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10
Issue
vol 67 / October, 2024
Article

DOI 10.17586/0021-3454-2022-65-12-886-894

UDC 921.01

MODERN METHODS OF TESTING MATERIALS FOR WEAR

L. V. Efremov
St. Petersburg State Engineering Institute, Department of Abrasive Technologies; Professor


A. V. Tikalov
Peter the Great St. Petersburg Polytechnic University, Saint Petersburg, 195251, Russian Federation; JSC “Compressor”, Saint Petersburg, 194044, Russian Federation; Postgraduate; Head of Section


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Abstract. On the basis of computational and experimental studies, topical problems of choosing the most effective tools for determining the wear of materials by the method of artificial bases are considered and solved. The main attention is paid to the problems of ensuring the accuracy, reliability and availability of tools, taking into account the required range of linear and volumetric wear when using friction pairs with constant and variable specific pressure.
Keywords: pressure, disk, wear, wear resistance, material, tribometer, sample, evaluation, friction, chord

References:
  1. Standard Test Method for Ranking resistence of Materials to Sliding Wear Using Block-on-ring Wear Test, norm G77–05 (Reapproved 2010), ASTM International, United States.
  2. https://nanovea.com/block-on-ring-sliding-wear-evaluation/.(in Russ.)
  3. Khrushchоv M.M., Berkovich E.S. Opredelenie iznosa detaley mashin metodom iskusstvennykh baz (Determination of Wear of Machine Parts by the Method of Artificial Bases), Moscow, 1959, 217 p. (in Russ.)
  4. Khrushchov M.M. Treniye, iznos i mikrotverdost' materialov: Izbrannyye raboty (Friction, Wear and Microhardness of Materials: Selected Works), Moscow, 2011, 510 р. (in Russ.)
  5. Efremov L.V. Problemy upravleniya nadezhnostno-oriyentirovannoy tekhnicheskoy ekspluatatsiyey mashin (Problems of Managing Reliability-Oriented Technical Operation of Machines), St. Petersburg, 2015, 206 р. (in Russ.)
  6. Efremov L.V., Tikalov A.V. Breki A.D. Journal of Instrument Engineering, 2016, no. 8(59), pp. 671–676. (in Russ.)
  7. Efremov L.V., Tikalov A.V. Journal of Instrument Engineering, 2022, no. 1(65), рр. 58–63. (in Russ.)
  8. Efremov L.V., Tikalov A.V. Journal of Instrument Engineering, 2020, no. 2(63), pp. 163–169. (in Russ.)