IP Library › Granted Patent US 10,294,953
Granted Patent B2
US 10,294,953 · App. 15/102,658 · Granted May 21, 2019

Centrifugal multiblade blower

Inventors: Toshifumi Kamiya (Kariya, JP); Hiroaki Shiraishi (Kariya, JP)
Assignee: DENSO CORPORATION
F04D29/289F04D25/06F04D25/082F04D29/281F04D29/4226H02K7/003H02K9/26F05D2250/181F05D2250/294H02K7/14H02K9/06H02K9/28
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Quick Facts
Patent No.
US 10,294,953
App. No.
15/102,658
Granted
May 21, 2019
Kind
B2
Abstract

A centrifugal multiblade blower includes: an electric motor; and an impeller blowing off air outward in a radial direction by being rotated by the electric motor. A main plate of the impeller has an uneven part on one surface adjacent to the electric motor in a thickness direction of the main plate. The one surface is in contact with air passing through inside of the electric motor. A surface shape of the uneven part is formed in manner that, among a whole surface of the uneven part, a total surface area of a surface facing inward in a radial direction of the motor is larger than an imaginary smooth surface on which the surface shape of the uneven part is defined to be a smooth surface without the uneven part.

Claims (60)

1. A centrifugal multiblade blower comprising:

an electric motor having a motor rotation shaft that rotates at a motor axial center, a commutator that rotates with the motor rotation shaft, and a brush in contact with the commutator; and

an impeller having a main plate connected with the motor rotation shaft to rotate integrally with the motor rotation shaft, and a plurality of blades connected with the main plate and arranged around the motor axial center, the impeller blowing off air outward in a radial direction by being rotated by the electric motor, wherein

the main plate has one surface facing the electric motor in a thickness direction of the main plate,

the one surface is in contact with air passing through inside of the electric motor,

the one surface has an uneven part with an uneven surface shape,

the uneven part has a plurality of protrusion parts, wherein each of the protrusion parts extends in a circumferential direction entirely around the motor axial center, and

the uneven surface shape of the uneven part is formed in a manner that, among a whole surface of the uneven part, a total surface area of a taper surface facing inward in the radial direction and being inclined relative to the motor axial center is larger than an imaginary smooth surface, on which the surface shape of the uneven part is defined, is a smooth surface without the uneven part.

2. The centrifugal multiblade blower according to claim 1 , wherein

the uneven part is arranged in at least a part of a range covering from a position on the one surface overlapping with an outer side of the brush in the radial direction to a periphery side of the main plate.

3. The centrifugal multiblade blower according to claim 1 , wherein

the electric motor has a stator disposed around the motor axial center, and a yoke that receives the stator, and

the uneven part is formed so that a maximum outer diameter of the uneven part around the motor axial center is larger than an outer diameter of the yoke.

4. The centrifugal multiblade blower according to claim 1 , wherein

the main plate has a central part connected with the motor rotation shaft, and is formed to extend from the central part to one side in an axial direction of the motor axial center as spreading outward in the radial direction in a manner that the one surface is an inner surface of the main plate.

5. The centrifugal multiblade blower according to claim 1 , wherein the uneven part of the impeller is configured to be charged by friction between air and the uneven part caused by rotation of the impeller.

6. The centrifugal multiblade blower according to claim 1 , wherein

each of the protrusion parts that extends in the circumferential direction forms a shape of a ring centering at the motor axial center.

7. The centrifugal multiblade blower according to claim 1 , wherein

the taper surface facing inward in the radial direction and being inclined relative to the motor axial center is a first taper surface,

each of the protrusion parts of the main plate has a shape of a triangle in a cross-sectional form, which is defined by the first taper surface and a second taper surface facing outward in the motor radial direction and being inclined relative to the motor axial center,

each of the protrusion parts has a top part defined between the first taper surface and the second taper surface, and

the imaginary smooth surface is defined to extend along all of the top parts of the protrusion parts.

8. The centrifugal multiblade blower according to claim 1 , wherein

the uneven part is disposed not to enlarge an off-center of the impeller relative to the motor axial center.

