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Original Articles

Determination of optimal subdivision of depth of cut in multipass turning with constraints

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Pages 2555-2565 | Published online: 23 Apr 2007

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Hira Zaheer & Millie Pant. (2017) Solution to industrial optimization problems through differential evolution variants. Materials and Manufacturing Processes 32:10, pages 1131-1143.
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Qing Wu, Liang Gao, Xinyu Li, Chunjiang Zhang & Yiming Rong. (2013) Applying an electromagnetism-like mechanism algorithm on parameter optimisation of a multi-pass milling process. International Journal of Production Research 51:6, pages 1777-1788.
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Yi Zheng Lee & S.G. Ponnambalam. (2012) Optimisation of multipass turning operations using PSO and GA-AIS algorithms. International Journal of Production Research 50:22, pages 6499-6518.
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Rohit R. Hippalgaonkar & Yung C. Shin. (2011) Robust optimisation of machining conditions with tool life and surface roughness uncertainties. International Journal of Production Research 49:13, pages 3963-3978.
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A. Jeang, Huan-Chung Li & Yi-Chi Wang. (2010) A computational simulation approach for optimising process parameters in cutting operations. International Journal of Computer Integrated Manufacturing 23:4, pages 325-340.
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M. Solimanpur & F. Ranjdoostfard. (2009) Optimisation of cutting parameters using a multi-objective genetic algorithm. International Journal of Production Research 47:21, pages 6019-6036.
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A. M. A. Al-Ahmari. (2008) Prediction and optimisation models for turning operations. International Journal of Production Research 46:15, pages 4061-4081.
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M. A. Al-Fawzan & A. M. A. Al-Ahmari. (2004) Simultaneous determination of the optimal process mean and cutting speed for a manufacturing process. Production Planning & Control 15:3, pages 336-341.
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A. M. A Al-Ahmari. (2002) Computer aided optimization of scheduling and machining parameters in job shop manufacturing systems. Production Planning & Control 13:4, pages 401-406.
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Adil Baykasoglu & Türkay Dereli. (2002) Novel algorithmic approach to generate the 'number of passes' and 'depth of cuts' for the optimization routines of multipass machining. International Journal of Production Research 40:7, pages 1549-1565.
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G. C. Onwubolu & T. Kumalo. (2001) Optimization of multipass turning operations with genetic algorithms. International Journal of Production Research 39:16, pages 3727-3745.
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A. M. A. Al-Ahmari. (2001) Mathematical model for determining machining parameters in multipass turning operations with constraints. International Journal of Production Research 39:15, pages 3367-3376.
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Mu‐Chen Chen & Hsien‐Yu Tseng. (1998) Machining parameters selection for stock removal turning in process plans using a float encoding genetic algorithm. Journal of the Chinese Institute of Engineers 21:4, pages 493-506.
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Attila Retfalvi. (2022) Determining cutting depth that gives minimal machining time in rough turning. Determining cutting depth that gives minimal machining time in rough turning.
Tiyamike Banda, Ali Akhavan Farid, Chuan Li, Veronica Lestari Jauw & Chin Seong Lim. (2022) Application of machine vision for tool condition monitoring and tool performance optimization–a review. The International Journal of Advanced Manufacturing Technology 121:11-12, pages 7057-7086.
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Sudeep Kumar Singh & Ardhendu M. Mohanty. (2022) New Movement Strategy of Cuckoo Search for achieving higher profit rate in milling operation. Results in Control and Optimization 7, pages 100105.
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A. Maria Jackson, N. Baskar, M. Ganesan & M. Varatharajulu. (2022) Evaluation of stir cast AlSiC metal matrix composite by energy-dispersive spectroscopy and study of influences of milling parameters by particle swarm optimization. Journal of the Brazilian Society of Mechanical Sciences and Engineering 44:4.
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Ishaan R. Kale & Anand J. Kulkarni. (2021) Cohort intelligence with self-adaptive penalty function approach hybridized with colliding bodies optimization algorithm for discrete and mixed variable constrained problems. Complex & Intelligent Systems 7:3, pages 1565-1596.
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K. Nijandhan, M. Raghunath, B. Monish Kanna, P. Nithish, G. Vishnu Prakash & E. Logesh. 2021. Advances in Materials Research. Advances in Materials Research 107 114 .
Ali Riza Yildiz. (2019) A novel hybrid whale–Nelder–Mead algorithm for optimization of design and manufacturing problems. The International Journal of Advanced Manufacturing Technology 105:12, pages 5091-5104.
