Experimental Study on Milling Force of Nickel-Based High-Temperature Alloy GH3039

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Abstract:

Nickel-based high-temperature alloy GH3039 is a kind of alloy with the poor thermal conductivity, work hardening and hard particle. It has poor machinability. The orthogonal experiment is adopted for the study on the effect of the cutting parameters on the high-temperature alloy GH3039 milling force by using the carbide tool. The milling force of the size is obtained by orthogonal cutting experiments under different cutting parameters, and analyzed the size of the cutting parameters on cutting force of law. The milling force experience formula is established by means of regression analysis. The rationality of the model is examined by using the absolute error calculation.

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3-8

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] D.Q., Gao, Z.Y. Li., Z.Y. Mao. Cutting Performance Analysis and Parameter Optimization on Nickel-baded Alloy High-speed Cutting. Modular Machine tool Automatic Manufacturing technique, 12(2010)10-12.

Google Scholar

[2] AI.X. High speed Machining technology. National defence Industry Press, (2003).

Google Scholar

[3] Z.J. Yuan, Metal Cutting experiment techniques. Machinery Industry Press, (1988).

Google Scholar

[4] Angel Alique, Rodolfo E. Haber, salvador Ros, Carlos Gonzalez. A neuralnetwork. based Model for the prediction of cutting force in milling process. A Progress study on a real case. Proceedings of the 15th IEEE International SymPosium on Intelligent Control (ISIC2000)17-19 July (2000).

DOI: 10.1109/isic.2000.882910

Google Scholar

[5] M. Nalbant, A.G. Altin,H. Kkaya, The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys. Materials&Design, 28(2007) 1334-1338.

DOI: 10.1016/j.matdes.2005.12.008

Google Scholar

[6] A. Altin,M. Nalbant. The effects of cutting speed on tool wear and tool life when machining Inconel 718 with ceramic tools. Materials and Design. 28(2007)2518-2522.

DOI: 10.1016/j.matdes.2006.09.004

Google Scholar