Fan device with metal annular frame
A fan device includes a fan frame having an inner annular surface and a coupling groove, the inner annular surface defining a receiving space, and the coupling groove being recessed inward from the inner annular surface. The fan device also includes a fan blade assembly rotatably disposed within the fan frame and located in the receiving space. The fan device further includes a metal annular frame coupled to the coupling groove and positioned between the fan frame and the fan blade assembly. The fan frame includes a first annular engagement portion disposed in the coupling groove, and the metal annular frame includes a second annular engagement portion disposed on a side adjacent to the coupling groove. The metal annular frame surrounds the fan blade assembly and is mechanically retained within the coupling groove.
1 . A fan device for electronic cooling systems, the fan device comprising:
a fan frame having an inner annular surface and a coupling groove radially recessed inward from the inner annular surface towards a center of the fan device, the inner annular surface defining a receiving space;
a fan blade assembly rotatably disposed within the fan frame and located in the receiving space; and
a metal annular frame coupled to the coupling groove and positioned between the fan frame and the fan blade assembly,
wherein:
the fan frame includes a first annular engagement portion disposed in the coupling groove,
the metal annular frame includes a second annular engagement portion disposed on a side adjacent to the coupling groove, and
the metal annular frame surrounds the fan blade assembly and is mechanically retained within the coupling groove.
2 . The fan device of claim 1 , wherein the first annular engagement portion and the second annular engagement portion are complementarily interlocking to secure the metal annular frame within the coupling groove.
3 . The fan device of claim 1 , wherein the first annular engagement portion is an annular engagement protrusion and the second annular engagement portion is an annular engagement recess.
4 . The fan device of claim 1 , wherein the fan frame further includes at least one first microstructure disposed on the first annular engagement portion, and the metal annular frame further includes at least one second microstructure disposed on the second annular engagement portion, the first and second microstructures being complementarily interlocking.
5 . The fan device of claim 4 , wherein the first microstructure is an engagement protrusion and the second microstructure is an engagement recess.
6 . The fan device of claim 4 , wherein the first microstructure includes a first joint section and a second joint section that are connected at one end and arranged at an angle relative to each other, the second microstructure includes a third joint section and a fourth joint section that are connected at one end and arranged at an angle relative to each other, the first joint section being aligned with the third joint section, and the second joint section being aligned with the fourth joint section.
7 . The fan device of claim 4 , further comprising a plurality of first and second microstructures, the first plurality of microstructures are arranged circumferentially along the first annular engagement portion, and the second plurality of microstructures are arranged circumferentially along the second annular engagement portion.
8 . The fan device of claim 1 , wherein the metal annular frame at least partially protrudes out of the coupling groove.
9 . The fan device of claim 1 , wherein the metal annular frame is coupled to the coupling groove via insert molding.
10 . The fan device of claim 1 , wherein a minimum clearance between the fan blade assembly and the metal annular frame is 0.3 millimeters.
11 . A method of assembling a fan device for electronic cooling systems, the method comprising:
forming a fan frame having an inner annular surface and a coupling groove radially recessed inward from the inner annular surface towards a center of the fan device;
forming a first annular engagement portion in the coupling groove;
forming a fan blade assembly and rotatably mounting the fan blade assembly in a receiving space defined by the inner annular surface;
forming a metal annular frame with a second annular engagement portion; and
inserting the metal annular frame into the coupling groove such that the metal annular frame is positioned between the fan frame and the fan blade assembly,
wherein the metal annular frame is mechanically retained within the coupling groove and surrounds the fan blade assembly.
12 . The method of claim 11 , wherein the first annular engagement portion and the second annular engagement portion are complementarily interlocking to secure the metal annular frame within the coupling groove.
13 . The method of claim 11 , wherein the first annular engagement portion includes an annular engagement protrusion and the second annular engagement portion includes an annular engagement recess.
14 . The method of claim 11 , further comprising forming at least one first microstructure on the first annular engagement portion and at least one second microstructure on the second annular engagement portion, wherein the first and second microstructures are complementarily interlocking.
15 . The method of claim 14 , wherein the first microstructure is an engagement protrusion and the second microstructure is an engagement recess.
16 . The method of claim 14 , wherein the first microstructure includes a first joint section and a second joint section that are connected at one end and arranged at an angle relative to each other, the second microstructure includes a third joint section and a fourth joint section that are connected at one end and arranged at an angle relative to each other, the first joint section being aligned with the third joint section, and the second joint section being aligned with the fourth joint section.
17 . The method of claim 14 , further comprising a plurality of first and second microstructures, the first plurality of microstructures are arranged circumferentially along the first annular engagement portion, and the second plurality of microstructures are arranged circumferentially along the second annular engagement portion.
18 . The method of claim 11 , wherein the metal annular frame at least partially protrudes out of the coupling groove.
19 . The method of claim 11 , wherein the metal annular frame is coupled to the coupling groove via insert molding.
20 . The method of claim 11 , wherein a minimum clearance between the fan blade assembly and the metal annular frame is 0.3 millimeters.