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[1]
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An anomalous effect of steady and unsteady impingement jets on heat transfer coefficient and gradient microstructure in the machining of Ti-3Al-2.5 V alloy
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Journal of Manufacturing Processes,
2024 |
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[2]
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Development of pulse-assisted cryo-micro lubrication architecture for machining of Ti-based alloys: A frugal innovative attempt for a hybrid lubri-cooling technique
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Journal of Manufacturing Processes,
2023 |
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[3]
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Comparison of Various Types of Lubrication During Hard Turning of H13 Tool Steel by Analysing Flank Wear Using ANOVA
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2020 |
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[4]
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Analiza vpliva pulzirajoče visokotlačne asistence hladilno mazalnega sredstva pri struženju titanove zlitine Ti6Al4V
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2019 |
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[5]
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Investigation on Effects of Cutting and Jet Parameters in Turning of AISI 4140 Hardened Alloy Steel
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Materials Science Forum,
2019 |
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[6]
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Performances of time-controlled pulse minimum quantity lubrication in machining of hard to cut material: A brief review
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2019 |
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[7]
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Анализ относительных вынужденных колебаний инструмента и детали при фасонном точении
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2016 |
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[8]
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Математическое моделирование процессов механической обработки как средство управления технологическими параметрами на основе …
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2016 |
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[9]
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ANFIS based Model for Surface Roughness Prediction for Hard Turning with Minimal Cutting Fluid Application
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2016 |
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[10]
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ОПИСАНИЕ ПРОЦЕССА РЕЗАНИЯ НЕЙРОСЕТЕВЫМИ МОДЕЛЯМИ И УПРАВЛЕНИЕ МЕХАНИЧЕСКОЙ ОБРАБОТКОЙ НА ОСНОВЕ НЕЧЕТКОГО …
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2016 |
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[11]
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Comparison of surface roughness and chip characteristics obtained under different modes of lubrication during hard turning of AISI H13 tool work steel.
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IOP Conference Series: Materials Science and Engineering,
2016 |
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[12]
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OPTIMIZATION OF CUTTING PARAMETERS TO IMPROVE SURFACEROUGHNESS OF AL 1070 IN TURNING OPERATION USING TAGUCHI METHOD
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INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCHTECHNOLOGY,
2016 |
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[13]
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APPLICATION OF NUMERICAL SIMULATION AND NEURAL NETWORK MODELS FOR MACHINING PROCESS CONTROL
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International Journal of Pharmacy & Technology,
2016 |
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[14]
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TURNING MACHINABILITY ASSESSMENT OF HARDENED STEEL USING UNCOATED CARBIDE
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2016 |
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[15]
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TURNING MACHINABILITY ASSESSMENT OF HARDENED STEEL USING COATED CARBIDE
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2016 |
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[16]
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МАТЕМАТИЧЕСКОЕ МОДЕЛИРОВАНИЕ И ОПТИМИЗАЦИЯ ПРОЦЕССОВ МЕХАНИЧЕСКОЙ ОБРАБОТКИ КАК СРЕДСТВО УПРАВЛЕНИЯ …
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2015 |
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[17]
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Study on the influence of fluid application parameters on tool vibration and cutting performance during turning of hardened steel
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Engineering Science and Technology, an International Journal,
2015 |
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[18]
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Ti6al4v Titanium Alloy End Milling with Minimum Quantity of Fluid Technique Use
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Materials and Manufacturing Processes,
2015 |
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[19]
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МАТЕМАТИЧЕСКОЕ МОДЕЛИРОВАНИЕ И ОПТИМИЗАЦИЯ ПРОЦЕССОВ МЕХАНИЧЕСКОЙ ОБРАБОТКИ КАК СРЕДСТВО УПРАВЛЕНИЯ …
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2015 |
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[20]
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ESTUDO DA APLICAÇÃO DE MÍNIMA QUANTIDADE DE FLUIDO NO FRESAMENTO DE ACABAMENTO DA LIGA Ti-6Al-4V
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Repositório Institucional UNESP,
2015 |
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[21]
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Estudo da aplicação de mínima quantidade de fluido no fresamento de acabamento da liga Ti-6Al-4V
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Repositório Institucional UNESP,
2015 |
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[22]
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Управление тепловыми параметрами процесса механической обработки с использованием численного моделирования их тепловых зависимостей
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2014 |
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[23]
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Evaluation of cutting fluid with nanoinclusions
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Journal of Nanotechnology in Engineering and Medicine,
2013 |
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[24]
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SIMULATION OF SURFACE MILLING OF HARDENED AISI4340 STEEL WITH MINIMAL FLUID APPLICATION USING ARTIFICIAL NEURAL NETWORK.
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Advances in Production Engineering & Management,
2012 |
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[25]
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Simulation of surface milling of hardened AISI4340 steel with minimal fluid application using artificial neural network
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Advances in Production Engineering & Management,
2012 |
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