Affiliation:
1. Obuda University
2. Budapest University of Technology and Economics
Abstract
The aluminium alloys are used by the automotive, aerospace industries increasingly because of their numerous advantageous mechanical and chemical properties. Surface roughness measurements are essential in characterization of the features of a machined surface. The most widespread aluminium alloy used in cutting is the die-cast type, alloyed with silicon. Industries prefer using two types of such alloys, the so-called eutectic and hypereutectic alloys reinforced with silicon. In this article the cutting capacities of two die-cast aluminium alloys are examined. The cutting experiments were carried out with design of experiment – DOE (the so-called central composite design – CCD). In the course of the examination three factors were altered (cutting speed – vc, m/min; feed – f, mm; depth of cut – a, mm), and the main surface roughness parameters used in the industries were taken as output parameters. The parameters of the manufactured surface roughness and their deviation in case of different workpiece-materials, tool-materials and edge-materials were analysed with statistical methods. Besides minimizing surface roughness, another important criterion of the manufacturing system (machine – tools – chuck – workpiece) is its surface roughness maintaining capacity, which was analyzed with coefficient of variation (CV).
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference9 articles.
1. Á. Drégelyi-Kiss, R. Horváth, B. Mikó, Design of experiments (DOE) in investigation of cutting technologies, Development in Machining Technology/Scientific-Research Reports vol. 3, Krakow University, (2012).
2. A. Hamadi, A. Y. Mohamed, C. Kamel, M. Tarek, R. Jean-François, Analysis of surface roughness and cutting force components in hard turning with CBN tool: Prediction model and cutting conditions optimization, Measurement 45 (2012) 344-353.
3. M. Y. Noordin, D. Kurniawan, Y. C. Tang, K. Muniswaran, Feasibility of mild hard turning of stainless steel using coated carbide tool, Int J Adv Manuf Technol (2012) 853–863.
4. I. Asiltürk, S. Neseli, Multi response optimisation of CNC turning parameters via Taguchi method-based response surface analysis, Measurement 45 (2012) 785–794.
5. Y. K. Hwang, C. M. Lee, Surface roughness and cutting force prediction in MQL and wet turning process of AISI 1045 using design of experiments, Journal of Mechanical Science and Technology 24 (2010) 1669-1677.
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