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Документ Відкритий доступ Design and technological support for the manufacture of “Shaft Bearing Housing”(Igor Sikorsky Kyiv Polytechnic Institute, 2022) Ali Adham Ali Mohamed; Subin, AnatoliiDesign of work piece structure of shaft bearing housing deals economic calculation of new manufacturing part is already produce and the idea is to save money and increase production technological process implementation and to make manufacturing process better to reduce machining rejection, all mechanical work and design process standard operation to be done on it during the production process and all design activities covering this process.Документ Відкритий доступ Design and Technological Support for the Production of the "Jaw" Part(Igor Sikorsky Kyiv Polytechnic Institute, 2023) Hakim, Zyad; Subin, AnatoliiThe explanatory note for my bachelor's diploma project titled "Design and Technological Provision of Jaw Part Manufacturing" comprises of 70 A4-size pages and includes 33 illustrations, 19 tables, and 3 appendices. These appendices present the processing routes and operations, and the control program code for the CNC machine. Throughout the project, I have referenced 59 literature sources, including manuals, guides, handbooks, catalogs, standards, articles, and scientific research. The graphical part of the project consists of 8 A1-size sheets, showcasing various aspects such as the static study results, detailed drawings, 3D representations of the part and the workpiece, graphical depictions of the technological transitions, and their visualization in the CAM system. Furthermore, assembly drawings of the machine devices and technological transition schemes for two operations are included. Within the diploma project, I have addressed the following aspects: • I explored the issue of deformation of the workpiece when machining. • I proposed an alternative solution to a specific problem, highlighting its advantages and drawbacks. • I designed a 3D model of the jaw part and provided its detailed drawings. • I conducted an analysis of the part's functional purpose and working conditions within the assembly. • I performed a brief analysis of the manufacturability of the part's design. • I selected the appropriate method for manufacturing the workpiece, developed a 3D model of the workpiece, and created its detailed drawings. • I justified the selection of technological foundations for all the operations within the manufacturing process. • I devised the operational technological process for manufacturing the jaw part. • I determined the required allowances for all the machined surfaces of the workpiece. • I standardized the technological operations for producing the part. • I developed the necessary technological documentation, including processing routes, and operations. • I designed the construction of the machine device and its 3D model, conducting all the necessary calculations to determine the required clamping force. • I calculated the manufacturing cost of the part. The attached annex pages at the end of the diploma project include a comprehensive report of the static study conducted on the jaw part using Fusion 360. The study4 focused on assessing the structural weaknesses of the part during the drilling of tapped countersunk holes F5 and F6. The study report provides valuable insights into the deformations that occurred and their visual representations. This diploma project aims to showcase the extensive research, design, and technological considerations involved in the manufacturing process of the jaw part. It presents a comprehensive analysis of various aspects, along with practical solutions and innovative approachesДокумент Відкритий доступ Manufacturing Process Planning for the Part "Bushing"(Igor Sikorsky Kyiv Polytechnic Institute, 2024) Emir Can Yaşa; Subin, AnatoliiDiploma Project on "Manufacturing Process Planning for the part “Bushing” on CNC Machine Platforms" The Diploma project comprises both textual and graphical components. The graphical portion is rendered on four A1 sheets and includes 3-D models and detailed drawings of parts and blanks, schematics for the technological transitions of operation 005 in the manufacturing process of the "bushing," and assembly drawings for the devices used in operations 005. The explanatory note is divided into two sections: technological and design. It also encompasses: - 34 figures - 6 tables At the conclusion of the course work, there is a list of references and appendices. These include the operational technological process and sketch maps. This paper offers a comprehensive examination of machining and milling processes, delving into the fundamental principles and methodologies that are vital to these essential manufacturing techniques. Beginning with an overview, the paper highlights the processes and benefits of chrome plating, discussing its role in enhancing surface hardness, reducing friction, and increasing corrosion resistance in machined parts.