Academic literature on the topic 'Торцева зона'
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Journal articles on the topic "Торцева зона"
Fialko, N. M., V. G. Prokopov, S. O. Alioshko, M. Z. Abdulin, K. V. Rokitko, O. E. Maletska, E. I. Milko, N. M. Olkhovska, A. Regragi, and A. O. Evtushenko. "Компьютерное моделирование течения в микрофакельных горелочных устройствах с асимметричной подачей топлива." Scientific Bulletin of UNFU 28, no. 8 (October 25, 2018): 117–21. http://dx.doi.org/10.15421/40280823.
Full textФомін, О. В., А. О. Ловська, С. С. Сова, and А. С. Литвиненко. "Дослідження напруженого стану несучої конструкції напіввагона при розморожуванні в ньому вантажу." ВІСНИК СХІДНОУКРАЇНСЬКОГО НАЦІОНАЛЬНОГО УНІВЕРСИТЕТУ імені Володимира Даля, no. 1(271) (February 8, 2022): 53–57. http://dx.doi.org/10.33216/1998-7927-2022-271-1-53-57.
Full textZhuk, V. M., O. V. Verbovskiy, I. Yu Popadiuk, and I. I. Matlai. "Основні технологічні параметри реалізації аеробного біокомпостування осадів стічних вод." Scientific Bulletin of UNFU 28, no. 11 (December 27, 2018): 91–95. http://dx.doi.org/10.15421/40281117.
Full textAliiev, I. S., L. V. Tagan, A. D. Samoglyadov, and K. D. Makhmudov. "Комбинированное обратно-прямое выдавливание полых конических деталей." Обробка матеріалів тиском, no. 2(49) (December 22, 2019): 98–105. http://dx.doi.org/10.37142/2076-2151/2019-2(49)98.
Full textKensytskiy, O. G., and D. I. Hvalin. "A QUASI-THREE-DIMENSIONAL MODEL OF ELECTROMAGNETIC FIELD IN THE TURBO-GENERATOR END ZONE." Praci Institutu elektrodinamiki Nacionalanoi akademii nauk Ukraini 2017, no. 48 (November 1, 2017): 59–64. http://dx.doi.org/10.15407/publishing2017.48.059.
Full textKensytskiy, O. G., V. A. Kramarskiy, K. O. Kobzar, and D. I. Hvalin. "STUDY OF EFFICIENCY THE DESIGN OF A STATOR CORE END ZONE OF TURBOGENERATOR." Praci Institutu elektrodinamiki Nacionalanoi akademii nauk Ukraini 2018, no. 50 (July 18, 2018): 56–62. http://dx.doi.org/10.15407/publishing2018.50.056.
Full textKensytskyi, O. G., and D. I. Hvalin. "THE END ZONE TURBO GENERATOR ELECTROMAGNETIC FIELD FOR CHANGES THE REACTIVE LOAD." Tekhnichna Elektrodynamika 2018, no. 01 (January 15, 2018): 62–68. http://dx.doi.org/10.15407/techned2018.01.062.
Full textVaskovskyi, Yu M., and S. S. Tsivinskiy. "THREE DIMENSIONAL MATHEMATICAL MODEL OF ELECTROMAGNETIC PROCESSES IN THE END ZONE OF THE TURBOGENERATOR ROTOR." Tekhnichna Elektrodynamika 2016, no. 1 (January 22, 2016): 34–39. http://dx.doi.org/10.15407/techned2016.01.034.
Full textНескоромных, Вячеслав Васильевич, Павел Геннадьевич Петенев, Марина Сергеевна Попова, Игорь Андреевич Комаровский, Антон Евгеньевич Головченко, and Баочанг Лиу. "ГИДРОДИНАМИКА ПРИ БУРЕНИИ ИМПРЕГНИРОВАННЫМ ПОРОДОРАЗРУШАЮЩИМ ИНСТРУМЕНТОМ С ЭКСЦЕНТРИСИТЕТОМ РЕЖУЩЕЙ ЧАСТИ ТОРЦА МАТРИЦЫ." Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 331, no. 11 (November 16, 2020): 176–85. http://dx.doi.org/10.18799/24131830/2020/11/2899.
Full textKensytskiy, O. G., V. A. Kramarskiy, K. O. Kobzar, and D. I. Hvalin. "STUDY OF DISTRIBUTION THE ELECTROMAGNETIC FIELD AND TEMPERATURE IN A STATOR CORE END ZONE OF TURBOGENERATOR." Praci Institutu elektrodinamiki Nacionalanoi akademii nauk Ukraini 2018, no. 51 (October 24, 2018): 47–53. http://dx.doi.org/10.15407/publishing2018.51.047.
