Research and Development of Steel Casting CAD/CAE Integration Technology Based on the Neutral STEP File

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Abstract:

The casting process CAD system developed based on the existing three-dimensional CAD software has many inadequacies. This paper innovatively puts forward the steel castings three-dimensional casting process CAD system based on neutral STEP file. In this study, by taking advantage of universal CAD data-exchange standard STEP format for data exchange, a practical three-dimensional CAD system was developed based on Open CASCADE Geometry Kernel. The system has the function of practical casting process modeling, including design and modeling of gating system and riser design and so forth. The system exceeded the deficiencies of the existing casting process CAD system. It resolves the foundry Enterprises dependence and limitations on the type and version of commercial 3D CAD software, enabling to realizethe integration of CAD and CAE on casting process.

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524-529

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March 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Farouk Shehata, Mohamed Abd-Elhamid, Materials & Design. 2003, 24(8), 577-583.

Google Scholar

[2] Keun Park, Kim YS, Kim CS, et al.: Journal of Materials Processing Technology, Vol. 12(2007), 187-188, 609-613.

Google Scholar

[3] X. H. Ge, H Li, H. W. Huang, et al., Special Casting & Nonferrous Alloys Vol. 11(2008), 841-842.

Google Scholar

[4] S. H. Yue, G. X. Wang, F Yin, Journal of Materials Processing Technology Vol. 139 (2003), 465-468.

Google Scholar

[5] David McGee, Dieter Schlaepfer, Richard Weiss, Pierre J. Malraison, Control and Dynamic Systems, Vol. 59(1993), 57-96.

Google Scholar

[6] Sang Hun Lee, Computer-Aided Design Vol. 37 (2005), 941-955.

Google Scholar

[7] H. Y. Li, C. Z. Zhao, Beijing: Mechanical Industry Press, 2005.

Google Scholar

[8] Chinese Mechanical Engineering Society Foundry Branch. Beijing Mechanical Industry Press, (2003).

Google Scholar

[9] Keun Park, Y.S. Kim, C.S. Kim, H.J. Park, Journal of Materials Processing Technology, 2007, 609-613.

Google Scholar

[10] F. Hürlimann, R. Kelmb, M. Dugas, K. Oltmann, G. Kress, Aerospace Science and Technology Vol. 15 (2011), 323-333.

Google Scholar

[11] Information on http: /www. opencascade. org.

Google Scholar

[12] G. Q. Yuan, Y Zhang, Journal of Engineering Graphics, Vol. 4(2008), 146-149.

Google Scholar

[13] P Holland, P. M Standring, H Long, D. J Mynors, Journal of Materials Processing Technology, Vol. 9(2002), 446-455.

Google Scholar

[14] Arjun lyer, Shiv G. Kapoor, Richard E. DeVor: Journal of Manufacturing Systems, 2001, 20(3), 198-209.

Google Scholar

[15] J. X. Zhou, R. X. Liu, L. L. Chen, et al.: Machinist Metal Forming Vol. 8(2001), 11-13.

Google Scholar