IP Library Granted Patent US 11,384,767
Granted Patent B2
US 11,384,767 · App. 16/574,201 · Granted Jul 12, 2022

Blower apparatus

Inventors: Guiling Zhang (Kyoto, JP); Hidenobu Takeshita (Kyoto, JP)
Assignee: NIDEC CORPORATION
F04D19/007F04D19/024F04D25/0606F04D25/08F04D29/522
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Quick Facts
Patent No.
US 11,384,767
App. No.
16/574,201
Granted
Jul 12, 2022
Kind
B2
Abstract

A blower apparatus includes a casing, ribs located radially inward of the casing and integrally provided with the casing, a motor housing located radially inward of the ribs and integrally provided with the ribs, a first housing located radially inward of the motor housing, a first motor supported on one side in an axial direction by the first housing, a first impeller rotatable around the central axis on one side in the axial direction by the first motor, a second housing located on the other side of the first housing in the axial direction, a second motor supported on the other side in the axial direction by the second housing, and a second impeller rotatable around the central axis on the other side in the axial direction by the second motor. The second housing is fixed to the first housing.

Claims (40)

1. A blower apparatus comprising:

a casing including an intake port located on an upper side of a central axis that extends vertically in an axial direction, and a discharge port located on a lower side of the central axis;

a plurality of ribs located radially inward of the casing and integrally provided with the casing;

a motor housing located radially inward of the plurality of ribs and integrally provided with the plurality of ribs;

a first housing located radially inward of the motor housing;

a first bearing support attached to the first housing on an inside of the first housing in a radial direction;

a portion of a first motor supported by the first bearing support on an inside of the first bearing support in the radial direction;

a first impeller rotatable around the central axis by the first motor on a first side of the first motor in the axial direction;

a second housing located on a second side of the first housing in the axial direction;

a second bearing support attached to the second housing on an inside of the second housing in the radial direction;

a portion of a second motor supported by the second bearing support on an inside of the second bearing support in the radial direction; and

a second impeller rotatable around the central axis by the second motor on a second side of the second motor in the axial direction; wherein

the motor housing, the first housing, and the second housing are each defined by separate members;

a first housing surface is provided on the second side of the first housing in the axial direction; and

a second housing surface is provided on a second side of the second housing in the axial direction;

the motor housing includes:

a receiving portion located radially inward of the plurality of ribs; and

a receiving surface included in the receiving portion on a first side of the motor housing in the axial direction;

the first housing surface and the second housing surface are located on the receiving surface in the axial direction;

the receiving surface directly opposes the first housing surface and the second housing surface in the axial direction; and

the second housing is fixed to the first housing.

2. The blower apparatus according to claim 1 , wherein

an outer surface of the first housing is located radially outward of an outer surface of the second housing; and

the receiving portion includes:

a first receiving portion located radially inward of the plurality of ribs to receive the first housing in the axial direction, and

a second receiving portion located radially inward of the first receiving portion to receive the second housing in the axial direction;

the first receiving portion contacts the first housing surface; and

the second receiving portion contacts the second housing surface.

3. The blower apparatus according to claim 2 , wherein the second housing is fixed to the motor housing by being held between the second receiving portion of the motor housing and the first housing surface contacted by the first receiving portion in the axial direction.

4. The blower apparatus according to claim 2 , wherein

the second receiving portion includes an inner surface which includes a first groove recessed radially outward and a first protruding portion protruding radially inward, the first groove and the first protruding portion being alternately arranged in a circumferential direction;

the outer surface of the second housing includes a second groove recessed radially inward and a second protruding portion protruding radially outward, the second groove and the second protruding portion being alternately arranged in the circumferential direction; and

the outer surface of the second housing has a shape conforming to a shape of the inner surface of the second receiving portion.

5. The blower apparatus according to claim 4 , wherein the first housing includes a projection that is engaged with a hole portion provided from the first groove of the second receiving portion and the second groove of the second housing overlapping with each other in the axial direction.

6. The blower apparatus according to claim 1 , wherein the first housing is fixed to the motor housing by a snap-fit.

7. The blower apparatus according to claim 6 , wherein

in relation to the axial direction:

the first housing is between the intake port of the casing and the second housing, and

the second housing is between the discharge port of the casing and the first housing; and

the first motor and the second motor rotate the first impeller and the second impeller, respectively, such that air flows from the intake port toward the discharge port.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2019
From: ZHANG, GUILING; TAKESHITA, HIDENOBU
To: NIDEC CORPORATION
Reel/Frame 050414/0063 →
Priority Claims (1)
JP JP2018-178990 · Sep 25, 2018 · national
Continuity (1)
Related Publication 20200095999A1 · Mar 26, 2020
Cited By (1)
US 12,577,955