Design Optimization of High-Speed Motorized Spindle

  IJETT-book-cover  International Journal of Engineering Trends and Technology (IJETT)          
© 2019 by IJETT Journal
Volume-67 Issue-7
Year of Publication : 2019
Authors : K.Kiran Kumar, S.Sridhar ,P.Avinash, Sura Sandeep
DOI :  10.14445/22315381/IJETT-V67I7P222


MLA Style: K.Kiran Kumar, S.Sridhar ,P.Avinash, Sura Sandeep"Design Optimization of High-Speed Motorized Spindle" International Journal of Engineering Trends and Technology 67.7 (2019): 111-114.

APA Style:K.Kiran Kumar, S.Sridhar ,P.Avinash, Sura Sandeep(2019). "Design Optimization of High-Speed Motorized Spindle"International Journal of Engineering Trends and Technology, 67(7), 111-114.

In today's booming industrial development, with multi-product design and production cycle reduction, high-speed manufacturing technology has been widely adopted by manufacturers. With the development of science and technology, the high frequency spindle became more and more the place of ordinary mechanical spindle, and the numerical control machine was used very much. The engineering quality of the high-precision parts depends heavily on the dynamic performance of the entire operating system, which is determined by the interrelated dynamics of the mechanical structure of the machine tool and the cutting process. This performance is of great importance in advanced manufacturing processes and high precision. The most modern in the main circulation units of the machine tools is the focus on the automatic rotary units with high speed motors and high performance. In this letter, high-speed spindle analysis is designed and tested in specific load conditions. The spindle used in this letter is used in the milling machine. 3D modelling is designed in Pro / Engineer. Materials used in steel spindle. In this message, different spindle materials are analyzed. The aluminium alloy is replaced by 6061 and 7075 steel. When replacing steel with aluminium alloys, the weight of the spindle decreases. Structural and dynamic analyzes are performed using Ansys. A conditional analysis is also performed to determine frequencies.

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FEA; ANSYS; Thermal Deformation; Failure;