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Improve the Loading Capacity and Stiffness of Hydrostatic Spindle Medium Sized Circular Grinding Machines Based on Simulation and Geometric Parameters of the Bearing

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Advanced Materials

Part of the book series: Springer Proceedings in Materials ((SPM,volume 6))

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Abstract

Loading capacity and stiffness of spindle grinding machine are important features that determine the machining capability and precision of the machine. Characteristics of hydrostatic spindle bearing depend on geometric parameters, oil properties, temperature and oil chamber pressure. The hydrostatic spindle bearing with four high pressure chambers has been designed and manufactured for the 3K12 external circular grinding machine with bearing diameter and length corresponding to 70 mm and 56 mm, respectively. This chapter presents a simulation and experimental results to determine oil viscosity in accordance with the actual geometry bearing parameters in order to achieve the highest loading capacity and stiffness of the bearing. This is the base for determining the characteristics of lubricant oil under the specific machining process and working conditions of the hydrostatic spindle bearing.

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Correspondence to Tuan-Anh Bui .

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Pham, VH., Nguyen, MT., Bui, TA. (2020). Improve the Loading Capacity and Stiffness of Hydrostatic Spindle Medium Sized Circular Grinding Machines Based on Simulation and Geometric Parameters of the Bearing. In: Parinov, I., Chang, SH., Long, B. (eds) Advanced Materials. Springer Proceedings in Materials, vol 6. Springer, Cham. https://doi.org/10.1007/978-3-030-45120-2_45

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