A STUDY ON THE THERMAL CHARACTERISTICS OF THE GRINDING MACHINE APPLIED HYDROSTATIC BEARING

Author:

Kim Bo-Sung1,Bae Gyeong-Tae1,Kim Gwi-Nam1,Moon Hong-Man2,Noh Jung-Pil1,Huh Sun-Chul1

Affiliation:

1. Department of Energy and Mechanical Engineering, Gyeonsang National University, South Korea

2. Duck Heung Co. Ltd., South Korea

Abstract

In order to activate the high precision and multi-functional machine tool, adequate technical level of the high-precision products is required. The hydrostatic bearings is used as a method for producing the high-precision products. The hydrostatic bearing has a relatively small run-out compared to its shape error by fluid film effect in hydrostatic state similar to pneumatic bearing and has high stiffness, load capacity and damping characteristics. In this study, we conducted a study on the thermal deformation of the grinding machine that has a great influence on the machining accuracy of the product. The temperature of the front bearing is 10°C or higher than the temperature of the rear bearing. Thermal deformation of the spindle was found to be dependent on the temperature of the hydrostatic bearing and could identify the overall thermal characteristics of the grinding machine.

Publisher

Canadian Science Publishing

Subject

Mechanical Engineering

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