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Parametric optimization of the turning process for Mg-5Sn-3Zn-1Mn alloys
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DOI:10.1080/10426914.2026.2674567.png)
Abstract
En 中文
The current study is based on optimization of the process parameters of the turning operation using tungsten carbide-tipped cutting tool on the Mg-5Sn-3Zn-1Mn alloy. The input parameters that needed to be optimized were feed, depth of cut and spindle speed, taking into account the output parameters like Material Removal Rate (MRR) and Surface Roughness (SR). The experiments were formulated using Response Surface Methodology with the Box – Behnken Design. Quantitative techniques have been used to optimize machining operations by taking into account a number of goals, including maximizing material removal rates and decreasing surface roughness. Input parameters had been optimized and a mathematical model had been created. The depth of cut had the greatest influence on MRR and surface roughness, and the optimum conditions of 40 mm/min speed, 0.3 mm/rev feed, and 0.57 mm depth of cut produced the highest MRR and lowest surface roughness.
Keywords:
Turning
Mg-5Sn-3Zn-1Mn alloy
Box-Behnken design
Response Surface Methodology
surface roughness and material removal rate
Journal
M
IF:
4.7
Papers:
4.6K
Citations:
9.3K
