Academic literature on the topic 'Твердосплавна пластинка'
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Journal articles on the topic "Твердосплавна пластинка"
Trubachev, E. S., K. V. Bogdanov, and G. S. Gorbunov. "New Schemes for Final Edge Machining of Worm Threads." Bulletin of Kalashnikov ISTU 21, no. 4 (February 25, 2019): 35. http://dx.doi.org/10.22213/2413-1172-2018-4-35-42.
Full textПчёлкин, Vyacheslav Pchelkin, Дуюн, and Tatyana Duyun. "EMPIRICAL MODELS DURABILITY CARBIDE INSERTS IN TURNING A CORROSION-RESISTANT HEAT-RESISTANT STEEL." Bulletin of Belgorod State Technological University named after. V. G. Shukhov 1, no. 12 (November 11, 2016): 126–31. http://dx.doi.org/10.12737/22824.
Full textМокрицкий, Борис, Boris Mokritskiy, Татьяна Усова, Tat'yana Usova, Ольга Шакирова, Ol'ga Shakirova, Геннадий Усанов, and Gennadiy Usanov. "INVESTIGATION OF OUTPUT PARAMETER CORRELATION OF CUTTING ENGINEERING PROCESS WITH MASS HARD-ALLOY REPLACEABLE METAL CUTTING PLATES." Bulletin of Bryansk state technical university 2019, no. 9 (October 7, 2019): 36–41. http://dx.doi.org/10.30987/article_5d9317b2a4fae2.02370100.
Full textПчелкин, Вячеслав, Vyacheslav Pchelkin, Татьяна Дуюн, and Tatyana Duyun. "WEAR RESISTANCE CARBIDE INSERTS WITH MULTI LAYER COATINGS IN VARIOUS TECHNOLOGICAL CONDITIONS TURNING HEAT-RESISTANT STEEL." Bulletin of Belgorod State Technological University named after. V. G. Shukhov 3, no. 1 (January 11, 2018): 94–100. http://dx.doi.org/10.12737/article_5a5dbf0a212868.61342001.
Full textLasitsa, A. M., V. G. Churankin, T. A. Churankina, and R. O. Dzivulskiy. "The effect of TiN coating on stress distribution in carbide cutting inserts in treatment of austenitic stainless steels." Omsk Scientific Bulletin, no. 172 (2020): 9–12. http://dx.doi.org/10.25206/1813-8225-2020-172-9-12.
Full textMokrickiy, Bori, Dmitriy Savin, Yana Konyuhova, and Anna Morozova. "CUTTING OUTPUT PARAMETER EFFECTIVENESS CONTROL BASED ON ANALYSIS OF MASS-DIMENSIONAL PARAMETERS OF REPLACEABLE HARD-ALLOY PLATES." Bulletin of Bryansk state technical university 2019, no. 12 (December 19, 2019): 33–41. http://dx.doi.org/10.30987/1999-8775-2019-2019-12-33-41.
Full textArtamonov, Evgeny, Andrey Tveryakov, and Anton Shtin. "Determination of temperature of maximum operability of replaceable cutting hard-alloy inserts based on study of electromagnetic properties change." Metal Working and Material Science 23, no. 1 (March 15, 2021): 33–44. http://dx.doi.org/10.17212/1994-6309-2021-23.1-33-44.
Full textVereschaka, A., Yu Bublikov, N. Sitnikov, C. Sotova, and I. Sadov. "Investigation of wear and diffusion processes on rake faces of carbide inserts with Ti-TiN-(Ti,Al,Si)N composite nanostructured coating." Quality. Innovation. Education, no. 7 (2018): 59–65. http://dx.doi.org/10.31145/1999-513x-2018-7-59-65.
Full text"Использование ультрадисперсных порошковых добавок для получения твердосплавных рабочих элементов буровой техники Севера." ARCTIC AND SUBARCTIC NATURAL RESOURCES, May 29, 2019, 123–30. http://dx.doi.org/10.31242/2618-9712-2019-24-1-123-130.
Full textDissertations / Theses on the topic "Твердосплавна пластинка"
Чміль, Роман Євгенович. "Свердло з напайною твердосплавною пластиною." Master's thesis, Київ, 2018. https://ela.kpi.ua/handle/123456789/26719.
Full textThe forms of the cutting parts of the spiral drills, which are used in modern mechanical engineering, are considered. The changes of the front, rear angles and the thickness of the cutting layer, for drills with a radius shape of the cutting part and the drill with an angle with the apex along the cutting edge. It is established that the drill with a radius shape of the cutting part with a radius at an apex of 8 mm has the most favorable geometric parameters. A technological tool for manufacturing a drill with optimization of its production has been developed. A startup project of the idea of this drill was developed
Хижняк, В. Г., В. Ю. Штойка, Д. А. Побережний, Г. Ю. Калашніков, О. О. Голишевський, Надія Анатоліївна Харченко, Надежда Анатольевна Харченко, and Nadiia Anatoliivna Kharchenko. "Карбонітридні багатошарові покриття на твердому сплаві ВК6." Thesis, Сумський державний університет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/48025.
Full textСігова, Валентина Іванівна, Валентина Ивановна Сигова, Valentyna Ivanivna Sihova, Надія Анатоліївна Курило, Надежда Анатольевна Курило, and Nadiia Anatoliivna Kurylo. "Гафнирование твердосплавных режущих пластин." Thesis, Издательство СумГУ, 2004. http://essuir.sumdu.edu.ua/handle/123456789/23442.
