Fan structure
10808726 ยท 2020-10-20
Assignee
Inventors
Cpc classification
F04D29/384
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/663
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/522
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/96
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/526
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/66
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fan structure includes a frame body and a fan impeller. The frame body has a base seat and an annular wall. A bearing cup upward extends from a center of the base seat. At least one groove is annularly formed on inner wall face of the annular wall. The fan impeller is pivotally disposed in the bearing cup and has a hub and multiple blades outward extending from the hub. Each blade has an end edge. At least one protrusion section outward protrudes from the end edge into the groove. According to the design of the fan structure, the protrusion section can destroy the production of the vortex of the blade of the conventional fan so as to greatly minify the strength of the vortex. Therefore, the structure of the sound field of the vortex is changed so that the noise of the fan structure is lowered.
Claims
1. A fan structure comprising: a frame body formed of an upper frame and a lower frame and having a base seat and an annular wall, the upper and lower frames connected with each other to form a circumferential groove on an inner wall face of the annular wall, a bearing cup extending upwardly from a center of the base seat; and a fan impeller pivotally disposed on the bearing cup, the fan impeller having a central hub and multiple blades, each blade extending radially outward from a circumference of the central hub and having a tip extending into the circumferential groove, wherein the tip of each blade has a leading section, a middle section, and a trailing section and wherein each blade has two outwardly extending steps which are formed on the leading section and on the trailing section, respectively, and wherein the middle section steps inwardly.
2. The fan structure as claimed in claim 1, wherein a gap is defined between each two steps of each blade.
3. The fan structure as claimed in claim 1, wherein the circumferential groove is formed with an upper open end and a lower closed end, the blade tips correspondingly protruding between the upper open end and the lower closed end.
4. The fan structure as claimed in claim 1, wherein the circumferential groove is formed with an upper closed end and a lower open end, the blade tips correspondingly protruding between the upper closed end and the lower open end.
5. The fan structure as claimed in claim 1, wherein an extension section extends downwardly from an inner circumference of the upper frame, an inner wall face of the lower frame being formed with a recess, the extension section being correspondingly assembled in the recess to form the circumferential groove.
6. The fan structure as claimed in claim 5, wherein the upper and lower frames are connected with each other by means of adhesion, engagement, latching, locking or interference.
7. The fan structure as claimed in claim 5, wherein an outer wall face of the upper frame has multiple latch sections and an outer wall face of the lower frame has multiple hook sections, the latch sections being correspondingly latched with the hook sections.
8. The fan structure of claim 1, wherein the stepped tip profile differs among the multiple blades.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(19) Please refer to
(20) The fan impeller 25 is correspondingly pivotally disposed on the bearing cup 221. The fan impeller 25 has a hub 251 and multiple blades 252 outward extending from the circumference of the hub 251. Each blade 252 has an end edge 2523. At least one protrusion section 253 correspondingly outward protrudes from the end edge 2523 into the groove 24. The end edge 2523 of the blade 252 has a front end section 2531, a middle end section 2532 and a rear end section 2533. In this embodiment, the protrusion section 253 is, but not limited to, formed on the front end section 2531 for illustration purposes only. In practice, the position of the protrusion section 253 can be adjusted according to the user's requirement. In other words, the protrusion section 253 can be alternatively formed on the middle end section 2532 (as shown in
(21) In this embodiment, the protrusion section 253 is, but not limited to, formed with a wing shape. In practice, the shape of the protrusion section 253 can be adjusted according to the user's requirement. In other words, the protrusion section 253 can be alternatively formed with a saw-tooth shape or arched shape or flat-plate shape or a combination of these shapes (as shown in
(22) According to the structural design of the present invention, by means of the protrusion section 253 formed on the end edge 2523 of the blade 252, according to Bernoulli's principle, when the fan structure 2 operates, the airflow pressure under the lower surface 2522 is higher than the airflow pressure on the upper surface 2521. Therefore, the airflow will naturally upward turn over and flow from the lower surface 2522 to the upper surface 2521. Due to the pressure difference between the upper and lower surfaces 2521, 2522, a vortex 28 will be produced. At this time, the structure of the protrusion section 253 will destroy the production of the large vortex 28 of the blade of the conventional fan. In other words, by means of the structure of the protrusion section 253, the strength of the vortex 28 will be greatly minified to form smaller vortex 28.
(23) The interaction between the vortex 28 and the frame body 21 is one of the sources of the noise of the fan structure 2. Therefore, the large vortex 28 is destroyed by the protrusion section 253 to form small vortex or micro-vortex 28 so that the strength of the vortex 28 is weakened. As a result, the interaction between the vortex 28 and the frame body 21 is weakened to greatly lower the noise. The structure of the sound field 29 of the vortex 28 is changed so that the noise of the entire fan structure 2 is greatly lowered.
(24) Please now refer to
(25) Please now refer to
(26) Please now refer to
(27) Please now refer to
(28) Please now refer to
(29) In conclusion, in comparison with the conventional fan structure, the present invention has the following advantages:
(30) 1. The strength of the vortex is greatly minified.
(31) 2. The structure of the sound field of the vortex is changed.
(32) 3. The noise of the entire fan structure is greatly lowered.
(33) The present invention has been described with the above embodiments thereof and it is understood that many changes and modifications in such as the form or layout pattern or practicing step of the above embodiments can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.