Efficiency Enhancement and Energy Optimization in Alloy Steel Drilling: An Experimental and Statistical Analysis
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-6774-2_25
Reference22 articles.
1. Kumar, R., Bilga, P.S., Singh, S.: An investigation of energy efficiency in finish turning of en 353 Alloy Steel. In: 28th CIRP Conference on Life Cycle Engineering, LCE 2021. Elsevier B.V. (2021)
2. Chandel, R.S., Kumar, R., Kapoor, J.: Sustainability aspects of machining operations: a summary of concepts. Mater. Today Proc. 50, 716–727 (2022)
3. Bi, Z.M., Wang, L.: Optimization of machining processes from the perspective of energy consumption: a case study. J. Manuf. Syst. 31(4), 420–428 (2012)
4. Kant, G., Sangwan, K.S.: Prediction and optimization of machining parameters for minimizing power consumption and surface roughness in machining. J. Clean. Prod. 83, 151–164 (2014)
5. Chen, X., et al.: Real-time prediction and optimization of drilling performance based on a new mechanical specific energy model. Arab. J. Sci. Eng. 39(11), 8221–8231 (2014)
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