Full textДегула, Андрій Іванович, Андрей Иванович Дегула, Andrii Ivanovych Dehula, Станіслав Вікторович Марченко, Станислав Викторович Марченко, Stanislav Viktorovych Marchenko, Віктор Гаврилович Хижняк, Виктор Гаврилович Хижняк, and Viktor Havrylovych Khyzhniak. "Підвищення експлуатаційних властивостей твердосплавних непереточуваних пластин." Thesis, Приазовський державний технічний університет, 2012. http://essuir.sumdu.edu.ua/handle/123456789/36821.
Full textТвердые сплавы с защитными покрытиями достаточно широко используются для повышения срока эксплуатации инструмента. Использование инструмента с покрытиями при значительно больших за известные скоростях резания и подачах приводит к значительной экономии инструментальных материалов, а также сопровождается ростом производительности труда. При цитировании документа, используйте ссылку http://essuir.sumdu.edu.ua/handle/123456789/36821
Hard alloys with protective coatings widely used to improve the life of the tool. Use tools with coatings at much greater than the known cutting speeds and feeds leads to significant savings in tool materials, and accompanied by increased productivity. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/36821
Пониделко, А. А., Евгения Владимировна Басова, С. С. Кононенко, and Сергей Семенович Добротворский. "Технологические проблемы изготовления лопаток с учетом их переменной жесткости." Thesis, Национальный технический университет "Харьковский политехнический институт", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/44200.
Full textЗалога, Вільям Олександрович, Вильям Александрович Залога, Viliam Oleksandrovych Zaloha, Костянтин Олександрович Дядюра, Константин Александрович Дядюра, Kostiantyn Oleksandrovych Diadiura, Олександр Володимирович Івченко, et al. "Нормативне забезпечення неруйнівного експрес-методу оцінювання якості лез різального інструменту." Thesis, Сумський державний університет, 2017. http://essuir.sumdu.edu.ua/handle/123456789/66758.
Full textЦенцеря, Анастасія Юріївна, Анастасия Юрьевна Ценцеря, Anastasiia Yuriyivna Cencerya, Павло Васильович Кушніров, Павел Васильевич Кушниров, Pavlo Vasylovych Kushnirov, Борис Анатолійович Ступін, Борис Анатольевич Ступин, and Borys Anatoliiovych Stupin. "Повышение эффективности чернового торцового фрезерования." Thesis, Юго-Западный государственный ун-т, 2015. http://essuir.sumdu.edu.ua/handle/123456789/43092.
Full textСтатья посвящена конструкции торцовой фрезы для тяжелых условий работы. Предложенная торцовая фреза имеет высокую жесткость. Высокая жесткость обеспечивается большим диаметром кассеты.
The research is devoted to the design of face milling cutter for heavy-duty work. The proposed face milling cutter has high rigidity. This high rigidity is provided by a large diameter of cartridge.
Таран, Євгеній Сергійович. "Оправка розточна збірна." Bachelor's thesis, КПІ ім. Ігоря Сікорського, 2019. https://ela.kpi.ua/handle/123456789/31456.
Full textThe purpose of the diploma project is the design of the mandrel of the blade assembly, which is used for the treatment of internal and external cylindrical surfaces, drilling a hole, rolling the grooves and triming the ends. This tool is equipped with replaceable carbide plates, which are securely mounted in the tool casing. The structure of the tools for processing various types of surfaces was also analyzed, a working drawing and a 3D model of the tool were created, a production technology was developed and cutting patterns were calculated, a technological device for milling the landing surfaces under a solid alloy plate was selected and calculated, the control program for the CNC machine and visualization of the processing process are presented.
Повх, Степан Вікторович, and S. V. Povkh. "Дослідження вібраційної усталеності точіння валів із сталі 60 різцями з твердосплавними непереточуваними пластинами." Master's thesis, 2020. http://elartu.tntu.edu.ua/handle/lib/32100.
Full textThe Master Qualification Paper deals with the research results of turning vibration stability conditions in lathe machining of steel 60 shafts by cutters with disposable hard alloy plates. The investigation goal lies in the process of turning machining increasing effectiveness on the base of providing of such process vibration stability in machining. The qualification paper analyzes present researches of machine dynamical characteristics in the process of cutting influencing significantly the equipment result work capacities as well as scientific papers dealing with the dynamical characteristic of the turning process. The technological calculations of the standard steel 60 shaft machining were provided allowing receiving the best shape forming schemes of the given work piece and to chose the basic machine tool model for machining. On the base of variant selection of rational structure decision of lathe the kinematic design of the main motion drive was carried out. In this way the speed box design with a spindle unit was developed. In accordance with the research goal it is shown that the research method dealing with the 8 vibration stability needs the dynamical calculation of amplitude and phase characteristics (APFC) to be carried out analizing the transfer function of an open system. The qualification paper is exemplified with the mathematical model development concerning the determination of amplitude characteristics of the work part – shaft- longitudinal turning. This model provides graphical dependances of real and imaging parts of dynamical characteristic as well as amplitude-frequency and phase-frequency characteristics calculated in accordance with the computer program developed in the paper. Based on the presented model of the longitudinal shaft turning APFC development it is shown that to provide the steel 60 shaft turning process vibration stability it is advisible to set the optimic machining regimes in condition of rational operation of cutting elements equipped with the Disposable hard alloy plates in 50…80 m/min cutting speeds. At the same time the restrictions towards the wear of the face of the plate on the rear surface are of the 0,6…0,7 mm value. The paper research is also conducted with original program computer calculations. The qualification paper contains the developed labor protection and life safety measures.
Вступ. Аналітичний розділ. Дослідно-проектний розділ. Науково-дослідна частина. Охорона праці та безпека в надзвичайних ситуаціях. Загальні висновки. Бібліографія. Додатки.