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Luoke Hu, Renzhong Tang, Wei Cai, Yixiong Feng & Xiang Ma. (2019) Optimisation of cutting parameters for improving energy efficiency in machining process. Robotics and Computer-Integrated Manufacturing 59, pages 406-416.
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Ali Rıza Yıldız, Betul Sultan Yıldız, Sadiq M. Sait & Xinyu Li. (2019) The Harris hawks, grasshopper and multi-verse optimization algorithms for the selection of optimal machining parameters in manufacturing operations. Materials Testing 61:8, pages 725-733.
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Mehmet Alper Sofuoğlu, Fatih Hayati Çakır & Selim Gürgen. (2018) An efficient approach by adjusting bounds for heuristic optimization algorithms. Soft Computing 23:13, pages 5199-5212.
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Goran R Miodragović, Violeta Đorđević, Radovan R Bulatović & Aleksandra Petrović. (2018) Optimization of multi-pass turning and multi-pass face milling using subpopulation firefly algorithm. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 233:5, pages 1520-1540.
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Miroslav Radovanović. (2018) Multi-objective optimization of multi-pass turning AISI 1064 steel. The International Journal of Advanced Manufacturing Technology 100:1-4, pages 87-100.
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Nicolae-Valentin Ivan, Cristina Gavrus & Gheorghe Oancea. (2018) A new method for establishing the depths of cut for cast iron parts turning. Journal of the Brazilian Society of Mechanical Sciences and Engineering 40:10.
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Kaibo Lu, Zhandong Zhang, Minqing Jing, Yiliang Wang, Heng Liu & Tonghai Wu. (2015) Dynamic optimization of multipass turning of a flexible workpiece considering the effect of cutting sequence. The International Journal of Advanced Manufacturing Technology 85:1-4, pages 325-335.
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Nicolae Cofaru & Adrian Florea. (2015) Different Methods of Artificial Intelligence Used for Optimization the Turning Process. Applied Mechanics and Materials 808, pages 60-65.
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Kaibo Lu, Minqing Jing, Xiaoli Zhang, Guihua Dong & Heng Liu. (2013) An effective optimization algorithm for multipass turning of flexible workpieces. Journal of Intelligent Manufacturing 26:4, pages 831-840.
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Pinkey Chauhan, Millie Pant & Kusum Deep. (2014) Parameter optimization of multi-pass turning using chaotic PSO. International Journal of Machine Learning and Cybernetics 6:2, pages 319-337.
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Amit Kumar Gupta, Sharath Chandra Guntuku, Raghuram Karthik Desu & Aditya Balu. (2014) Optimisation of turning parameters by integrating genetic algorithm with support vector regression and artificial neural networks. The International Journal of Advanced Manufacturing Technology 77:1-4, pages 331-339.
Crossref
Muhammad Arif, Ian A Stroud & Olcay Akten. (2014) A model to determine the optimal parameters in a machining process for the most profitable utilization of machining energy. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 229:2, pages 266-274.
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Zhibo Zhai, Shujuan Li & Yong Liu. (2015) Parameter Determination of Milling Process Using a Novel Teaching-Learning-Based Optimization Algorithm. Mathematical Problems in Engineering 2015, pages 1-14.
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Mohamed Arezki Mellal & Edward J. Williams. (2014) Cuckoo optimization algorithm for unit production cost in multi-pass turning operations. The International Journal of Advanced Manufacturing Technology 76:1-4, pages 647-656.
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M. Chandrasekaran, M. Muralidhar & U. S. Dixit. (2014) Online optimization of a finish turning process: strategy and experimental validation. The International Journal of Advanced Manufacturing Technology 75:5-8, pages 783-791.
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Kaibo Lu, Minqing Jing, Xiaoli Zhang & Heng Liu. (2013) Optimization of sequential subdivision of depth of cut in turning operations using dynamic programming. The International Journal of Advanced Manufacturing Technology 68:5-8, pages 1733-1744.
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Yang Yang, Xinyu Li & Liang Gao. (2013) Parameters optimization of a multi-pass milling process based on imperialist competitive algorithm. Parameters optimization of a multi-pass milling process based on imperialist competitive algorithm.
H. Ganesan & G. Mohankumar. (2013) Optimization of Machining Techniques in CNC Turning Centre Using Genetic Algorithm. Arabian Journal for Science and Engineering 38:6, pages 1529-1538.
Crossref
Ali R. Yildiz. (2012) Optimization of multi-pass turning operations using hybrid teaching learning-based approach. The International Journal of Advanced Manufacturing Technology 66:9-12, pages 1319-1326.
