Design and fabrication of a hybrid surface‐pressure airfoil model based on rapid prototyping
Author:
Zhou Zhihua,Li Dichen,Zhang Zhengyu,Zeng Junhua
Abstract
PurposeThe purpose of this paper is to develop and present a hybrid design and fabrication method based on rapid prototyping (RP) and electrochemical deposition (ED) techniques to fabricate a pressure wind‐tunnel model with complex internal structure and sufficient mechanical strength.Design/methodology/approachAfter offsetting inward by applied coating thickness, the airfoil model was modified with three pairs of deflecting control surfaces and 24 surface pressure taps and internal passages. The stereolithography (SL) prototype components were fabricated on SL apparatus and roughened by chemical treatments. And then metal‐coated SL components of the airfoil model were created by ED technique. After assembling, a hybrid pressure airfoil model was obtained.FindingsElectrodeposited nickel coating has dramatically improved the overall strength and stiffness of SL parts and the hybrid fabrication method is suitable to construct the wind‐tunnel model with complex internal structure and sufficient mechanical strength, stiffness.Research limitations/implicationsInterface adhesion of SL‐coating is poor even if chemical roughening is applied and the further research is needed.Originality/valueThis method enhances the versatility of using RP in the fabrication of functional models, especially when complex structure with sufficient mechanical properties is considered. Although this paper took an airfoil wind‐tunnel model as an example, it is capable of fabricating other functional components with other rapid prototyping techniques such as FDM, SLS and LOM.
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Reference26 articles.
1. Aghanajafi, S., Adelnia, R. and Daneshmand, S. (2006), “Production of wind tunnel testing models with use of rapid prototyping methods”, WSEAS Transactions on Circuits and Systems, Vol. 5 No. 4, pp. 555‐61. 2. Azarov, Y.A., Vermel, V.D., Kornushenko, A.V., Novikov, M.M., Kamaev, S.V. and Markov, M.A. (2002), “Experience in laser stereolithography and its application in manufacturing wind‐tunnel aerodynamic models of various purposes”, paper presented at Seventh International Conference on Laser and Laser‐Information Technologies, Suzdal, Proceedings of SPIE 4644, pp. 433‐40. 3. Christoph, J., Ebneth, H., Heymann, K., Meyer, M., Rempel, D. and Woldt, G. (1997), Electroplating of Plastics: Handbook of Theory and Practice, Finishing Publications, Hampton Hill. 4. Chua, C.K., Leong, K.F. and Lim, C.S. (2003), Rapid Prototyping: Principles and Applications, 2nd ed., World Scientific, Hackensack, NJ. 5. Chuk, R.N. and Thomson, V.J. (1998), “A comparison of rapid prototyping techniques used for wind tunnel model fabrication”, Rapid Prototyping Journal, Vol. 4 No. 4, pp. 185‐96.
Cited by
20 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|