AIR INFLATOR DEVICE
20220018343 ยท 2022-01-20
Inventors
Cpc classification
F04B39/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/121
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/5806
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B39/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An air inflator device contains: an accommodation box and an air compressor. The accommodation box includes a cap and a case, and the air compressor and an air guiding mechanism are received in the cap and the case. The air guiding mechanism is configured to frame a cooling fan which is rotatably with a motor of the air compressor. A flowing orifice is defined by the first directing portion and the second directing portion, and a first semicircular cover and a second semicircular cover of the air guiding mechanism are configured to collect and guide airs so that the cooling fan rotates to guide the airs to the air compressor quickly, thus dissipating heat and prolonging a service life of the air compressor.
Claims
1. An air inflator device comprising: an accommodation box and an air compressor, the accommodation box including a cap and a case, and the air compressor being received in the cap and the case, an air guiding mechanism being also received in the accommodation box and being configured to frame a cooling fan which is rotatably with a motor of the air compressor, characterized in that a flowing orifice is defined by a first directing portion and a second directing portion, and a first semicircular cover and a second semicircular cover of the air guiding mechanism are configured to collect and guide airs so that the cooling fan rotates to guide the airs to the air compressor quickly, thus dissipating heat and prolonging a service life of the air compressor.
2. The air inflator device as claimed in claim 1, characterized in that the cap is formed in a rectangular frame shape and includes a first panel formed on a top of the cap, a button located beside the first panel and configured to turn on/off the air compressor, and a fluid guide structure which has a first directing portion.
3. The air inflator device as claimed in claim 2, characterized in that the first directing portion has a first recess defined on a side of a first peripheral fringe of the cap, and the first semicircular cover extending on the first recess, wherein the first semicircular cover has a first rib and a first arcuate fence, wherein the cap further includes multiple first elongated orifices separately formed on the first arcuate fence, and the first semicircular cover is integrally formed with the cap.
4. The air inflator device as claimed in claim 3, characterized in that the case is formed in a rectangular frame shape and includes a fluid guide structure has a second directing portion the same as the first directing portion, the second directing portion has a second recess defined on a side of a second peripheral fringe of the case below a second panel of a top of the case, and a second semicircular cover extending on the second recess, wherein the second semicircular cover has a second rib and a second arcuate fence; the cap further includes multiple first elongated orifices separately formed on the first arcuate fence, and the second semicircular cover is integrally formed with the case.
5. The air inflator device as claimed in claim 4, characterized in that after the air compressor is received in the cap and the case, the first directing portion of the cap and the second directing portion of the case frame the cooling fan, and the cooling fan is rotatably with the motor of the air compressor, thus avoiding a strike of the cooling fan; wherein a flowing orifice is defined by the first directing portion and the second directing portion.
6. The air inflator device as claimed in claim 5, characterized in that a first datum line is defined between the first peripheral fringe and the second peripheral fringe, a back line of the cooling fan located in an air flowing zone is defined as a second datum line; wherein the multiple first elongated orifices and the multiple second elongated orifices are located in an area between the first datum line and the second datum line; when the cooling fan rotates, the external airs are drawn into the accommodation box from the multiple first elongated orifices and the multiple second elongated orifices.
7. The air inflator device as claimed in claim 4, characterized in that the first panel of the cap has a first fixing extension extending on an inner wall thereof and configured to guide the airs and to fix the motor of the air compressor, and the second panel of the case has a second fixing extension extending on an inner wall thereof and configured to guide the airs and to fix the motor of the air compressor; the first fixing extension has a tilted face formed on a center thereof, a first tilted fence extending from a first end of the tilted face to the first peripheral fringe, a second tilted fence extending from a second end of the tilted face to the first peripheral fringe, wherein the tilted face, the first tilted fence, and the second tilted fence guide the airs forward smoothly, wherein a structure of the second fixing extension is identical to that of the first fixing extension.
