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Surface roughness analyses on hard martensitic stainless steel by turning

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of this research paper was to analyze the surface roughness produced by turning process on hard martensitic stainless steel by Cubic Boron Nitride cutting tool. The work piece material was hard AISI 440C martensitic stainless steel. Design/methodology/approach: The experiments were designed using various operating parameters like cutting speed, feed rate and depth of cut. These operating parameters are predominantly used in carrying out the experiments. Findings: Low surface roughness was produced at cutting speed of 225 m/min with feed rate of 0.125 mm/rev and 0.50 mm depth of cut (doc). However, moderate cutting speed of 175 m/min under above feed rate and doc is an ideal operating parameters taking flank wear in to account. Research limitations/implications: While searching for references in turning of martensitic stainless steel, very limited journals are available, but very few literatures are available on turning of AISI 440C hard martensitic stainless steel which was a constraint. Practical implications: The turning of hard martensitic stainless steel brings interesting information on surface roughness, tool wear etc. and further can be extended to turn with different cutting tools. Originality/value: The value of the research work lies in using the results by other researches. The result will upgrade the knowledge about the influence parameters on surface roughness especially on martensitic stainless steel especially on martensitic stainless steels.
Rocznik
Strony
139--142
Opis fizyczny
Bibliogr. 15 poz., il., tab. wykr.
Twórcy
autor
autor
autor
  • Faculty of Mechanical and Manufacturing Engineering, University Tun Hussein Onn Malaysia, 86400, Parit Raja, Batu Pahat, Johor, Malaysia, thamizhmaniis@yahoo.com
Bibliografia
  • [1] C. T. Kwok, K. H. Lo, F. T. Cheng, H. C. Man, Effect of processing conditions on the corrosion performance of laser surface-melted AISI 440*C martensitic stainless steel, Surface and Coatings Technology 166 (2003) 221-230.
  • [2] I. Calliari, M. Zanesco, M. Dabala, K. Brunelli, E. Ramous, Investigation of microstructure and properties of a Ni-Mo martensitic stainless steel, Materials and Design 29 (2008) 246-250.
  • [3] Y. Matsumoto, F. Hashimoto, G. Lahoti, Surface integrity generated by precision hard turning, Annals CIRP 48/1 59-62.
  • [4] F. Klocke, H. Kratz, Advanced tool edge geometry for high precision hard turning, Annals CIRP 48 (2005) 59-62.
  • [5] Y. K. Chou, H. Song, Tool nose radius effects on finish hard turning, Journal of Materials Processing Technology 148 (2004) 259-268.
  • [6] X. L. Liu, D. H. Wen, G. Yan, Experimental study on turning of hardened GCr15 steel with PCBN tool, Journal of Materials Processing Technology 129 (2002) 217-221.
  • [7] S. Thamizhmanii, S. Saparuding, S. Hasan, Analyses of surface roughness by turning process using Taguchi method, Journal of Achievements in Materials and Manufacturing Engineering 20 (2007) 503-506.
  • [8] W. Konigi, M. Klinger, R. Link, Machining hard materials with geometrically defined cutting edges-Field of applications and limitations, Annals CIRP 39 (1990) 61-64.
  • [9] M. A. Davies, Y. Chou, C. J. Evans, On chip morphology, tool wear and cutting mechanics in finish hard turning, Annals CIRP 45 (1996) 77-82.
  • [10] T. Hodgson, T. Trendler, G. F. Michelletti, Turning hardened tool steels with cubic boron nitride inserts, Annals CIRP 30 (1981) 63-66.
  • [11] Y. K. Chou, M. M. Evans, M. M. Barash, Experimental investigation on CBN turning of AISI 52100 steel, Journal of Materials Technology 134 (2003) 1-9.
  • [12] C. Lahiff, S. Gordon, P. Phelan, PCBN tool wear modes and mechanisms in finish hard turning, Robotics and Computer Integrated Manufacturing 23/6 (2007) 638-644.
  • [13] Z. W. Zhong, L. P. Khoo, S. T. Han, Prediction of surface roughness of turned surfaces using neural networks, International Journal of Advanced Manufacture Technology 28 (2006) 688-693.
  • [14] T. K. Harris, E. J. Brookes, C. J. Taylor, The effect on the hardness of polycrystalline cubic boron nitride cutting tool materials, International of Journal of Refractory of Refractory Metals and Hard Materials 22 (2004) 105-110.
  • [15] K. A. Abou-El-Hossein, Z. Yahya, High speed end milling of AISI 304 stainless steel using new geometrically developed carbude inserts, Journal of Materials Processing Technology 162-163 (2005) 596-602.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAN-0002-0040
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