9. The centrifugal multiblade blower according to claim 1 , wherein

the electric motor has an air exit from which air flowing through inside of the electric motor is blown out, and

the air exit is defined so that the air is blown out in a direction along the motor axial center toward the one surface of the main plate.

10. The centrifugal multiblade blower according to claim 1 , wherein

the protrusion part is formed so that a cross-sectional form of the protrusion part taken along a plane containing the motor axial center has a shape of a triangle tapered to a tip end.

11. The centrifugal multiblade blower according to claim 10 , wherein

the plurality of protrusion parts are arranged in the radial direction along the one surface, and a groove is defined between the protrusion parts adjacent to each other, and

the uneven part has a connection rib that connects the protrusion parts adjacent to each other.

12. The centrifugal multiblade blower according to claim 10 , wherein

the protrusion part has a pair of protrusion surfaces that forms the cross-sectional form having the shape of the triangle, and

one of the pair of protrusion surfaces faces inward in the radial direction around the motor axial center relative to the imaginary plane.

13. The centrifugal multiblade blower according to claim 12 , wherein

the other of the pair of protrusion surfaces faces outward in the radial direction around the motor axial center relative to the imaginary plane.

14. A centrifugal multiblade blower comprising:

an electric motor having a motor rotation shaft that rotates at a motor axial center, a commutator that rotates with the motor rotation shaft, and a brush in contact with the commutator; and

an impeller having a main plate connected with the motor rotation shaft to rotate integrally with the motor rotation shaft, and a plurality of blades connected with the main plate and arranged around the motor axial center, the impeller blowing off air outward in a radial direction by being rotated by the electric motor, wherein

the main plate has one surface facing the electric motor in a thickness direction of the main plate,

the one surface is in contact with air passing through inside of the electric motor,

the one surface has an uneven part with an uneven surface shape,

the uneven part has a plurality of protrusion parts, a groove is defined between the protrusion parts adjacent to each other, wherein each groove extends in a circumferential direction completely around the motor axial center, and

the uneven surface shape of the uneven part is formed in a manner that, among a whole surface of the uneven part, a total surface area of a taper surface facing inward in the radial direction and being inclined relative to the motor axial center is larger than an imaginary smooth surface, on which the surface shape of the uneven part is defined, is a smooth surface without the uneven part.

15. The centrifugal multiblade blower according to claim 14 , wherein

each of the protrusion parts that extends in the circumferential direction forms a shape of a ring centering at the motor axial center.

16. The centrifugal multiblade blower according to claim 14 , wherein

the taper surface facing inward in the radial direction and being inclined relative to the motor axial center is a first taper surface,

each of the protrusion parts of the main plate has a shape of a triangle in a cross-sectional form, which is defined by the first taper surface and a second taper surface facing outward in the motor radial direction and being inclined relative to the motor axial center,

each of the protrusion parts has a top part defined between the first taper surface and the second taper surface, and

the imaginary smooth surface is defined to extend along all of the top parts of the protrusion parts.

17. The centrifugal multiblade blower according to claim 14 , wherein

the protrusion part is formed so that a cross-sectional form of the protrusion part taken along a plane containing the motor axial center has a shape of a triangle tapered to a tip end.

18. The centrifugal multiblade blower according to claim 17 , wherein

the protrusion part has a pair of protrusion surfaces that forms the cross-sectional form having the shape of the triangle, and

one of the pair of protrusion surfaces faces inward in the radial direction around the motor axial center relative to the imaginary plane.

19. The centrifugal multiblade blower according to claim 18 , wherein

the other of the pair of protrusion surfaces faces outward in the radial direction around the motor axial center relative to the imaginary plane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2016
From: KAMIYA, TOSHIFUMI; SHIRAISHI, HIROAKI
To: DENSO CORPORATION
Reel/Frame 038843/0170 →
Priority Claims (1)
JP 2014-051818 · Mar 14, 2014 · national
Continuity (1)
Related Publication 20160305435A1 · Oct 20, 2016
Cited By (1)
US 12,480,522