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Ali R. Yildiz. (2013) Hybrid Taguchi-differential evolution algorithm for optimization of multi-pass turning operations. Applied Soft Computing 13:3, pages 1433-1439.
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Ali R. Yildiz. (2013) A new hybrid differential evolution algorithm for the selection of optimal machining parameters in milling operations. Applied Soft Computing 13:3, pages 1561-1566.
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Abdelouahhab Jabri, Abdellah El Barkany & Ahmed El Khalfi. (2013) Multi-Objective Optimization Using Genetic Algorithms of Multi-Pass Turning Process. Engineering 05:07, pages 601-610.
Crossref
R. Venkata Rao & V.D. Kalyankar. (2013) Multi-pass turning process parameter optimization using teaching–learning-based optimization algorithm. Scientia Iranica.
Crossref
Ali R. Yildiz. (2013) Optimization of cutting parameters in multi-pass turning using artificial bee colony-based approach. Information Sciences 220, pages 399-407.
Crossref
Pei Qing Yang & Li Bao An. (2012) Optimal Selection of Machining Parameters by Genetic Algorithms for Face-Milling Operations Based on Minimum Unit Machining Time. Advanced Materials Research 602-604, pages 1989-1992.
Crossref
Shutong Xie & Zidong Zhang. 2012. Computational Methods for Optimizing Manufacturing Technology. Computational Methods for Optimizing Manufacturing Technology 162 192 .
M. Chandrasekaran, M. Muralidhar, C. Murali Krishna & U.S. Dixit. 2012. Computational Methods for Optimizing Manufacturing Technology. Computational Methods for Optimizing Manufacturing Technology 85 110 .
Yi-Chi Wang, Yi-Che Chiu & Yu-Peng Hung. (2011) Optimization of multi-task turning operations under minimal tool waste consideration. Robotics and Computer-Integrated Manufacturing 27:4, pages 674-680.
Crossref
Li-Bao An. (2011) Cutting parameter optimization in milling operations by various solution methods. Cutting parameter optimization in milling operations by various solution methods.
Libao An & Hong Zhang. (2011) A nonlinear programming model for optimizing cutting regimes in face-milling operations. A nonlinear programming model for optimizing cutting regimes in face-milling operations.
Angus Jeang. (2011) Robust cutting parameters optimization for production time via computer experiment. Applied Mathematical Modelling 35:3, pages 1354-1362.
Crossref
Antonio Costa, Giovanni Celano & Sergio Fichera. (2010) Optimization of multi-pass turning economies through a hybrid particle swarm optimization technique. The International Journal of Advanced Manufacturing Technology 53:5-8, pages 421-433.
Crossref
R. Venkata RaoR. Venkata Rao. 2011. Advanced Modeling and Optimization of Manufacturing Processes. Advanced Modeling and Optimization of Manufacturing Processes 55 175 .
Li Bao An, Li Jia Feng & Chun Guang Lu. (2010) Cutting Parameter Optimization for Multi-Pass Milling Operations by Genetic Algorithms. Advanced Materials Research 160-162, pages 1738-1743.
Crossref
Libao An. (2010) Turning Parameter Optimization for Minimum Production Cost by Integer Programming. Turning Parameter Optimization for Minimum Production Cost by Integer Programming.
S. Jayabal & U. Natarajan. (2010) Optimization of thrust force, torque, and tool wear in drilling of coir fiber-reinforced composites using Nelder–Mead and genetic algorithm methods. The International Journal of Advanced Manufacturing Technology 51:1-4, pages 371-381.
Crossref
Li Bao An. (2010) Optimal Selection of Machining Parameters for Multi-Pass Turning Operations. Advanced Materials Research 156-157, pages 956-960.
Crossref
Abdulrahman M. Al-Ahmari. (2010) Solving Stochastic Machining Economics Problem Using Simulation Optimization Approach. Journal of King Saud University - Engineering Sciences 22:1, pages 29-39.
Crossref
Ali Rıza Yıldız. (2009) A novel hybrid immune algorithm for global optimization in design and manufacturing. Robotics and Computer-Integrated Manufacturing 25:2, pages 261-270.
Crossref
Ali Rıza Yıldız. (2008) A novel particle swarm optimization approach for product design and manufacturing. The International Journal of Advanced Manufacturing Technology 40:5-6, pages 617-628.
Crossref
Y-C Wang & T Chen. (2008) Modelling and optimization of machining conditions for the multi-pass dry turning process. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 222:11, pages 1387-1394.
Crossref
Yi-Chi Wang & Yi-Che Chiu. 2008. Manufacturing Systems and Technologies for the New Frontier. Manufacturing Systems and Technologies for the New Frontier 381 384 .
