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Experimental study on abrasive waterjet polishing of hydraulic turbine blades

Hamed Khakpour, Lionel Birglen, A. Tahan and F. Paquet

Paper (2014)

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Abstract

In this paper, an experimental investigation is implemented on the abrasive waterjet polishing technique to evaluate its capability in polishing of surfaces and edges of hydraulic turbine blades. For this, the properties of this method are studied and the main parameters affecting its performance are determined. Then, an experimental test-rig is designed, manufactured and tested to be used in this study. This test-rig can be used to polish linear and planar areas on the surface of the desired workpieces. Considering the number of parameters and their levels, the Taguchi method is used to design the preliminary experiments. All experiments are then implemented according to the Taguchi L18 orthogonal array. The signal-to-noise ratios obtained from the results of these experiments are used to determine the importance of the controlled polishing parameters on the final quality of the polished surface. The evaluations on these ratios reveal that the nozzle angle and the nozzle diameter have the most important impact on the results. The outcomes of these experiments can be used as a basis to design a more precise set of experiments in which the optimal values of each parameter can be estimated.

Department: Department of Mechanical Engineering
Funders: Alstom Energie, Transport Canada, Hydro-Quebec, CRSNG/NSERC
PolyPublie URL: https://publications.polymtl.ca/12088/
Conference Title: 27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014)
Conference Location: Montréal, Québec
Conference Date(s): 2014-09-22 - 2014-09-26
Publisher: Institute of Physics Publishing
DOI: 10.1088/1755-1315/22/5/052016
Official URL: https://doi.org/10.1088/1755-1315/22/5/052016
Date Deposited: 18 Apr 2023 15:08
Last Modified: 27 Sep 2024 13:06
Cite in APA 7: Khakpour, H., Birglen, L., Tahan, A., & Paquet, F. (2014, September). Experimental study on abrasive waterjet polishing of hydraulic turbine blades [Paper]. 27th IAHR Symposium on Hydraulic Machinery and Systems (IAHR 2014), Montréal, Québec (10 pages). https://doi.org/10.1088/1755-1315/22/5/052016

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