Full textDissertations / Theses on the topic "Торцева зона"
Мілих, Володимир Іванович, and Олександр Іванович Височин. "Тестовий розрахунок тривимірного магнітного поля турбогенератора за програмою MAXWELL 11." Thesis, НТУ "ХПІ", 2011. http://repository.kpi.kharkov.ua/handle/KhPI-Press/33252.
Full textКлименко, Віталій Григорович. "Удосконалення процесу плоского торцевого шліфування за рахунок управління параметрами зони контакту круга з деталлю." Thesis, Полтавський національний технічний університет ім. Юрія Кондратюка, 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/29297.
Full textThe thesis for the degree of candidate of technical sciences, specialty 05.03.01 – machining processes, machines and tools. – National Technical University "Kharkiv Polytechnic Institute", Kharkiv, 2017. The dissertation is devoted to improvements in flat face grinding process due to controlling the parameters of contact zone between grinding wheel and workpiece that directly affect thermal stress reduction in the processing zone. For this purpose: Using the approach of analytic geometry and geometric computer-aided modelling and simulation, the linear parameters and the area of contact zone between wheel working surface and workpiece are analysed and the dependences for their determination are obtained. This has made it possible to propose methods of grinding, based on controlling of spindle axis inclination for the purpose of regulation of values of such parameters of grinding process as concavity, height of residual ridges and area of the contact between wheel working surface and workpiece. Through 3D modelling and simulation of the systems regarding the process of dressing abrasive wheels with diamond dressers and vibration grinding, the possibility of providing the workability of diamond dressers made of synthetic polycrystalline diamond at the level of natural diamonds and the intensification of self-sharpening diamond grains is proved that contributes significantly to the control of the parameters of contact zone between grinding wheel and workpiece. On the basis of the analysis of obtained features and dependences of controlling of parameters of the contact zone between wheel working surface and workpiece, the original technical solutions in order to enhance the efficiency of flat face grinding process by means of improving the factors affecting its temperature decrease in grinding zone are proposed.
Клименко, Віталій Григорович. "Удосконалення процесу плоского торцевого шліфування за рахунок управління параметрами зони контакту круга з деталлю." Thesis, НТУ "ХПІ", 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/29296.
Full textThe thesis for the degree of candidate of technical sciences, specialty 05.03.01 – machining processes, machines and tools. – National Technical University "Kharkiv Polytechnic Institute", Kharkiv, 2017. The dissertation is devoted to improvements in flat face grinding process due to controlling the parameters of contact zone between grinding wheel and workpiece that directly affect thermal stress reduction in the processing zone. For this purpose: Using the approach of analytic geometry and geometric computer-aided modelling and simulation, the linear parameters and the area of contact zone between wheel working surface and workpiece are analysed and the dependences for their determination are obtained. This has made it possible to propose methods of grinding, based on controlling of spindle axis inclination for the purpose of regulation of values of such parameters of grinding process as concavity, height of residual ridges and area of the contact between wheel working surface and workpiece. Through 3D modelling and simulation of the systems regarding the process of dressing abrasive wheels with diamond dressers and vibration grinding, the possibility of providing the workability of diamond dressers made of synthetic polycrystalline diamond at the level of natural diamonds and the intensification of self-sharpening diamond grains is proved that contributes significantly to the control of the parameters of contact zone between grinding wheel and workpiece. On the basis of the analysis of obtained features and dependences of controlling of parameters of the contact zone between wheel working surface and workpiece, the original technical solutions in order to enhance the efficiency of flat face grinding process by means of improving the factors affecting its temperature decrease in grinding zone are proposed.
Book chapters on the topic "Торцева зона"
Хвалін, Денис. "МУЛЬТИФІЗИЧНЕ МОДЕЛЮВАННЯ ТЕПЛОВИХ ПРОЦЕСІВ У ТОРЦЕВІЙ ЗОНІ ПОТУЖНОГО ГЕНЕРАТОРА." In Сучасний стан проведення наукових досліджень у IT-технологіях, галузях електроніки, інженерії, нанотехнологіях та транспортній сфері (2nd ed.). 2nd ed. European Scientific Platform, 2021. http://dx.doi.org/10.36074/csriteenat.ed-2.08.
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