Mechanical Analysis of Warm Extrusion Precision Forming on 42CrMo Steel Cutting Pick

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Abstract:

Cutting pick is a kind of widely-used consumptive mining tool. The traditional producing technics of cutting pick body is foundry, or machining after roughly forging, or machining directly from metal bar. By former technics, the property of products is poor, and by latter, the material availability is low and the cost is high. The patent technology for cutting pick body warm extrusion introduced in this paper can overcome all the disadvantages mentioned above. In this paper, by analyzing the characteristic of cutting pick body warm extrusion, adopting the principle of power balance to solve the approximate solution of strain forces, the approximate calculating formulas of extruding power are deduced. The main factors affecting on extrusion force are determined theoretically. This research can be used as basis to design tooling and choose proper equipment for this new technology.

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Periodical:

Advanced Materials Research (Volumes 538-541)

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1061-1066

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June 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] C.H. Wang, B.H. Yao and G.X.Li. The Experiment Study on pick Cutting Coal Mining [J]. Mining & Processing Equipment, Vol.12 (2001), pp.6-8.

Google Scholar

[2] S.Fujikawa. Cold and warm-forging application in the automotive industry. J.Mater. Process.technol. Vol.5 (1992), pp.317-342.

Google Scholar

[3] Z.X. Ren, H.J. Sun and F. Su, Analysis and research of coal mining machine cutting teeth reliability[M]. Coal Mine Machinery Press, Vol.6 (2004), pp.36-37. In Chinese.

Google Scholar

[4] Z. Ma, X.N. Niu. Contradistinctive Analysis with Abrasion Resistance of Coal Mining Machine Bit Tool[M]. Coal Mine Machinery Press, Vol.29 (2008), pp.52-54. In Chinese.

Google Scholar

[5] X.K.Du. Technical study of warm extruding precision forming mechanics model for cutting pick body of coal excavator [D]. [Master's thesis]. Yanshan University, 2007.In Chinese.

Google Scholar

[6] H.Q. Cao, H.B.Li and J.Zhao. Research on warm extrusion process for rock drill body and other components [J]. Forging & Stamping Technology, Vol.4 (2005), pp.15-17.

Google Scholar

[7] B.I. Tomov, V.I. Gagov. Modelling and description of the near-net-shape forging of cylindrical spur gears. Journal of Materials Processing Technology, Vol.92 (1999), pp.444-449.

DOI: 10.1016/s0924-0136(99)00169-7

Google Scholar

[8] S.D.Wu. Squeeze Theory [M]. National Defense Industry Press, (1994)

Google Scholar

[9] J.X. Xie, J.A. Liu. The theory and technology of metal extrusion [M]. Metallurgical Industry Press, (2001)

Google Scholar

[10] D.N. Wang. Metal plastic forming principle [M]. Mechanical Industry Press,1982. In Chinese.

Google Scholar

[11] W.B. Shi, Z.L. Liu and Z.M. Sun. Analysis on warm extrusion processing parameters of spur gear and numerical simulation of die wear [J]. Forging & Stamping Technology, Vol.32 (2007), pp.105-108.

Google Scholar

[12] N.B. Cao, W.B. Song. The research on warm extrusion process of metal material [M]. Jiangxi Energy, Vol.1 (2009), pp.23-27. In Chinese.

Google Scholar