Inflating module for use with an inflatable object
09989979 ยท 2018-06-05
Assignee
Inventors
Cpc classification
F04B39/0027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/36
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/85994
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F04B1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/503
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/86035
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
E03B5/00
FIXED CONSTRUCTIONS
F04D29/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An inflating module adapted to an inflatable object includes a pressure controlling assembly configured to monitor air pressure in the inflatable object after the inflatable body has been inflated and a supplemental air pressure providing device. The pressure controlling assembly is configured to automatically activate the supplemental air pressure providing device when the air pressure inside the inflatable object decreases below a predetermined threshold after inflation, and to control the supplemental air pressure providing device to provide supplemental air pressure to the inflatable object so as to maintain the air pressure of the inflatable object within a predetermined range.
Claims
1. An inflating module adapted to an inflatable object comprising an inflatable body, the inflating module used in conjunction with a pump that provides primary air pressure and comprising: a pressure controlling assembly configured to monitor air pressure in the inflatable object after the inflatable body has been inflated by the pump; and a supplemental air pressure providing device, wherein the pressure controlling assembly is configured to automatically activate the supplemental air pressure providing device when the pressure controlling assembly detects that the air pressure inside the inflatable object decreases below a predetermined threshold after inflation by the pump, and to control the supplemental air pressure providing device to provide supplemental air pressure to the inflatable object so as to maintain the air pressure of the inflatable object within a predetermined range.
2. The inflating module as claimed in claim 1, wherein the supplemental air pressure providing device comprises a housing with an air blower received inside the housing to provide supplemental air pressure, an air chamber defined inside the housing, and absorbent disposed in the air chamber such that noise caused by operation of the air blower is minimized by the absorbent.
3. The inflating module as claimed in claim 1, wherein the supplemental air pressure providing device further comprises an outer housing with an inner housing integrally formed inside.
4. The inflating module as claimed in claim 3, wherein the supplemental air pressure providing device further comprises at least one noise silencer positioned between the outer housing and the inner housing.
5. The inflating module as claimed in claim 1, wherein the supplemental air pressure providing device further comprises a nozzle through which air is pumped and absorbent connected to the nozzle for reducing noise inside the nozzle.
6. An inflating module adapted to an inflatable object comprising an inflatable body, the inflating module comprising: a pressure controlling assembly configured to monitor air pressure in the inflatable object after the inflatable body has been inflated; and a supplemental air pressure providing device comprising: an inner housing comprising a first inlet in communication with ambient air; a first chamber located in the inner housing, the first chamber comprising a second inlet and a first outlet, the second inlet being in communication with the first inlet; an oscillator; an air blower operably connected to the oscillator, the air blower comprising a metal casing and a rubber cap arranged such that activation of the oscillator drives the metal casing to expand and contract, thereby causing the rubber cap to draw air into the second inlet and drive air out of the first outlet; a second chamber having a third inlet and a second outlet, the third inlet being in communication with the first outlet; and a one-way valve arranged to prevent a back flow of air from the inflatable body through the supplemental air pressure providing device; wherein the pressure controlling assembly is configured to automatically activate the supplemental air pressure providing device when the pressure controlling assembly detects that the air pressure inside the inflatable object decreases below a predetermined threshold after inflation, and to control the supplemental air pressure providing device to provide supplemental air pressure to the inflatable object so as to maintain the air pressure of the inflatable object within a predetermined range.
7. The inflating module as claimed in claim 6, wherein the supplemental air pressure providing device comprises a housing with the air blower received inside the housing, an air chamber defined inside the housing, and absorbent disposed in the air chamber such that noise caused by operation of the air blower is minimized by the absorbent.
8. The inflating module as claimed in claim 6, wherein the supplemental air pressure providing device further comprises an outer housing, wherein the inner housing is integrally formed inside the outer housing.
9. The inflating module as claimed in claim 8, wherein the supplemental air pressure providing device further comprises at least one noise silencer positioned between the outer housing and the inner housing.
10. The inflating module as claimed in claim 6, wherein the supplemental air pressure providing device further comprises a nozzle through which air is pumped and absorbent connected to the nozzle for reducing noise inside the nozzle.
11. An inflating module adapted to an inflatable object comprising an inflatable body, the inflating module used in conjunction with a pump that provides primary air pressure and comprising: a pressure controlling assembly configured to monitor air pressure in the inflatable object after the inflatable body has been inflated by the pump; and a supplemental air pressure providing device comprising: an inner housing comprising a first inlet in communication with ambient air; a first chamber located in the inner housing, the first chamber comprising a second inlet and a first outlet, the second inlet being in communication with the first inlet; an oscillator, a metal casing and a rubber cap arranged such that activation of the oscillator drives the metal casing to expand and contract, thereby causing the rubber cap to draw air into the second inlet and drive air out of the first outlet; and a second chamber having a third inlet and a second outlet, the third inlet being in communication with the first outlet and the second outlet being in communication with the inflatable body; wherein the pressure controlling assembly is configured to automatically activate the supplemental air pressure providing device to provide supplemental air pressure to the inflatable object when the pressure controlling assembly detects that the air pressure inside the inflatable object decreases below a predetermined threshold after inflation by the pump.
