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Original Articles

Surface Roughness Investigation in the Hard Turning of Steel Using Ceramic Tools

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Pages 648-652 | Received 05 Jun 2014, Accepted 28 Nov 2014, Published online: 26 May 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (12)

Vinothkumar Sivalingam, Zan Zhuoliang, Sun Jie, S. Baskaran, N. Yuvaraj, Munish Kumar Gupta & Mashood Khan Aqib. (2021) Use of Atomized Spray Cutting Fluid Technique for the Turning of a Nickel Base Superalloy. Materials and Manufacturing Processes 36:3, pages 373-380.
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D. Palanisamy & P. Senthil. (2017) Development of ANFIS model and machinability study on dry turning of cryo-treated PH stainless steel with various inserts. Materials and Manufacturing Processes 32:6, pages 654-669.
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Rajashree Mallick, Ramanuj Kumar, Amlana Panda & Ashok Kumar Sahoo. (2023) Current Status of Hard Turning in Manufacturing: Aspects of Cooling Strategy and Sustainability. Lubricants 11:3, pages 108.
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Debabrata Rath, Sumanta Panda & Kamal Pal. (2022) Performance Analysis of Hybrid Ceramic Insert in Dry Turning of Hardened Tool Steel. Arabian Journal for Science and Engineering 47:12, pages 15455-15476.
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Mohammad Rafighi. (2022) Effects of shallow cryogenic treatment on surface characteristics and machinability factors in hard turning of AISI 4140 steel. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 236:5, pages 2118-2130.
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Sarmad Ali Khan, Muhammad Faizan Ameer, Ghulam Moeen Uddin, Muhammad Asad Ali, Saqib Anwar, Muhammad Umar Farooq & Abdullah Alfaify. (2022) An in-depth analysis of tool wear mechanisms and surface integrity during high-speed hard turning of AISI D2 steel via novel inserts. The International Journal of Advanced Manufacturing Technology 122:9-10, pages 4013-4028.
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Vinothkumar Sivalingam, Ganeshkumar Poogavanam, Yuvaraj Natarajan & Jie Sun. (2022) Optimization of atomized spray cutting fluid eco-friendly turning of Inconel 718 alloy using ARAS and CODAS methods. The International Journal of Advanced Manufacturing Technology 120:7-8, pages 4551-4564.
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Adel T. Abbas, Abdulhamid A. Al-Abduljabbar, Ibrahim A. Alnaser, Mohamed F. Aly, Islam H. Abdelgaliel & Ahmed Elkaseer. (2022) A Closer Look at Precision Hard Turning of AISI4340: Multi-Objective Optimization for Simultaneous Low Surface Roughness and High Productivity. Materials 15:6, pages 2106.
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Csaba Felho & Gyula Varga. (2022) Theoretical Roughness Modeling of Hard Turned Surfaces Considering Tool Wear. Machines 10:3, pages 188.
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Mustafa Kuntoğlu, Munish Kumar Gupta, Abdullah Aslan, Emin Salur & A Garcia-Collado. (2022) Influence of tool hardness on tool wear, surface roughness and acoustic emissions during turning of AISI 1050. Surface Topography: Metrology and Properties 10:1, pages 015016.
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Palani Karthikeyan & Sumit Pramanik. (2021) Prediction of suitable heat treatment for H13 tool steels by application of thermal shock fatigue cycle. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 236:2, pages 302-313.
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Muhammad Qaiser Saleem & Abrar Mehmood. (2022) Eco-friendly precision turning of superalloy Inconel 718 using MQL based vegetable oils: Tool wear and surface integrity evaluation. Journal of Manufacturing Processes 73, pages 112-127.
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Aqib Mashood Khan, Ning He, Wei Zhao, Muhammad Jamil, Hongjun Xia, Longhui Meng & Munish Kumar Gupta. (2020) Cryogenic-LN 2 and conventional emulsion assisted machining of hardened steel: Comparison from sustainability perspective . Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 235:14, pages 2310-2322.
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Barış Özlü, Halil Demir, Mustafa Türkmen & Süleyman Gündüz. (2021) Examining the machinability of 38MnVS6 microalloyed steel, cooled in different mediums after hot forging with the coated carbide and ceramic tool. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 235:22, pages 6228-6239.
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Anıl Berk Dalkıran, Furkan Yılmaz & Samet Emre Bilim. (2021) Effect of Cutting Insert Type on Surface Roughness of Hardened AISI 420 Stainless Steel. Academic Perspective Procedia 4:1, pages 171-185.
