Diffuser, airflow generating apparatus, and electrical device
10605264 ยท 2020-03-31
Assignee
Inventors
- Chuan Hui Fang (Hong Kong, CN)
- Feng Xue (Shenzhen, CN)
- Hong Guang Li (Shenzhen, CN)
- Huan He (Shenzhen, CN)
Cpc classification
F05B2250/502
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/444
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/4213
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A diffuser, an airflow generating apparatus, and an electrical device are provided. The airflow generating apparatus includes a motor; an impeller including blades with air passages formed therebetween; and a diffuser including diffusing vanes with diffusing channels formed therebetween. In a flow region defined between a terminating end of one diffusing vane and a starting end of another adjacent diffusing vane, an intersection line between a bottom of the diffusing channel between the two diffusing vanes and its circumferential section includes a front arcuate line segment and a subsequent straight line segment, the arcuate line segment extends curvedly, outwardly and downwardly from or from adjacent an inlet end of the diffusing channel, the straight line segment connects to the arcuate line segment and extends to an outlet end of the diffusing channel. The diffusing channel is designed to improve the operating efficiency of the airflow generating apparatus.
Claims
1. An airflow generating apparatus comprising: a motor comprising a rotary shaft; an impeller mounted on the rotary shaft of the motor for being driven by the motor, the impeller comprising a plurality of blades, air passages being formed between the blades; and a diffuser surrounding the impeller and comprising a plurality of diffusing vanes, diffusing channels being formed between the diffusing vanes; wherein, in a flow region defined between a terminating end of one diffusing vane and a starting end of another adjacent diffusing vane, an intersection line between a bottom of the diffusing channel between the two diffusing vanes and a circumferential section of the bottom of the diffusing channel comprises a front arcuate line segment and a subsequent straight line segment, the arcuate line segment extends curvedly, outwardly and downwardly from an inlet end of the diffusing channel or a portion adjacent the inlet end of the diffusing channel, the straight line segment connects to the arcuate line segment and extends to an outlet end of the diffusing channel, wherein the straight line segment is tangent to the arcuate line segment at a point where they are connected to each other, and wherein a chord height of the arcuate line segment is c, a chord length of the arcuate line segment is b, c is 0.14 to 0.16 times b, and a tangential line to the arcuate line segment at one end of the arcuate line segment away from the straight line segment and a plane perpendicular to a central axis of the diffuser form therebetween an angle in the range of 20 to 30 degrees.
2. The airflow generating apparatus of claim 1, wherein the circumferential section of the bottom of the diffusing channel is an airfoil section.
3. The airflow generating apparatus of claim 1, wherein the straight line segment has a length d, and d is 0.2 to 0.3 times b.
4. The airflow generating apparatus of claim 1, wherein the arcuate line segment has a point with a maximum degree of curvature, a projection point of the point with the maximum degree of curvature on a chord of the arcuate line segment is spaced from one end point of the arcuate line segment by a distance a, and a is 0.4 to 0.6 times b.
5. The airflow generating apparatus of claim 1, wherein an angle formed between the straight line segment and the plane perpendicular to the central axis of the diffuser is 90 degrees.
6. The airflow generating apparatus of claim 1, wherein the inlet end of the diffusing channel is spaced from the air passages of the impeller by a gap, the impeller has an outer diameter D1, a circle on which ends of the diffusing vanes at the inlet ends of the diffusing channels are located has a diameter D2, and D1 is 0.85 to 0.98 times D2.
7. The airflow generating apparatus of claim 1, wherein the impeller comprises a front cover plate and a rear cover plate spaced apart by a predetermined distance, the blades are mounted between the front cover plate and the rear cover plate, the front cover plate defines an opening as an inlet of the air passages of the impeller, and an outer circumference of the impeller defines outlets of the air passages.
8. The airflow generating apparatus of claim 1, wherein the diffuser comprises an outer housing and a partition plate mounted within the outer housing, and the plurality of diffusing vanes is formed on the partition plate, a thickness increased stage is formed along an outer circumferential area of the partition plate, and the diffusing vanes extend across the thickness increased stage to an outer edge of the diffuser where the diffusing vanes connect to the outer housing.
9. The airflow generating apparatus of claim 8, wherein the partition plate forms a recessed portion at a middle thereof, and the impeller is disposed in the recessed portion.
10. The airflow generating apparatus of claim 8, wherein the outlet ends of the diffusing channels pass through the partition plate and are disposed adjacent the outer housing, a gap is defined between the outer housing and the outlet ends of the diffusing channels.
11. The airflow generating apparatus of claim 1, wherein the airflow generating apparatus further comprising a cover body defining an opening which acts as an inlet allowing the air to enter the airflow generating apparatus, the opening is trumpet-shaped which has a caliber at its upper end greater than its caliber at its lower end, and a volume of the opening is 1 to 1.2 times a volume of a cylinder having a diameter the same as the caliber at the lower end of the opening and having the same height as the opening.
12. The airflow generating apparatus of claim 1, wherein the airflow generating apparatus further comprising a cover body defining an opening which acts as an inlet allowing the air to enter the airflow generating apparatus, the opening is cylindrical.
