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The impact of the image resolution on the value of measured geometric parameters on the example of ductile iron structure

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Języki publikacji
EN
Abstrakty
EN
Paper presents the influence of the image resolution on measurement geometric parameters of the objects. Employing as test images the ductile iron structure images allow to analyze the effect of resolution distortion on a model of objects with regular shape. Authors showed on the example images, how decreasing resolution of digital images distorts the value of the parameters describing the shape of the objects, its perimeter and its quantity. The analysis was performed by an automatic algorithm applying image analysis and stereological method.
Wydawca
Rocznik
Strony
350--357
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
  • Cracow University of Technology, Faculty of Mechanical Engineering, Poland
  • University of Silesia, Faculty of Computer and Materials Science, Poland
  • Cracow University of Technology, Faculty of Mechanical Engineering, Poland
Bibliografia
  • 1.ASTM E2567 - 14:2014 Standard Test Method for Determining Nodularity And Nodule Count In Ductile Iron Using Image Analysis
  • 2.Karpisz, D., Kielbus, A., 2019. The Revitalization of Radar System as a Case of Functional and Information Security Problems. System Safety: Human - Technical Facility – Environment, 1, 692-699. DOI: 10.2478/czoto-2019-0088
  • 3.Lisiecka, B., Dudek, A., 2018. The Surface Treatment of Sintered Stainless Steel. Materials Research Proceeding, 5, 148-153. DOI: 10.21741/9781945291814-26
  • 4.Orman, L.J., Radek, N., Broncek, J., 2018a. Sintered Mesh Layers for the Production of Efficient Phase - Change Heat Exchangers. Materials Research Proceedings, 5, 189-193. DOI: 10.21741/9781945291814-33
  • 5.Orman, L.J., Radek, N., Kapjor, A., 2018b. Surface Treatment Technologies for Boiling Heat Transfer Augmentation. Materials Research Proceedings, 5, 216-219. DOI: 10.21741/9781945291814-38
  • 6.Osocha, P., 2018. Calculation of Residual Life for P91 Material Based on Creep Rate and Time to Rupture. Materials Research Proceedings, 5, 177-182. DOI: 10.21741/9781945291814-31
  • 7.Pacana, J., Pacana, A., 2018. Analysis of Possibilities of Using Polymeric Materials for Testing Prototypes of Harmonic Drive. Materials Research Proceedings, 5, 61-66. DOI: 10.21741/9781945291814-11
  • 8.Pasieczynski, L., Radek, N., Klonica, M., Kaminski, J., Swiderski, J., 2018. Properties of BO100-AGR Clearcoat Anti-Graffiti Coating Systems used in the Railway Industry. Materials Research Proceedings, 5, 225-230. DOI: 10.21741/9781945291814-40
  • 9.Pietraszek, J., Kolomycki, M., Szczotok, A., Dwornicka, R., 2016. The fuzzy approach to assessment of ANOVA results. ICCCI 2016: Conf. on Comp. Collective Intell. Springer, 260-268. DOI: 10.1007/978-3-319-45243-2_24
  • 10.Radek, N., Pietraszek, J., Antoszewski, B., 2014. The Average Friction Coefficient of Laser Textured Surfaces of Silicon Carbide Identified by RSM Methodology. Adv. Mat. Res.-Switz., 874, 29-34. DOI: 10.4028/www.scientific.net/AMR.874.29
  • 11.Russ, J.C., 1995. The Image Processing Handbook. CRC Press.
  • 12.Russ, J.C., DeHoff, R.T., 2000. Practical stereology. Kluwer Academic/Plenum Publisher.
  • 13.Ryś, J., 1970. Wstęp do metalografii ilościowej. Wydawnictwo Śląsk, Katowice, Poland.
  • 14.Ulewicz, R., Selejdak, R., 2018. Impact of Laser Machining on the Structure and Properties of Tool Steels. Materials Research Proceeding, 5, 37-40. DOI: DOI: 10.21741/9781945291814-7
  • 15.Underwood, E.E., 1970. Quantitative Stereology. Addison-Wesley.
  • 16.Strzelczak, K., Dudek, A., 2018. Characteristics of Multimaterial Joints of Nickel-Based Superalloys. Materials Research Proceedings, 5, 166-171. DOI: 10.21741/9781945291814-29
  • 17.Wojnar, L., Gądek, A., 2006. Ocena powtarzalności wyników ilościowej oceny struktury. Archiwum Odlewnictwa, 6, 193-198. [in Polish].
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-af42ec18-132c-4822-a6a9-55c722e19886
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