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September 16, 2025Materials19 citationsOpen Access

Multi-Response Optimization of Drilling Parameters in Direct Hot-Pressed Al/B4C/SiC Hybrid Composites Using Taguchi-Based Entropy–CoCoSo Method

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GBGökhan BaşarFKFunda KahramanODOğuzhan Der

Key Points

  • Optimal drilling was achieved using parameters of 50 m/min speed and 0.08 mm/rev feed.
  • As SiC content increased, hardness improved while transverse rupture strength declined, impacting mechanical properties.
  • The Taguchi method facilitated single-response optimization, while multi-response was tackled with Entropy-weighted CoCoSo analysis.
  • Confidence interval validation confirmed the results, underlining the effectiveness of the chosen methodologies.

Abstract

In this study, aluminium matrix hybrid composites reinforced with boron carbide (B4C) and silicon carbide (SiC) were fabricated using the direct hot-pressing technique under 35 MPa pressure at 600 °C for 5 min. Particle size distribution and scanning electron microscope analysis were conducted for the input powders. The microstructure, mechanical properties, and drillability of the fabricated composites were examined. As the SiC content increased, the density decreased, hardness improved, and transverse rupture strength declined. Drilling experiments were performed based on the Taguchi L18 orthogonal array. The control factors included cutting speed (25 and 50 m/min), feed rate (0.08, 0.16, and 0.24 mm/rev), point angle (100°, 118°, and 136°), and SiC content (0%, 5%, and 10%). Quality characteristics such as thrust force, torque, surface quality indicators, diameter deviation, and circularity deviation were evaluated. The Taguchi method was applied for single-response optimization, while the Entropy-weighted, Taguchi-based CoCoSo method was used for multi-response optimization. Analysis of Variance was conducted to assess factor significance, and regression analysis was used to model relationships between inputs and responses, yielding high R2 values. The optimal drilling performance was achieved at 50 m/min, 0.08 mm/rev, 136°, and 10% SiC, and the confirmation tests verified these results within the 95% confidence interval.

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Cite This Study

Başar et al. (2025) studied this question.

synapsesocial.com/papers/68d453a431b076d99fa59a62https://doi.org/10.3390/ma18184319
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