Spindle motor and bearing assembly

Bearings – Rotary bearing – Fluid bearing

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

C384S114000, C384S537000

Reexamination Certificate

active

06705760

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a spindle motor and a bearing assembly for use in office automation equipment such as a computer and peripheral equipment thereof as a driving device/component for the rotating mechanism thereof, specifically to the spindle motor and the bearing assembly that achieve to enhance the run-out accuracy
onrepeatable runout (NRR0) of a motor, and the reliability of the noises, acoustic life, and rigidity, etc.
2. Description of the Prior Art
The spindle motor for driving a magnetic disk on a hard disk drive as a peripheral equipment of a computer is classified broadly into two types in terms of the structure: the fixed shaft type in which a fixed shaft is installed upright on a base, and a rotor hub is supported to freely rotate by the fixed shaft through a bearing interposed between the fixed shaft and the rotor hub; and the rotary shaft type in which a rotary shaft is vertically installed on a rotor hub, and the rotary shaft is supported to freely rotate on a base through a bearing interposed between the rotary shaft and the base.
Generally, the fixed shaft type is provided with, as shown in
FIG. 9
, a base (flange)
02
, a fixed shaft
010
that is installed upright on the base
02
, a rotor hub (hub member)
03
that rotates relatively to the base
02
, and a bearing means
04
interposed between the fixed shaft
010
and the rotor hub
03
. A recording medium such as a magnetic disk (not shown) is mounted on the rotor hub
03
. A stator
015
is installed on the outer peripheral surface of an inner cylindrical wall
014
of the base
02
, and a permanent magnet
016
is installed on the inner peripheral surface of an outer circumferential wall
013
of the rotor hub
03
so as to face the outer peripheral surface of the stator
015
. The symbol
017
denotes a feeder part to the windings of the stator
015
, which is connected to a flexible printed circuit board
037
.
The bearing means
04
employs a compound ball bearing, and an inner ring
06
thereof is applied from the outside to the fixed shaft
010
to be fixedly engaged with the shaft, and an outer ring
05
thereof is applied from the inside to the inner peripheral surface of an inner circumferential wall
032
of the rotor hub
03
to be fixedly engaged with the wall. A part of the inner ring
06
can be formed integrally with the fixed shaft
010
according to circumstances, as shown in
FIG. 9
; and the outer ring
05
can be formed commonly integrally throughout the whole structure of the compound ball bearing in certain cases, as shown in the same figure.
The rotary shaft type is also provided with, as shown in
FIG. 10
, the base (flange)
02
, the rotor hub (hub member)
03
that rotates relatively to the base, a rotary shaft
020
that is vertically installed on the rotor hub
03
, and the bearing means
04
interposed between the rotary shaft
020
and the base
02
. The recording medium such as a magnetic disk (not shown) is mounted on the rotor hub
03
. The stator
015
is installed on the outer peripheral surface of the inner cylindrical wall
014
of the base
02
, and the permanent magnet
016
is installed on the inner peripheral surface of the outer circumferential wall
013
of the rotor hub
03
so as to face the outer peripheral surface of the stator
015
. The symbol
017
denotes the feeder part to the windings of the stator
015
, which is connected to a flexible printed circuit board
037
.
The bearing means
04
employs a compound ball bearing, and the inner ring
06
thereof is applied from the outside to the rotary shaft
020
to be fixedly engaged with the shaft, and the outer ring
05
thereof is applied from the inside to the inner peripheral surface of the cylindrical wall
014
of the base
02
to be fixedly engaged with the wall. A part of the inner ring
06
can be formed integrally with the rotary shaft
020
according to circumstances, as shown in
FIG. 10
; and the outer ring
05
can be formed commonly integrally throughout the whole structure of the compound ball bearing in certain cases, as shown in the same figure.
In a certain case, the rotor hub
03
and the rotary shaft
020
each manufactured separately can be assembled in a unit, as shown in
FIG. 10
; and in another case, they can be manufactured in an integral unit from the beginning. In the latter case, a part of the inner ring
06
cannot be formed integrally with the rotary shaft
020
.
In any type of the spindle motor
01
, the rotor hub
03
thereof is supported on the base
02
to freely rotate through the compound ball bearing
04
as a rolling bearing interposed between the base
02
and the rotor hub
03
. And, the inner ring
06
of the compound ball bearing
04
is applied from the outside to the fixed shaft
010
vertically installed on the base
02
or to the rotary shaft
020
vertically installed on the rotor hub
03
to be fixedly engaged therewith. The outer ring
05
thereof is applied from the inside to the inner peripheral surface of the inner circumferential wall
032
of the rotor hub
03
or to the inner peripheral surface of the inner cylindrical wall
014
of the base
02
to be fixedly engaged therewith.
Now, the recent demand in the hard disk drive shows a remarkable tendency to increase the recording capacity, to enhance the impact resistance, to lower the noises, to increase the data access speed, and so forth. In order to answer these requirements, the rolling bearing of a spindle motor has gone through improvements of the material composition, enhancements of the working precision of the inner and outer rings and rolling elements, etc.
However, when the inner and outer rings and the balls (rolling elements) are made of the steels such as the bearing steels, there occur metal contacts between the rolling surfaces of the inner and outer rings and the surfaces of the balls, which effects galling and wearing to deteriorate the acoustic characteristic, leading to the problem of the acoustic life (recently, the life of the spindle motor is evaluated not by the fatigue life, but by the acoustic life). Further, there occur fretting corrosions (impressions, dilapidated surfaces) on the rolling surfaces due to shocks and vibrations during transportation, which also deteriorates the acoustic life and the precision of rotation.
Especially in recent years, the rotational speed of a spindle motor is increased to higher than 7200 rpm, and the rotating sound of the motor becomes increased to that degree, which tends to shorten the acoustic life. Also in future, a still more increase of the recording capacity is estimated in view of the demand of recording video images and so forth. In order to answer such demands and future problems estimated, the foregoing improvements of the material composition and enhancements of the working precision and the like will not be sufficient for the countermeasure.
In recent years, the ball materials have been tested and examined which exceed in the non-agglutination property and the wear resistance, and the nitride silicon ceramics has been adopted as the rolling element material. There have been discussions about the limitation of the rolling bearing itself, including the ceramic ball bearing made of such new materials, and it has been put forward to employ the fluid bearing in order to solve these problems.
FIG. 11
illustrates a rotary shaft type spindle motor
01
with such a fluid bearing loaded. This spindle motor
01
is provided with the base (flange)
02
, the rotor hub (hub member)
03
that rotates relatively to the base
02
, a rotary shaft
020
that is vertically installed on the rotor hub
03
, and a fluid bearing
030
interposed between the rotary shaft
020
and the base
02
.
A sleeve
031
of the fluid bearing
030
sheathes the rotary shaft
020
, and is applied to the inner peripheral surface of the inner cylindrical wall
014
of the base
02
to be fixedly engaged with the wall. A lubricating oil is supplied into the sliding area between the sleeve
031
and the

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Spindle motor and bearing assembly does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Spindle motor and bearing assembly, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Spindle motor and bearing assembly will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-3271944

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.