13. A diffuser comprising a plurality of diffusing vanes, diffusing channels being formed between the diffusing vanes, wherein in a flow region defined between a terminating end of one diffusing vane and a starting end of another adjacent diffusing vane, an intersection line between a bottom of the diffusing channel between the two diffusing vanes and a circumferential section of the bottom of the diffusing channel comprises a front arcuate line segment and a subsequent straight line segment, the arcuate line segment extends curvedly, outwardly and downwardly from an inlet end of the diffusing channel or a portion adjacent an inlet end of the diffusing channel, the straight line segment connects to the arcuate line segment and extends to an outlet end of the diffusing channel, and wherein a chord height of the arcuate line segment is c, a chord length of the arcuate line segment is b, c is 0.14 to 0.16 times b, and a tangential line to the arcuate line segment at one end of the arcuate line segment away from the straight line segment and a plane perpendicular to a central axis of the diffuser form therebetween an angle in the range of 20 to 30 degrees.
14. The diffuser of claim 13, wherein the circumferential section of the bottom of the diffusing channel is an airfoil section, the straight line segment is tangent to the arcuate line segment at a point where they are connected to each other.
15. The diffuser of claim 13, wherein the straight line segment has a length d, and d is 0.2 to 0.3 times b.
16. The diffuser of claim 13, wherein the arcuate line segment has a point with a maximum degree of curvature, a projection point of the point with the maximum degree of curvature on a chord of the arcuate line segment is spaced from one end point of the arcuate line segment by a distance a, and a is 0.4 to 0.6 times b.
17. An electrical device comprising an airflow generating apparatus, the airflow generating apparatus comprising: a motor comprising a rotary shaft; an impeller mounted on the rotary shaft of the motor for being driven by the motor, the impeller comprising a plurality of blades, air passages being formed between the blades; and a diffuser surrounding the impeller and comprising a plurality of diffusing vanes, diffusing channels being formed between the diffusing vanes; wherein, in a flow region defined between a terminating end of one diffusing vane and a starting end of another adjacent diffusing vane, an intersection line between a bottom of the diffusing channel between the two diffusing vanes and a circumferential section of the bottom of the diffusing channel comprises a front arcuate line segment and a subsequent straight line segment, the arcuate line segment extends curvedly, outwardly and downwardly from an inlet end of the diffusing channel or a portion adjacent an inlet end of the diffusing channel, the straight line segment connects to the arcuate line segment and extends to an outlet end of the diffusing channel, and wherein a chord height of the arcuate line segment is c, a chord length of the arcuate line segment is b, c is 0.14 to 0.16 times b, and a tangential line to the arcuate line segment at one end of the arcuate line segment away from the straight line segment and a plane perpendicular to a central axis of the diffuser form therebetween an angle in the range of 20 to 30 degrees; and wherein the electrical device is a hand dryer, a vacuum cleaner, or a hair dryer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(16) Referring to
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(21) In designing the diffusing channel 135, references have been made to the principle of airfoil aerodynamic design, which facilitates enhancing the air flow efficiency. In one embodiment, a circumferential section of the bottom of the diffusing channel 135 is an airfoil section.
(22) Referring to
(23) The line L1 includes an arcuate line segment AB and a straight line segment BD. The point A of the arcuate line segment AB is disposed adjacent or at the inlet end of the diffusing channel 135, and the point D of the straight line segment BD is disposed adjacent or at the outlet end of the diffusing channel 135. The straight line segment BD is tangent to the arcuate line segment AB at the point B, and the straight line segment BD is located on a tangential line to the arcuate line segment AB at the point B. The straight line segment BD has a length d, and a chord length of the arcuate line segment AB, i.e. a straight line distance between point A to point B, is b. In this embodiment, d/b is in the range of 0.2 to 0.3. A chord height of the arcuate line segment AB, i.e. a perpendicular distance from a point C on the arcuate line segment AB to a straight line segment AB, is c. In this embodiment, c/b is in the range of 0.14 to 0.16. The line L1 has a maximum degree of curvature at the point C. A projection point of the point C on the chord of the arcuate line segment AB is spaced from the point A by a distance a. In this embodiment, a/b is in the range of 0.4 to 0.6. A plane 3 is a radial plane perpendicular to a central axis of the diffuser 13 and passing the point A. A tangential line to the line L1 at the point A and the plane 3 form an angle a therebetween. In this embodiment, a is in the range of 20 to 30 degrees, i.e. the plane 3 and a tangential plane to the curved bottom segment 1351 of the diffusing channel 135 at one end thereof away from the plane bottom segment form an angle in the range of 20 to 30 degrees. The straight line segment BD and the plane 3 form an angle therebetween. In this embodiment, the angle is preferably 90 degrees, i.e. the plane bottom segment 1353 of the diffusing channel 135 is parallel to the central axis of the diffuser 13.
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(28) Although the invention is described with reference to one or more preferred embodiments, it should be appreciated by those skilled in the art that various modifications are possible. Therefore, the scope of the invention is to be determined by reference to the claims that follow.