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Barış ÖZLÜ. (2021) Sleipner soğuk iş takım çeliğinin tornalanmasında kesme parametrelerinin kesme kuvveti, yüzey pürüzlülüğü ve talaş şekli üzerine etkisinin incelenmesi. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 36:3, pages 1241-1252.
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Niancong Liu, Baolin Liu, Hao Jiang, Shenghong Wu, Chengwen Yang & Yun Chen. (2021) Study on vibration and surface roughness in MQCL turning of stainless steel. Journal of Manufacturing Processes 65, pages 343-353.
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Sana Ehsan, Sarmad Ali Khan & Mudassar Rehman. (2021) Defect-free high-feed milling of Ti-6Al-4V alloy via a combination of cutting and wiper inserts. The International Journal of Advanced Manufacturing Technology 114:1-2, pages 641-653.
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Ajay Kumar & Gaurav Sehrawat. (2021) Investigation of Surface Roughness and Tool wear during turning of Titanium Alloy Grade 5 (Ti-6Al-4V) by using coated carbide tool and optimization of process parameters. IOP Conference Series: Materials Science and Engineering 1033:1, pages 012067.
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Debabrata Samantaraya & Sanjay Lakade. (2020) Hard Turning Cutting Tool Materials used in Automotive and Bearing Manufacturing Applications – A review. IOP Conference Series: Materials Science and Engineering 814:1, pages 012005.
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Chetan Darshan, Sumit Jain, Manu Dogra, Munish Kumar Gupta & Mozammel Mia. (2019) Machinability improvement in Inconel-718 by enhanced tribological and thermal environment using textured tool. Journal of Thermal Analysis and Calorimetry 138:1, pages 273-285.
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Kang He, Mengdi Gao & Zhuanzhe Zhao. (2019) Soft Computing Techniques for Surface Roughness Prediction in Hard Turning: A Literature Review. IEEE Access 7, pages 89556-89569.
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C.H. Lauro, J.C. Nogueira, D. Carou, L.C. Brandão & J. Paulo Davim. 2019. Mechanical Behaviour of Biomaterials. Mechanical Behaviour of Biomaterials 117 128 .
S. Yousefi & M. Zohoor. (2018) Experimental Studying of the Variations of Surface Roughness and Dimensional Accuracy in Dry Hard Turning Operation. The Open Mechanical Engineering Journal 12:1, pages 175-191.
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Bing Wang & Zhanqiang Liu. (2018) Influences of tool structure, tool material and tool wear on machined surface integrity during turning and milling of titanium and nickel alloys: a review. The International Journal of Advanced Manufacturing Technology 98:5-8, pages 1925-1975.
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Sarmad Ali Khan, Muhammad Umar, Muhammad Qaiser Saleem, Nadeem Ahmad Mufti & Syed Farhan Raza. (2018) Experimental investigations on wiper inserts’ edge preparation, workpiece hardness and operating parameters in hard turning of AISI D2 steel. Journal of Manufacturing Processes 34, pages 187-196.
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Ramanuj Kumar, Ashok Kumar Sahoo, Purna Chandra Mishra & Rabin Kumar Das. (2018) Comparative investigation towards machinability improvement in hard turning using coated and uncoated carbide inserts: part I experimental investigation. Advances in Manufacturing 6:1, pages 52-70.
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Qingzhong Xu, Jun Zhao & Xing Ai. (2017) Cutting performance of tools made of different materials in the machining of 42CrMo4 high-strength steel: a comparative study. The International Journal of Advanced Manufacturing Technology 93:5-8, pages 2061-2069.
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Guolong Zhao, Chuanzhen Huang, Ning He, Hanlian Liu & Bin Zou. (2016) Fabrication and cutting performance of reactively hot-pressed TiB2-TiC-SiC ternary cutting tool in hard turning of AISI H13 steel. The International Journal of Advanced Manufacturing Technology 91:1-4, pages 943-954.
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Diego Carou, Eva Mª Rubio, Beatriz de Agustina & Roberto Teti. (2017) Sustainable Turning of the Ti-6Al-4V alloy at Low Feed Rates: Surface Quality Assessment. Procedia Manufacturing 8, pages 769-774.
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Diego Carou, Eva Mª Rubio, Carlos Henrique Lauro, Lincoln Cardoso Brandão & J. Paulo Davim. (2017) Study Based on Sound Monitoring as a Means for Superficial Quality Control in Intermittent Turning of Magnesium Workpieces. Procedia CIRP 62, pages 262-268.
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R. Ferreira, Jan Řehoř, Carlos H. Lauro, D. Carou & J. P. Davim. (2016) Analysis of the hard turning of AISI H13 steel with ceramic tools based on tool geometry: surface roughness, tool wear and their relation. Journal of the Brazilian Society of Mechanical Sciences and Engineering 38:8, pages 2413-2420.
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