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The effect of the type of stylus on the results of surface roughness of pine wood (Pinus sylvestris L.) after milling

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Języki publikacji
EN
Abstrakty
EN
The article presents results of the surface roughness of pine wood and it shows a problem of comparison of results obtained using profilometers with different measuring gauges. Moreover, the effect of feeding speed and rotational speed of a spindle on the surface quality was investigated. Large dispersion of the results was observed, depending on applied measuring gauge. The differences between the results were variable and depended on technological parameters of milling process. During increasing the rotational speed (cutting speed), difference between the results for each gauge also increased. Moreover it was stated that rotational speed of the spindle, and feeding speed have a considerable effect on the surface roughness of pine wood. Multiple regression equations were designated for both measuring gauges and both analyzed roughness parameters.
Twórcy
autor
  • Department of Woodworking Machinery and Basis of Machine Construction, Poznań University of Life Science
autor
  • Department of Woodworking Machinery and Basis of Machine Construction, Poznań University of Life Science
  • Department of Woodworking Machinery and Basis of Machine Construction, Poznań University of Life Science
  • Department of Woodworking Machinery and Basis of Machine Construction, Poznań University of Life Science
autor
  • Department of Woodworking Machinery and Basis of Machine Construction, Poznań University of Life Science
Bibliografia
  • 1. AGUILERA, A., AND MARTIN, P., 2001: Machining qualification of solid wood of Fagus silvatica L. and Picea excelsa L.: cutting forces, power requirements and surface roughness, Holz als Rohund Werkstoff nr 59(6): s. 483–488.
  • 2. ISO 4287:1997. Geometrical product specifications (GPS) - Surface texture: Profile method - Terms, definitions and surface texture parameters. International Organization for Standardization, Geneva, Switzerland.
  • 3. KVIETKOVÁ, M., GAFF, M., GAŠPARÍK, M., KAPLAN, L., AND BARCÍK, Š., 2015a: Surface Quality of Milled Birch Wood after Thermal Treatment at Various Temperatures, BioResources nr 10(4): s.6512-6521. DOI:10.15376/biores.10.4.6512- 6521.
  • 4. KVIETKOVÁ, M., GAŠPARÍK, M., AND GAFF, M., 2015b: Effect of Thermal Treatment on Surface Quality of Beech Wood after Plane Milling, BioResources nr 10(3): s. 4226-4238. DOI:10.15376/biores.10.3.4226 - 4238.
  • 5. ŁĘTOCHA, A., 2017: Badania wpływu wybranych nowych metod filtracji na chropowatość powierzchni wzorcowych, Mechanik nr 03: s. 224-228. DOI: 10.17814/mechanik.2017.3.43.
  • 6. MAGOSS, E., 2008: General regularities of wood surface roughness, Acta Silvatica et Lignaria Hungarica nr 2008(4): s. 81–93.
  • 7. PINKOWSKI, G., KRAUSS, A., PIERNIK, M., AND SZYMANSKI, W., 2016: Effect of thermal treatment on the surface roughness of scots pine (Pinus sylvestris L.)wood after plane milling, BioResources nr 11(2): s. 5181–5189. DOI:10.15376/biores.11.2.5181-5189.
  • 8. POON, C. Y., AND BHUSHAN, B., 1995: Comparison of surface roughness measurements by stylus profiler, AFM and non-contact optical profiler, Wear nr 190(1): s. 76–88.
  • 9. RADHARKRISHNAN, V., 1977: Does the stylus radius affect surface roughness measurements?, Tribology International nr 10(2): s. 101–104. DOI:10.1016/0301- 679X(77)90117-7.
  • 10. SOGUTLU, C., 2010: The effect of the feeding direction and feeding speed of planing on the surface roughness of Oriental beech and Scotch pine woods. Wood Research nr 55(4): s. 67–78.
  • 11. TOMASIK, J., AND RUDZIŃSKI, R., 2005: Wpływ filtrów cyfrowych na wiarygodność pomiarów mikrogeometrii powierzchni porowatych, Pomiary Automatyka Kontrola nr 51: s. 17–20.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-24ad65d6-6fc9-4028-94c7-bb6c0282931d
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