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The influence of technical characteristics of wood milling tools on its wear performance.

Bendikienė, Regita ; Kauno technologijos universitetas. Keturakis, Gintaras ; Kauno technologijos universitetas.

Journal of Wood Science. Tokyo : Springer, 2017, vol. 63, iss. 00. p. 1-9. [Recenzuojamas leidinys]

ISSN: 1435-0211.

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  • Antraštė:
    The influence of technical characteristics of wood milling tools on its wear performance.
  • Publikacijos rūšis: Straipsnis DB Thomson Reuters Web of Science (S1).
  • Mokslo kryptis: Mechanikos inžinerija (09T) ; Medžiagų inžinerija (08T).
  • Autorius(-iai): Bendikienė, Regita ; Kauno technologijos universitetas.
  • Keturakis, Gintaras ; Kauno technologijos universitetas.
  • Leidinyje: Journal of Wood Science. Tokyo : Springer, 2017, vol. 63, iss. 00. p. 1-9. [Recenzuojamas leidinys]
  • Identifikatorius(-iai): ISSN: 1435-0211.
  • Kalba: Anglų
  • Temos / reikšminiai žodžiai [angl.]: wood milling ; oak wood ; wear of tool ; wear resistance.
  • Santrauka [angl.]: Influence of technical and chemical characteristics of industrial wood milling tools on its wear was analysed. Four tools of different manufacturers were subjected to the research. Lithuanian oak wood was chosen for the research as a reference material. Behaviour of cutting tools was assessed on the adopted industrial thickness planer SR3-6 with cutting speed of 31 m/s. Wear performance was evaluated on milling the specimens until 3200 m of true cutting length. Summarizing achieved results the following can be stated: chemical composition of tool and heat treatment schedule has great impact on the tool edge wear. The highest wear resistance was reached on testing tools made of CT01M-LA2; tools made of high-alloyed tool steel 8X6HФT have presented highest cutting edge radius and edge recession in each type of test comparing with tools made of high speed tool steels Z80WCV 18-04-01/18-0-1 and HS 18-0-1 respectively. All these tools are suitable for oak wood processing. The high alloyed tool steel shows similar wear performance as high speed tool steels.
  • Referuojamos DB: SpringerLink ; Science Citation Index Expanded (Web of Science).
  • Naudotos literatūros skaičius: 25.
  • Išteklius: eLABa PDB talpykla
  • eLABa ID: 23302328.

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