OBLIQUE FLOW FAN
20200408221 ยท 2020-12-31
Assignee
Inventors
Cpc classification
F04D29/281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/384
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/444
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/2238
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention belongs to the technical field of fans, in particular to a high-efficiency oblique flow fan. The oblique flow fan comprises fan blades, an air guide cover, directional air guide blades and a housing, wherein the fan blades and the directional air guide blades are connected through a central bearing, the bearing fixed at the center of the conical fan blades passes through a reserved hole in the center of the directional air guide blades and is fixed, the air guide cover is directly stuck at the corresponding position on the housing through the action of a clamping point, and the directional air guide blades and the housing are fixed through screws. The oblique flow fan of the invention reduces sudden change and turbulence of air flow to the greatest extent, doubles the air pressure and energy efficiency of the fan, and effectively reduces noise.
Claims
1. An oblique flow fan, wherein it comprises fan blades, an air guide cover, directional air guide blades and a housing, wherein the fan blades and the directional air guide blades are connected through a central bearing, the bearing fixed at the center of the conical fan blades passes through a reserved hole in the center of the directional air guide blades and is fixed, the air guide cover is directly stuck at the corresponding position on the housing through the action of a clamping point, and the directional air guide blades and the housing are fixed through screws.
2. The oblique flow fan according to claim 1, wherein the fan blades is conical.
3. The oblique flow fan according to claim 1, wherein the conical blades has a taper A of 50-60.
4. The oblique flow fan according to claim 1, wherein the inclination angle range between the conical fan blade and the axial direction is greater than B1 and less than B2, wherein the inclination angle B1 is 45 and the Inclination angle B2 is 65.
5. The oblique flow fan according to claim 4, wherein the number of conical blades is odd.
6. The oblique flow fan according to claim 1, wherein the air guide cover has a bell mouth cone, the air guide cover is close to the fan blades, and the air guide cover taper D is 6-8 smaller than that of the fan blades.
7. The oblique flow fan according to claim 1, wherein the inclination angle E between the tangent line of the initial arc section of the air guide blade and the axial direction is about 45.
8. The oblique flow fan according to claim 7, wherein the number of the directional guide blades is even, which is only one more than the number of the fan blade.
9. The oblique flow fan according to claim 1, wherein the housing is cylindrical.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] Referring to
[0019] The conical blades 1 has a taper A of 50-60. The inclination angle range between the conical fan blade and the axial direction is greater than B1 and less than B2, wherein the inclination angle B1 is 45 and the Inclination angle B2 is 65; namely, the air cutting angle range of the conical blade is greater than C2 and less than C1, wherein the air cutting angle C2 is 25 and the air cutting angle C1 is 45. The number of conical fan blades is odd.
[0020] The air guide cover 2 has a bell-shaped shape. The air guide cover 2 is as close as possible to the conical fan blades 1. The taper D is 6-8 smaller than the taper of the fan blades 1; the air supply section between two fan blades is reduced appropriately and gradually in the whole process (the air volume is reduced after compression); the flow rate is kept as consistent as possible when the flow direction is changed; a siphon effect is generated at the front and rear ends of the fan blades; the pressure difference between the two sides of the fan blades is minimized; the drive resistance is minimized and the wind pressure is increased exponentially (500-700 pa or higher).
[0021] The directional air guide blade 3 makes the spiral outlet air flow to axial direct flow, reducing the friction resistance between the air flow and the components with no air.
[0022] The housing 4 is a cylindrical housing, and it will be understood that the housing 4 may also be of other shapes.