8. The air inflator device as claimed in claim 7, characterized in that the first panel of the cap has a first arcuate sheet extending from an inner wall thereof, and the second panel of the case has a second arcuate sheet extending from an inner wall thereof and corresponding to the first arcuate sheet.
9. The air inflator device as claimed in claim 2, characterized in that wherein a first recess of a first directing portion is defined on a first panel of a cap, and a first semicircular cover is integrally formed on the first recess, wherein the first semicircular cover is arcuate, the cap further includes multiple first elongated orifices separately formed on a side of a first peripheral fringe of the first panel, and the first peripheral fringe faces the first directing portion.
10. The air inflator device as claimed in claim 9, characterized in that the case is formed in a rectangular frame shape and includes a fluid guide structure has the second directing portion the same as the first directing portion, wherein a structure of the second directing portion is identical to that of the first directing portion, wherein the second directing portion includes a second recess defined on a second panel of a case, and a second semicircular cover integrally formed on the second recess, wherein the second semicircular cover is arcuate, and multiple second elongated orifices are separately formed on a side of a second peripheral fringe of the second panel, wherein the second peripheral fringe faces the second directing portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019] With reference to
[0020] Referring to
[0021] Referring to
[0022] As shown in
[0023] With reference to
[0024] The first panel 10 of the cap 1 has a first fixing extension 34 extending on an inner wall thereof and configured to guide the airs and to fix the motor 92 of the air compressor 9, and the second panel 20 of the case 2 has a second fixing extension 44 extending on an inner wall thereof and configured to guide the airs and to fix the motor 92 of the air compressor 9. The first fixing extension 34 has a tilted face 341 formed on a center thereof, a first tilted fence 342 extending from a first end of the tilted face 341 to the first peripheral fringe 12, a second tilted fence 343 extending from a second end of the tilted face 341 to the first peripheral fringe 12, as shown in
[0025] The first panel 10 of the cap 1 has a first arcuate sheet 35 extending from an inner wall thereof, and the second panel 20 of the case 2 has a second arcuate sheet 36 extending from an inner wall thereof and corresponding to the first arcuate sheet 35, wherein a third arcuate sheet of the case is not shown.
[0026] The first fixing extension 34 of the cap 1 and the second fixing extension 44 of the case 2 abut against a first vent 92a of the motor 92 so that the tilted face 341 of the first fixing extension 34 and the second fixing extension 44 guide the airs to the first vent 92a of the motor 92 directly, the first arcuate sheet 35 and the second arcuate sheet 36 guide the airs to a second vent 92b, and the airs flow into the motor 92 from the first vent 92a and the second 92b, hence a heat resulting from a friction of a carbon brush and a commutator of the motor 92 and electric currents of armature winding are dissipated.
[0027] With reference to
[0028] A structure of the second directing portion 8 is identical to that of the first directing portion 7, wherein the second directing portion 8 includes a second recess 81 defined on a second panel 620 of a case 62, and a second semicircular cover 82 integrally formed on the second recess 81, wherein the second semicircular cover 82 is arcuate, and multiple second elongated orifices 83 are separately formed on a side of a second peripheral fringe 621 of the second panel 620, wherein the second peripheral fringe 621 faces the second directing portion 8.
[0029] The first panel 610 of the cap 61 has a first arcuate sheet 63 extending from an inner wall thereof, and the second panel 620 of the case 62 has a second arcuate sheet 64 extending from an inner wall thereof and corresponding to the first arcuate sheet 63, wherein a third arcuate sheet of the case 62 is not shown.
[0030] Accordingly, the air inflator device of the present invention contains the accommodation box and the air compressor 9 received in the accommodation box, and the air guiding mechanism is also received in the accommodation box and is configured to frame the cooling fan 91 which is rotatably with the motor 92 of the air compressor 9. The air guiding mechanism is configured to collect and guide the airs so that the cooling fan 91 rotates to guide the airs to the air compressor 9, thus dissipating the heat and prolonging the service life of the air compressor 9.
[0031] While the preferred embodiments of the invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the invention and other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.