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The physical modelling of high speed broaching of the heat-resistant steels for studies surface layer quality

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EN
Abstrakty
EN
The main idea of the work is to create a physical model of high speed broaching heat-resistant materials is used to study the parameters of the surface layer quality. Modelling is a method of mediated cognition, in which the object under study is in some correspondence with the model, and the object-model is capable in some way or another to replace the original at some stages of the cognitive process. Physical modelling is primarily distinguished by the fact that studies are conducted on models with physical similarity, i.e. preserving completely (or at least partially) the nature of the phenomena. The work of the broach can be likened to the work of a number of planning cutter displaced relative to each other by a small amount, which is called lifting (feed per tooth). Therefore, for experimental work, a planning cutter of a special geometric was designed and manufactured – a physical model of a broach, in which geometric, mechanical and dynamic similarity is realized. The article also presents an experimental justification for the use of the created physical model in the study of the surface quality parameters of the, tab grooves of turbine and compressors disks made of heat-resistant materials.
Twórcy
autor
  • Gdynia Maritime University, Faculty of Marine Engineering Morska Street 81-87, 81-225 Gdynia, Poland tel.: +48 58 5586434, +48 58 5586331
Bibliografia
  • [1] Dvirna, O., Analysis of applied technologies of surface treatment locks grape compressor and turbine, Scientific Letters of Rzeszow University of Technology, Mechanics, pp. 433-440, Rzeszow 2018.
  • [2] Dvirnaya, O. Z., Shumilov, A. P., Research of the quality of the machined groove surface in samples of steel EP517, Actual problems of mechanical engineering: Materials of the International Conference, NUK, pp. 137-138, Mykolaiv 2011.
  • [3] Dvirnaya, O. Z., Shumilov, A. P., Modern methods of processing the locking grooves in the GTЕ, Actual problems of engineering: Materials of the International Conference, NUK, pp. 112-115, Mykolaiv 2011.
  • [4] Vedmedovsky, V. A., Problems of improving the quality of the surface layer during high-speed broaching. Increasing the efficiency of broaching, Riga Polytechnic Institute, pp. 164-174, Riga 1986.
  • [5] Zemlyansky, V. А., Lukshin, B. V., Processing of high-strength materials with tools with self-rotating cutters , Technique, Kiev 1980.
  • [6] Katsev, P. G., Processing by broaching, Handbook, Mashinostroenie, Moscow 1986.
  • [7] Margulis, M. M., Tverskoy, D. K., Vakurova, V. A. et. al., Broaching tool: calculation, design, manufacturing technology, Metallurgy, Chelyabinsk 1992.
  • [8] Wulf, A. M., Metal cutting, Mechanical Engineering, Leningrad 1973.
  • [9] Granovsky, G. I., Granovsky, V. G., Cutting of metals, A textbook for the machine industry and priborostr. Specialist. Universities, Higher School, Moscow 1985.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9a8d9498-c545-4598-9817-2bdbdf8d7f30
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