IP Library › Granted Patent US 10,605,267
Granted Patent B2
US 10,605,267 · App. 15/615,316 · Granted Mar 31, 2020

Blower apparatus

Inventors: Yuko Hino (Kyoto, JP); Seung-Sin Yoo (Kyoto, JP); Tomoyuki Tsukamoto (Kyoto, JP); Akihiko Makita (Kyoto, JP)
Assignee: NIDEC CORPORATION
F04D29/626F04B35/04F04D17/161F04D25/06F04D25/0613F04D29/083F04B17/00
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Quick Facts
Patent No.
US 10,605,267
App. No.
15/615,316
Granted
Mar 31, 2020
Kind
B2
Abstract

This blower apparatus includes an air blowing portion including a plurality of flat plates arranged with an axial gap defined between adjacent ones of the flat plates; a motor portion arranged to rotate the air blowing portion; a clamper portion fixed to the motor portion; and a housing arranged to house the air blowing portion and the motor portion. The housing includes an air inlet and an air outlet. The air blowing portion is held by the motor portion and the clamper portion from upper and lower sides in the axial direction. Once the air blowing portion starts rotating, an air flow traveling radially outward is generated between the flat plates by viscous drag of surfaces of the flat plates and a centrifugal force.

Claims (53)

1. A blower apparatus comprising:

an air blowing portion arranged to rotate about a central axis extending in a vertical direction;

a motor portion arranged to rotate the air blowing portion, and having at least a portion thereof arranged on a lower side of the air blowing portion;

a clamper portion which is rotatable with respect to the stationary portion fixed to the motor portion, and having at least a portion thereof arranged on an upper side of the air blowing portion; and

a housing arranged to house the air blowing portion and the motor portion; wherein

the housing includes:

an air inlet arranged above the air blowing portion, and arranged to pass through a portion of the housing in an axial direction; and

an air outlet arranged to face in a radial direction at at least one circumferential position radially outside of the air blowing portion;

the air blowing portion includes a plurality of flat plates arranged in the axial direction with an axial gap defined between adjacent ones of the flat plates; and

the air blowing portion is held by the motor portion and the clamper portion from upper and lower sides in the axial direction,

wherein the clamper portion includes:

a cover portion including a fitting hole at a position overlapping with the central axis, and having at least a portion thereof arranged on the upper side of the air blowing portion; and

a clamping portion inserted into the fitting hole to fix the cover portion and the motor portion to each other;

wherein the motor portion includes:

a stationary portion including an armature; and

a rotating portion including a magnet arranged radially outside of the armature, and a hub arranged to hold the magnet; and

the cover portion includes:

a center portion including the fitting hole; and

a plurality of arm portions arranged to extend in a radial manner from the center portion, each arm portion having at least a portion thereof arranged on the upper side of the air blowing portion.

2. The blower apparatus according to claim 1 wherein the cover portion includes a recess portion recessed from an upper surface thereof or a hole portion arranged to pass therethrough in the axial direction.

3. The blower apparatus according to claim 1 , wherein

the motor portion includes:

a stationary portion including an armature; and

a rotating portion including a magnet arranged radially outside of the armature, and a hub arranged to hold the magnet;

the hub includes:

a hub body member including a first top plate portion arranged to cover an upper side of the armature, and a magnet holding portion arranged to hold the magnet with an inner circumferential surface thereof; and

a flange member including a second top plate portion arranged to cover a portion of an upper surface of the hub body member, and a flat plate holding portion arranged to hold the air blowing portion on a radially outer side of the magnet holding portion;

a lower surface of the cover portion includes a recessed portion recessed upward axially above the second top plate portion; and

the second top plate portion is arranged in the recessed portion.

4. The blower apparatus according to claim 3 , wherein the cover portion includes a flange holding portion arranged radially outside of the recessed portion and the second top plate portion, and arranged to radially overlap with the second top plate portion.

5. The blower apparatus according to claim 1 , wherein

the hub includes:

a hub body member including a first top plate portion arranged to cover an upper side of the armature, and a magnet holding portion arranged to hold the magnet with an inner circumferential surface thereof; and

a flange member including a flat plate holding portion arranged to hold the air blowing portion on a radially outer side of the magnet holding portion, an outer wall portion arranged to extend upward from the flat plate holding portion along an outer circumferential surface of the magnet holding portion, and second top plate portions each of which is arranged to extend radially inward from an upper end of the outer wall portion, and is arranged along an upper surface of the first top plate portion; and

on the upper surface of the first top plate portion, the second top plate portions and the arm portions are arranged to alternate with each other in a circumferential direction.

6. The blower apparatus according to claim 1 , wherein

the motor portion includes:

a stationary portion including an armature; and

a rotating portion including a magnet arranged radially outside of the armature, a hub arranged to hold the magnet, and a shaft arranged to extend along the central axis; and

the shaft and the clamping portion are arranged axially opposite to each other with a gap therebetween.

7. The blower apparatus according to claim 1 , wherein a center of the air inlet is arranged to coincide with the central axis.

8. The blower apparatus according to claim 1 , wherein

the motor portion includes:

a stationary portion including an armature and a bearing housing; and

a rotating portion including a shaft, a bearing member, and a magnet arranged radially opposite to the armature;

the bearing housing and a combination of the shaft and the bearing member are arranged to have a lubricating fluid therebetween;

the bearing housing and the rotating portion are arranged to together define a gap defining a seal portion therebetween, the seal portion having a surface of the lubricating fluid defined therein; and

in the seal portion, a distance between the bearing housing and the rotating portion is arranged to increase with increasing distance from the surface of the lubricating fluid.

9. The blower apparatus according to claim 1 , wherein the motor portion includes:

a stationary portion including an armature and a bearing housing;

a rotating portion including a shaft and a magnet arranged radially opposite to the armature; and

a ball bearing arranged to connect the rotating portion to the stationary portion such that the rotating portion is rotatable with respect to the stationary portion.

10. The blower apparatus according to claim 1 , wherein the housing includes a plurality of the air outlets at a plurality of circumferential positions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2017
From: HINO, YUKO; YOO, SEUNG-SIN; TSUKAMOTO, TOMOYUKI; MAKITA, AKIHIKO
To: NIDEC CORPORATION
Reel/Frame 042618/0926 →
Priority Claims (1)
JP 2017-049390 · Mar 15, 2017 · national
Continuity (2)
Provisional Application 62347380 · Jun 8, 2016
Related Publication 20170356467A1 · Dec 14, 2017