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The article discusses the relationship between energy quality technologies cutting and their environmental friendliness. Based on the energy analysis shows that energy consumption in the individual technological process is connected with the cutting power and power loss, which form the environmental indicators of the cutting process and reduce its energy efficiency. In addition, it is shown that at implementation of technological processes on the equipment, electrical systems are AC systems the implementation of the cutting process occurs when excessive consumption of currents. The article presents the results of studies on the energy efficiency of cutting processes, definition of the complex influence of cutting processes on the environment and humans, the formation of ways of improving environmental and energy performance quality of these processes.
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Rocznik
Tom
Strony
70--75
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
autor
- Poznan University of Logistics, Estkowskiego 6, 61-755 Poznan, Poland
autor
- Moscow State University of Technology ”STANKIN”, Russia
autor
- Moscow State University of Technology ”STANKIN”, Russia
autor
- Moscow State University of Technology ”STANKIN”, Russia
Bibliografia
- [1] Kapitanov A.V., Characteristics of the Multi – product Manufacturing, Procedia Engineering, 150, 832– 836, 2016.
- [2] Shvartsburg L., Zaborowski T., Cyplik P., Situation of costs in the logistik process of enterprises, LogForum, 13, 4, 495–506, 2017.
- [3] Egorov S.B., Kapitanov A.V., Loktev D.A., Modern methods and technological solutions for effective of gear wheels, Materials Science Forum Submitted, 870, 397–403, 2016.
- [4] Shvartsburg L., Butrimova E., Yagolnitser O., Quantitative evaluation of the effectiveness of best available technologies of form-shaping, MATEC Web of Conferences, 129, 01027, 1–4, 2017, DOI: https://doi.org/10.1051/matecconf/201712901027.
- [5] Ivanova N.A., Ryabov S.A., Shvartsburg L.E., The role of information technology in rotor balancing, Russian Engineering Research, 36, 3, 235–238, 2016.
- [6] Golubkov Yu.V., Ermolaeva N.V., Shwarzburg L.E., Nitrogen-bearing organic components of industrial oils, Chemistry and Technology of Fuels and Oils, 52, 1, 90–94, 2016.
- [7] Egorov S.B., Kapitanov A.V., Mitrofanov V.G., Shvartsburg L.E., Ivanova N.A., Ryabov S.A., Modern digital manufacturing technical support centers, IEJME – Mathematics Education, 11, 7, 2213–2225, 2016.
- [8] Shvartsburg L.E., Ivanova N.A., Ryabov S.A., Zaborowski T., Chemical contaminations in a process of polishing with an implementation of liquid LCTS, Life Science Journal, 11, 10s, 228–230, 2014.
- [9] Rodriguez P.E., Shvartsburg L.E., Artemyeva M.S., Methodological design and commissioning of an experimental stand for the study of the spread of harmful substances in the air of work areas during the processing of metals in industry, Procedia Engineering, 206, 588–593, 2017.
- [10] Shvartsburg L.E., Butrimova E.V., Yagolnitser O.V., Energy efficiency and ecological safety of shaping technological processes, Procedia Engineering, 206, 1009–1014, 2017.
- [11] Gvozdkova S.I., Shvartsburg L.E., Analysis of sources and methods for reducing noise by minimizing vibrations of engineering technological processes, Procedia Engineering, 206, 958–964, 2017.
- [12] Hamed H.H. Aly, El-Arini M.M., Youssef M.T., Proposed Voltage Ride through Compensators for Improving Power System Performance, International Journal of Energy and Power Engineering, 2, 2, 29–36, 2013.
- [13] Egorov S.B., Kapitanov A.V., Mitrofanov V.G., Shvartsburg L.E., Ivanova N.A., Ryabov S.A., Formation of the integral ecological quality index of the technological processes in machine building based on their energy efficiency, International Journal of Environmental and Science Education, 11, 11, 4065– 4978, 2016.
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-2f796b11-7efe-46e5-aaa8-2c923ec7cd48