. 2008. Modeling of Metal Forming and Machining Processes. Modeling of Metal Forming and Machining Processes 549 577 .
A.M.A. Al-Ahmari. (2007) Predictive machinability models for a selected hard material in turning operations. Journal of Materials Processing Technology 190:1-3, pages 305-311.
Crossref
Sohyung Cho & Vittaldas V. Prabhu. (2007) Distributed adaptive control of production scheduling and machine capacity. Journal of Manufacturing Systems 26:2, pages 65-74.
Crossref
N. R. Abburi & U. S. Dixit. (2006) Multi-objective optimization of multipass turning processes. The International Journal of Advanced Manufacturing Technology 32:9-10, pages 902-910.
Crossref
S. Satishkumar, P. Asokan & S. Kumanan. (2005) Optimization of depth of cut in multi-pass turning using nontraditional optimization techniques. The International Journal of Advanced Manufacturing Technology 29:3-4, pages 230-238.
Crossref
N. Baskar, P. Asokan, R. Saravanan & G. Prabhaharan. (2006) Selection of optimal machining parameters for multi-tool milling operations using a memetic algorithm. Journal of Materials Processing Technology 174:1-3, pages 239-249.
Crossref
Indrajit Mukherjee & Pradip Kumar Ray. (2006) A review of optimization techniques in metal cutting processes. Computers & Industrial Engineering 50:1-2, pages 15-34.
Crossref
D.K. Ojha & U.S. Dixit. (2005) An economic and reliable tool life estimation procedure for turning. The International Journal of Advanced Manufacturing Technology 26:7-8, pages 726-732.
Crossref
Pei Wang & Ming Liang. (2005) Simultaneously Solving Process Selection, Machining Parameter Optimization, and Tolerance Design Problems: A Bi-Criterion Approach. Journal of Manufacturing Science and Engineering 127:3, pages 533-544.
Crossref
R. Saravanan, R. Siva Sankar, P. Asokan, K. Vijayakumar & G. Prabhaharan. (2005) Optimization of cutting conditions during continuous finished profile machining using non-traditional techniques. The International Journal of Advanced Manufacturing Technology 26:1-2, pages 30-40.
Crossref
Abdulrahman M.A. Al-Ahmari. (2004) A Simulation-based Search Technique for Determination of Process Parameters with Stochastic Tool Lives. Journal of King Saud University - Engineering Sciences 17:1, pages 89-98.
Crossref
Godfrey C. Onwubolu & B. V. BabuMu-Chen Chen & Kai-Ying Chen. 2004. New Optimization Techniques in Engineering. New Optimization Techniques in Engineering 681 702 .
Libao An & Mingyuan Chen. (2003) On Optimization of Machining Parameters. On Optimization of Machining Parameters.
Abdulrahman M.A. Al-Ahmari. (2003) Integrated Models for Cellular Manufacturing with Alternate Process Plans and Machining Economics. Journal of King Saud University - Engineering Sciences 15:1, pages 95-110.
Crossref
G C Onwubolu & T Kumalo. (2005) Multi-pass turning operations optimization based on genetic algorithms. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 215:1, pages 117-124.
Crossref
M.S. Shunmugam, S.V. Bhaskara Reddy & T.T. Narendran. (2000) Selection of optimal conditions in multi-pass face-milling using a genetic algorithm. International Journal of Machine Tools and Manufacture 40:3, pages 401-414.
Crossref
M.Cemal Cakir & Adem Gurarda. (1998) Optimization and graphical representation of machining conditions in multi-pass turning operations. Computer Integrated Manufacturing Systems 11:3, pages 157-170.
Crossref
S.V. Bhaskara Reddy, M.S. Shunmugam & T.T. Narendran. (1998) Optimal sub-division of the depth of cut to achieve minimum production cost in multi-pass turning using a genetic algorithm. Journal of Materials Processing Technology 79:1-3, pages 101-108.
Crossref
J C Rico, S Mateos, E Cuesta & C M Suárez. (2005) Design of special tools by CAD/CAM systems. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 212:5, pages 357-371.
Crossref
M Tolouei-Rad & I.M Bidhendi. (1997) On the optimization of machining parameters for milling operations. International Journal of Machine Tools and Manufacture 37:1, pages 1-16.
Crossref
Sudeep Kumar Singh & A.M. Mohanty. (2021) New Movement Strategy of Cuckoo Search Algorithm for Achieving Higher Profit Rate in Milling Operation. SSRN Electronic Journal.
Crossref

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