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TECHNICAL PAPERS

Functional Filtering and Performance Correlation of Plateau Honed Surface Profiles

[+] Author and Article Information
B. Muralikrishnan, J. Raja

Center for Precision Metrology, University of North Carolina at Charlotte, Charlotte, NC 28223

J. Manuf. Sci. Eng 127(1), 193-197 (Mar 21, 2005) (5 pages) doi:10.1115/1.1830053 History: Received November 23, 2003; Revised February 21, 2004; Online March 21, 2005
Copyright © 2005 by ASME
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References

Schneider,  U. , 1988, “An approach to the evaluation of surface profiles by separating them into functionally different parts,” Surf. Topogr., 1, pp. 71–83.
Raja,  J., Muralikrishnan,  B., and Fu,  S., 2002, “Recent advances in separation of roughness, waviness and form,” Precis. Eng., 26, pp. 222–235.
ISO 13565-1:1996(E), Geometrical Product Specification (GPS)—Surface Texture: Profile method; Surfaces having stratified functional properties—Part 1: Filtering and general measurement conditions.
ISO 13565-2, Geometrical Product Specification (GPS)—Surface Texture: Profile method; Surfaces having stratified functional properties—Part 2: Height characterization using the linear material ratio curve (ISO, Geneva, 1996).
ISO 13565-3, Geometrical Product Specification (GPS)—Surface Texture: Profile method; Surfaces having stratified functional properties—Part 3: Height characterization using the material probability curve (ISO, Geneva, 1996).
Feng,  C.-X., Wang,  X., and Yu,  Z., 2003, “Neural Networks Modeling of Honing Surface Roughness Parameters Defined by ISO 13565,” J. Manuf. Syst., 21(5), pp. 395–408.
Jakubiec, W., and Brylski, M., 2003, “Validation of software for calculating surface roughness parameters according to ISO 13565-3,” Proceedings of the 9th International Conference on Metrology and Properties of Engineering Surfaces, Halmstad University, Sweden.
Brinkmann, S., Bodschwinna, H., and Lemke, H. W., 2000, “Development of a robust Gaussian regression filter for three-dimensional surface analysis,” Proceedings of the X International Colloquium on Surfaces, Chemnitz University of Technology, Chemnitz, pp. 122–132.
Robust Spline Filters, draft document with ISO/TC 213 committee.
Srinivasan, V., 1988, “Discrete Morphological filters for Metrology,” Proceedings of the 6th IMEKO ISMQC Symposium on Metrology for Quality Control in Production, TU Wien, Austria.
Gonzalez, R. C., and Woods, R. E., 1993, Digital Image Processing, Addison–Wesley Publishing, Reading, MA.
Malburg,  M., 2003, “Surface Profile Analysis for Conformable Interfaces,” ASME J. Manuf. Sci. Eng., 125(3), pp. 624–627.
Krystek, M., 2004, “Morphological filters in surface texture analysis, Proceedings of the XI International Colloquium on Surfaces,” Chemnitz, Germany.
Muralikrishnan, B., and Raja, J., 2002, “Characterization of cast iron surfaces with graphite pullouts using morphological filters,” Transactions of NAMRI/SME.
Scott, P. J., 2000, “Scale-space techniques,” Proceedings of the X International Colloquium on Surfaces, Chemintz University of Technology, Chemnitz, pp. 153–161.
Hosmer D., Jr., and Lemeshow, S., 1989, Applied Logistic Regression, John Wiley & Sons, New York.
Cohen, D., 2000, “Data Analysis and Regression Techniques,” presentation at ASME B46.1 meeting, July.
Muralikrishnan, B., 2003, “Advanced Surface Texture Analysis for Process Diagnostics and Functional Correlation,” PhD dissertation, University of North Carolina at Charlotte.

Figures

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(a) Dilation, erosion, opening and closing mean lines. (b) Closing mean lines with two different ball structuring element sizes.
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Approximation and difference profiles for plateau honed profile
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(a) Core and valley texture for new liner and (b) worn liner
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Class value as a function of Rq and linear regression line
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Proportion P as a function of Rq along with logistic model curve
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Testing of model with dealer returned liners

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