RETRACTED: Analysis of Particle Damping Characteristics on Steel Vertical Machining Centre Column with Epoxy Reinforced Granite

Author:

Nallusamy S.1ORCID,Sujatha K.2,Rajan K.1,Vijaya Kumar K.R.3

Affiliation:

1. Dr. M.G.R. Educational and Research Institute University

2. Dr. M G R Educational and Research Institute

3. Dr.M.G.R.Educational and Research University

Abstract

Retracted paper: In high speed machining, performance is generally influenced by the dynamic behaviour of the machine tool structures. The machine tool structure is required to be rigid in order to remove the undesirable vibration and to improve the work piece quality. The most conventional material used in machine tool structure is cast iron which has both stiffness and dynamic characteristics to perform at varying speeds. The objective of this work is to improve damping capacity of vertical machining centre column. The damping capacity of column can be increased further by using passive damping method of ball packing. Damping capacity is a crucial factor which makes the dissipation of vibration happens at faster rate. As compared with cast iron established studies shows that epoxy granite a composite material improves damping capacity. Epoxy granite though could be a good choice for improving the machine tool performance at high speeds but is poor in static stiffness compared to cast iron. In this investigation it was observed that, the static stiffness of epoxy granite composite vertical machining centre column could be increased by using steel reinforcements. The final results reveal that, steel balls with epoxy granite provide faster dissipation time of 15ms at 70% packing ratio as compared to glass balls that showed dissipation time of 35ms. Also it was seen that, the steel balls offer the better damping capacity at optimum packing ratio of 50% mainly due to its specific gravity and mass of the balls.

Publisher

Trans Tech Publications, Ltd.

Reference23 articles.

1. H.C. Mohring et al., Materials in machine tool structures,CIRP Annals - Manufacturing Technology, 64 (2015) 725-748.

2. A. Bustillo et al., New methodology for the design of ultra-light structural components for machine tools,Int. Journal of Computer Integrated Manufacturing, 28 (2015) 339-352.

3. Sung Kyum Cho, Hyu Jun Kim and Seung Hwan Chang, The application of polymer composites to the table top machine tool components for higher stiffness and reduced weight, Composite Structures, 93 (2011) 492-501.

4. Selvakumar and P.V. Mohanram., Analysis of alternate composite materials for high speed precision machine tool structure, International Journal of Engineering, 01 (2012) 95-98.

5. Deepak Ubale, D., Ajit Patil, P. and Kailas Gurav, S. Experimental investigation of material properties of epoxy granite, International Journal of Mechanical and Production Engineering, 1 (2013) 22-24.

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