avtor) ID Živković, Aleksandar (Avtor) ID Begić-Hajdarević, Đerzija (Avtor) ID Pasic, Mirza (Avtor) |
| Datoteke: | metals-16-00131-v2_(1).pdf (3,85 MB) MD5: F5564FF849866D2D043F64DF459A7F2E
https://www.mdpi.com/2075-4701/16/2/131
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| Jezik: | Angleški jezik |
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| Vrsta gradiva: | Članek v reviji |
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| Tipologija: | 1.01 - Izvirni znanstveni članek |
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| Organizacija: | FS - Fakulteta za strojništvo
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| Opis: | This paper analyzes different approaches for the mathematical modeling and optimization of process parameters in the hard turning process of 42CrMo4 steel using a hybrid approach combining response surface methodology (RSM), multi-criteria decision making (MCDM), and machine learning through, support vector regression (SVR) with one-factor-at-a-time (OFAT) sensitivity analysis. Controlled process parameters such as cutting speed, depth of cut, feed, and insert radius are applied to conduct the experiments based on a full factorial experimental design. RSM was used to develop models that describe the effect of controlled parameters on surface roughness and cutting forces. Special emphasis was placed on the analysis of standardized residuals to evaluate the predictive capabilities of the RSM-developed model on an unseen data set. For all four outputs considered, analysis of the standardized residuals shows that over 97% of the points lie within ±3 standard deviations. A multi-criteria optimization technique was applied to establish an optimal combination of input parameters. The SVR model had high performance for all outputs, with coefficient of determination values between 89.91% and 99.39%, except for surface roughness on the test set, with a value of 9.92%. While the SVR model achieved high predictive accuracy for cutting forces, its limited generalization capability for surface roughness highlights the higher complexity and stochastic nature of surface formation mechanisms in the turning process. OFAT analysis showed that feed rate and depth of cut have been shown to be the most important input variables for all analyzed outputs. |
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| Ključne besede: | turning process, 42CrMo4 steel, response surface methodology, support vector regression, OFAT, multi-criteria decision making, surface roughness, cutting forces |
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| Status publikacije: | Objavljeno |
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| Verzija publikacije: | Objavljena publikacija |
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| Poslano v recenzijo: | 26.12.2026 |
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| Datum sprejetja članka: | 21.01.2026 |
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| Datum objave: | 23.01.2026 |
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| Založnik: | MDPI |
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| Leto izida: | 2026 |
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| Št. strani: | 17 str. |
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| Številčenje: | Vol. 16, iss. 2, [article no.] 131 |
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| PID: | 20.500.12556/DKUM-97019  |
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| UDK: | 621.7+621.9:514.742 |
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| COBISS.SI-ID: | 267655171  |
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| DOI: | 10.3390/met16020131  |
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| ISSN pri članku: | 2075-4701 |
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| Datum objave v DKUM: | 11.02.2026 |
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| Število ogledov: | 170 |
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| Število prenosov: | 10 |
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| Metapodatki: |  |
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| Področja: | Ostalo
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