12. The inflating module as claimed in claim 11, wherein the pressure controlling assembly is configured to control the supplemental air pressure providing device to maintain the air pressure of the inflatable object within a predetermined range.
13. The inflating module as claimed in claim 11, further comprising an outer housing comprising a fourth inlet, the inner housing being received in the outer housing and the first inlet being in communication with ambient air via the fourth inlet.
14. The inflating module as claimed in claim 13, wherein the supplemental air pressure providing device further comprises at least one noise silencer positioned between the outer housing and the inner housing.
15. The inflating module as claimed in claim 14, wherein the at least one noise silencer comprises rubber.
16. The inflating module as claimed in claim 11, wherein a noise absorbent is applied to the first inlet.
17. The inflating module as claimed in claim 11, further comprising a third chamber between the second chamber and the inflatable body, the third chamber having a fourth inlet and a third outlet, the fourth inlet being in communication with the second outlet and the third outlet being in communication with the inflatable body, wherein the third chamber comprises a noise absorbent.
18. The inflating module as claimed in claim 17, further comprising an air duct, wherein the third outlet comprises a nozzle and is in communication with the inflatable body via the nozzle and air duct.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(19) With reference to
(20) Eventually the valve 16 is pushed away from the sidewall of the housing 20. A further illustration from
(21) Aside from the description of the structure as well as the movement of the valve controlling assembly, near the bottom end of the shaft 14, a plurality of threaded-like arcuate wedges 141 are formed on the outer periphery of the shaft 14. A pivot 142 is pivotally formed on a sidewall of the housing 20 and has a ledge 143 integrally formed on a distal end thereof to mate with the arcuate wedges 141. The pivot 142 is further provided with an integrally formed path assembly 3 which has at least one air path formed to selectively communicate the internal space of the inflatable object with the internal space of the air pump 6. In this embodiment of the present invention, it is noted that there is at least one air path 31 formed on the path assembly 3. Therefore, the rotation of the knob 1 leads the rotation of the arcuate wedges 141, which forces the ledge 143 to move either upward or downward to allow the air path 31 to communicate with the internal space of the air pump 6. Therefore, it is also learned that the rotation of the knob 1 can also determine the path of air flow, i.e. into or out of the inflatable object.
(22) From the illustration of
(23) As described, the rotation of the knob 1 can be clockwise or counterclockwise and because of the provision of the contact disk 5 on the shaft 14, the air pump 6 can be activated to provide air flow into or out of the inflatable object, as can best be seen from
(24) With reference to
(25) The operational sequence of the automatic supplemental air pressure providing device of a preferred embodiment of the present invention is that after the oscillator 42 is activated electrically, magnets provided on top of the metal casing 47 will be moved by the activated oscillator 42. As the magnets (not numbered) are securely provided on an outer periphery of the metal casing 47, movement of the magnets drives the metal casing 47 to move simultaneously. Movement of the metal casing leads the rubber cap 48 to move like a bellow, which drives air sucked in from ambient to flow through the first check valve 26, the second check valve 27, the absorbent 28 and the outlet 29. Once the air flow is out of the outlet 29, it is flowing into the second chamber 31, as shown in
(26) With reference to
(27) When the automatic supplemental air pressure providing device of the preferred embodiment of the present invention is in operation, it is learned that air flows from the inlet 21 and enters the outer casing 43. Then the air continues to flow through the second inlet 22 and enters the inner housing 23. Through the inlet 24, the air flows into the casing 25 and passes the first check valve 26 and the second check valve 27 before passing through the space 51 where the air is compressed due to the movement of the metal casing 47 as well as the rubber cap 48. Eventually the air exits from the outlet 29 after passing through the absorbent 28. Then the air flows into the second air chamber 31 and passes through the check valve 32, the outlet 33 and enters the unidirectional cap 34. Finally, the air flows to the chamber 36 from the outlet 35 and reaches absorbent 37, 38 and eventually reaches the inflatable object from the nozzle 39 before passing through the air duct 40. From the structure as described hereinbefore, it is learned that all the vibrations, noise caused by the operation of either or both the air blower and the air pump shall be minimized to reach a goal of providing a quiet and comforting structure to the user.
(28) It is to be noted that although the preferred embodiment of the present invention has been described, other modifications, alterations or minor change to the structure should still be within the scope defined in the claims. As those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.