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DETERMINING SURFACE TOPOGRAPHY FOR CYLINDER LINER SURFACES USING 2D FAST FOURIER TRANSFORM

Yıl 2017, Cilt: 35 Sayı: 2, 311 - 322, 01.06.2017

Öz

In this study, roughness measurement verification using acquired images from the cylinder liner surfaces was conducted using Fast Fourier Transform (FFT). Cylinder liners that worked at specific times were used in the measurements. The surface images of the cylinder liners from two different tractor models were captured and inspected by a rotating (Nipkow disc) confocal microscope. The captured images were then preprocessed using high pass filter in order to enhance the image before further image analyses conducted. This study indicated that determination of surface roughness is possible using the image analysis techniques. 2 dimensional (2D) FFT image transformation techniques will be used in the near future extensively to determine the surface characterization of cylinder liners of engines used in tractors over time. In all cylinder liners used this study, the smoother appearance of the lower-middle parts suggested that the piston worked mostly in this region.

Kaynakça

  • [1] Salah H.R.A., Hassan H.M., Mohamed K.B., 2009, “Identifying Cylinder Liner Wear using Precise Coordinate Measurements”, International Journal of Precision Engineering and Manufacturing, 10(5), 19-25.
  • [2] Zhao, Y.F., Brown, R., Kramer, T., Xu, X., 2011, “Information Modelling for Interoperable Dimensional Metrology”, Springer, ISBN 978-1-4471-2166-4.
  • [3] Whitehouse, D.J., 2003, “Handbook of Surface and Nanometrology”, UK, ISBN 0-7503-0583-5.
  • [4] Durakbasa, M.N., 2003, “Geometrical Product Specifications and Verification for the Analytical Description of Technical and Non-technical structures”, TU Wien, Austria, ISBN 3-901888-26-8, 9/152.
  • [5] Osanna, P.H., Durakbasa, M.N., Kräuter, L., 2008, “Industrial Metrology and Interchangeable Manufacturing under the Viewpoint of Nanotechnology and Nanometrology, TUWien, Austria.
  • [6] Demircioglu, P., Bogrekci, I., Durakbasa, M.N., 2013, “Micro Scale Surface Texture Characterization of Technical Structures by Computer Vision”. Measurement - Journal of the International Measurement Confederation (IMEKO), ELSEVIER, ISSN: 0263-2241, DOI No: 10.1016/j.measurement.2013.02.012, 46(6), 2022–2028.
  • [7] ISO 4287:1997 -- Geometrical Product Specifications (GPS) -- Surface texture: Profile method -- Terms, definitions and surface texture parameters (Last Reviewed in 2015).
  • [8] ISO 4288:1996 -- Geometrical Product Specifications (GPS) -- Surface texture: Profile method -- Rules and procedures for the assessment of surface texture (Last Reviewed in 2013).
  • [9] ISO 25178-2:2012 -- Geometrical product specifications (GPS) -- Surface texture: Areal - Part 2: Terms, definitions and surface texture parameters.
  • [10] Demircioglu, P., 2017, Topological Evaluation of Surfaces in Relation to Surface Finish. In: Hashmi, M.S.J. (ed.), Comprehensive Materials Finishing. vol. 3, 243-260. Oxford: Elsevier.
  • [11] NanoFocus - µsurf, http://www.nanofocus.com/products/usurf/usurf-explorer/
Yıl 2017, Cilt: 35 Sayı: 2, 311 - 322, 01.06.2017

Öz

Kaynakça

  • [1] Salah H.R.A., Hassan H.M., Mohamed K.B., 2009, “Identifying Cylinder Liner Wear using Precise Coordinate Measurements”, International Journal of Precision Engineering and Manufacturing, 10(5), 19-25.
  • [2] Zhao, Y.F., Brown, R., Kramer, T., Xu, X., 2011, “Information Modelling for Interoperable Dimensional Metrology”, Springer, ISBN 978-1-4471-2166-4.
  • [3] Whitehouse, D.J., 2003, “Handbook of Surface and Nanometrology”, UK, ISBN 0-7503-0583-5.
  • [4] Durakbasa, M.N., 2003, “Geometrical Product Specifications and Verification for the Analytical Description of Technical and Non-technical structures”, TU Wien, Austria, ISBN 3-901888-26-8, 9/152.
  • [5] Osanna, P.H., Durakbasa, M.N., Kräuter, L., 2008, “Industrial Metrology and Interchangeable Manufacturing under the Viewpoint of Nanotechnology and Nanometrology, TUWien, Austria.
  • [6] Demircioglu, P., Bogrekci, I., Durakbasa, M.N., 2013, “Micro Scale Surface Texture Characterization of Technical Structures by Computer Vision”. Measurement - Journal of the International Measurement Confederation (IMEKO), ELSEVIER, ISSN: 0263-2241, DOI No: 10.1016/j.measurement.2013.02.012, 46(6), 2022–2028.
  • [7] ISO 4287:1997 -- Geometrical Product Specifications (GPS) -- Surface texture: Profile method -- Terms, definitions and surface texture parameters (Last Reviewed in 2015).
  • [8] ISO 4288:1996 -- Geometrical Product Specifications (GPS) -- Surface texture: Profile method -- Rules and procedures for the assessment of surface texture (Last Reviewed in 2013).
  • [9] ISO 25178-2:2012 -- Geometrical product specifications (GPS) -- Surface texture: Areal - Part 2: Terms, definitions and surface texture parameters.
  • [10] Demircioglu, P., 2017, Topological Evaluation of Surfaces in Relation to Surface Finish. In: Hashmi, M.S.J. (ed.), Comprehensive Materials Finishing. vol. 3, 243-260. Oxford: Elsevier.
  • [11] NanoFocus - µsurf, http://www.nanofocus.com/products/usurf/usurf-explorer/
Toplam 11 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Articles
Yazarlar

İsmail Böğrekci Bu kişi benim

Pınar Demircioğlu Bu kişi benim

Hilmi Saygın Sucuoğlu Bu kişi benim

Ahmet Fatih Hacıyusufoğlu Bu kişi benim

Yayımlanma Tarihi 1 Haziran 2017
Gönderilme Tarihi 16 Aralık 2016
Yayımlandığı Sayı Yıl 2017 Cilt: 35 Sayı: 2

Kaynak Göster

Vancouver Böğrekci İ, Demircioğlu P, Sucuoğlu HS, Hacıyusufoğlu AF. DETERMINING SURFACE TOPOGRAPHY FOR CYLINDER LINER SURFACES USING 2D FAST FOURIER TRANSFORM. SIGMA. 2017;35(2):311-22.

IMPORTANT NOTE: JOURNAL SUBMISSION LINK https://eds.yildiz.edu.tr/sigma/