Invention Grant
- Patent Title: Fluid dynamic bearing device
- Patent Title (中): 流体动力轴承装置
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Application No.: US14002037Application Date: 2012-02-28
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Publication No.: US08926183B2Publication Date: 2015-01-06
- Inventor: Hiroyuki Noda , Natsuhiko Mori , Tetsuya Kurimura , Isao Komori , Masaharu Hori , Kimihiko Bito , Toshiyuki Mizutani
- Applicant: Hiroyuki Noda , Natsuhiko Mori , Tetsuya Kurimura , Isao Komori , Masaharu Hori , Kimihiko Bito , Toshiyuki Mizutani
- Applicant Address: JP Osaka-shi
- Assignee: NTN Corporation
- Current Assignee: NTN Corporation
- Current Assignee Address: JP Osaka-shi
- Agency: Westerman, Hattori, Daniels & Adrian, LLP
- Priority: JP2011-050946 20110309; JP2011-050949 20110309; JP2011-050950 20110309; JP2012-012019 20120124
- International Application: PCT/JP2012/054863 WO 20120228
- International Announcement: WO2012/121053 WO 20120913
- Main IPC: F16C32/06
- IPC: F16C32/06 ; F16C17/02 ; F16C43/02 ; F16C17/10 ; F16C33/10 ; F16C33/14 ; G11B19/20

Abstract:
An inner peripheral surface and a lower end surface of a bearing sleeve made of a sintered metal are each formed into a smooth cylindrical surface or a flat surface that does not have a dynamic pressure generating portion. Thus, a step of forming the dynamic pressure generating portion can be omitted from a manufacturing step of the bearing sleeve, and cost of dies can be markedly reduced. Further, the inner peripheral surface of the bearing sleeve is formed into the smooth cylindrical surface, and hence a radial dynamic pressure generating portion is formed on an outer peripheral surface of a shaft member. However, the outer peripheral surface of the shaft portion is accessible to tools, and hence the radial dynamic pressure generating portion can be formed easily with high accuracy. As a result, accuracy of a radial bearing gap is enhanced so that a bearing rigidity is enhanced.
Public/Granted literature
- US20130336604A1 FLUID DYNAMIC BEARING DEVICE Public/Granted day:2013-12-19
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