CHECK STRUCTURE FOR CONNECTION OF AIR NOZZLE OF TIRE AND CONNECTION HOSE OF AIR COMPRESSOR
20210086460 ยท 2021-03-25
Inventors
Cpc classification
F16L37/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B29C73/16
PERFORMING OPERATIONS; TRANSPORTING
B29C73/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A check structure for a connection of an air nozzle of a tire and a connection hose of an air compressor, the air compressor contains: a box, a sealant supply can, and a connection hose. The box includes a body of the air compressor. The sealant supply can includes an open segment and a supply tube. The connection hose includes a first segment and a second segment. The second segment has a check connector which includes a fitting sleeve, and the fitting sleeve has a threaded orifice, a through orifice, and a projected shoulder. A cylindrical base includes a hollow room, a stepped coupling segment, a conduit, and a tilted fence. A valve bolt includes a post, a connecting disc, multiple peripheral channels, a neck, multiple spaced slots, and a seal ring. A first spring is received into the conduit from the stepped coupling segment of the cylindrical base.
Claims
1. A check structure for a connection of an air nozzle of a tire and a connection hose of an air compressor, and the air compressor comprising: a box including a body of the air compressor accommodated in the box and started by a power supply; a sealant supply can including an open segment extending downward and configured to accommodate chemical sealant for repairing the tire which is broken, and the sealant supply can including a supply tube; a connection hose including a first segment formed on a first end of the connection hose, and the connection hose including a second segment formed on a second end the connection hose, the first segment being connected with the supply tube of the sealant supply can, and the second segment connected with the air nozzle of the tire; wherein a second segment has an check connector connected thereon, and the check connector includes a fitting sleeve, wherein the fitting sleeve has a threaded orifice formed in a first end thereof and having female threads, a through orifice defined on a second end of the fitting sleeve, and a projected shoulder formed on an inner wall of the through orifice, wherein a diameter of the projected shoulder is more than a diameter of the through orifice, and the threaded orifice is communicated with and the through orifice; wherein a cylindrical base includes a hollow room defined in the cylindrical base, a stepped coupling segment extending on an outer wall of a first end of the cylindrical base, and a conduit defined in the stepped coupling segment and communicating with the hollow room, wherein a diameter of the conduit is more than a diameter of the hollow room, and the cylindrical base further includes a tilted fence formed between the hollow room and the conduit; wherein a valve bolt includes a post extending on a first end thereof, a connecting disc extending from a second end of the valve bolt, multiple peripheral channels formed around a peripheral wall of the connecting disc, a neck formed between the post and a first end of the connecting disc, and multiple spaced slots defined around the post; wherein a seal ring is fitted on the neck of the valve bolt; wherein the first end of the valve bolt is put into the hollow room of the cylindrical base via the conduit and the hollow room of the stepped coupling segment of the cylindrical base so that the post of the valve bolt is located in the hollow room and a part of the post extends out of the cylindrical base, and the seal ring of the valve bolt is located in the conduit of the stepped coupling segment and contacts with the tilted fence of the cylindrical base; wherein a first spring is received into the conduit from the stepped coupling segment of the cylindrical base so that a first end of the first spring abuts against the connecting disc of the valve bolt; and wherein a distal end of the stepped coupling segment of the cylindrical base is pushed to form two opposite bent wings, and the two bent wings are configured to engage with the seal ring, the valve bolt, and the first spring, wherein the first spring pushes the seal ring to contact with the tilted fence of the cylindrical base and to close the hollow room of the cylindrical base.
2. The check structure as claimed in claim 1, wherein the fitting sleeve has a chamber defined therein, and the threaded orifice, the chamber, and the through orifice are communicated with one another; the cylindrical base includes a peg extending from a first end thereof and having a contacting rib extending outward from a distal end of the peg, a hollow room defined in the cylindrical base and the peg, a recessed section formed proximate to the stepped coupling segment, wherein a diameter of the cylindrical base is more than a diameter of the recessed section, and a stepped shoulder is defined between the cylindrical base and the recessed section.
3. The check structure as claimed in claim 2, wherein an abutting washer has a passing orifice and is fitted on the peg of the cylindrical base, a first end of the abutting washer contacts with the cylindrical base, and a second end of the abutting washer abuts against the contacting rib of the cylindrical base.
4. The check structure as claimed in claim 3, wherein the connecting disc has multiple spaced protrusions extending from a second end thereof, and the connecting disc has an accommodation space surrounded by the multiple spaced protrusions; the first end of the first spring abuts against the connecting disc of the valve bolt and is located at the accommodation space; and a plain washer is fitted on a second end of the first spring; when the stepped coupling segment connected with the abutting washer, the first spring, the plain washer and the seal ring is fitted to the through orifice of the projected shoulder from the threaded orifice of the fitting sleeve via the chamber, the projected shoulder contacts with the stepped shoulder of the cylindrical base.
5. The check structure as claimed in claim 4, wherein the stepped coupling segment of the cylindrical base extends out of the fitting sleeve to connect with the second segment of the connection hose, and a fixing bushing is configured to connect the connection hose and the check connector.
6. The check structure as claimed in claim 1, wherein a valve core assembly is accommodated in the air nozzle of the tire, and the valve core assembly includes a mounting, an arcuate stop shoulder surrounding around a mouth of the mounting and extending inward from an end of the mounting, and an aperture defined in the mounting; a hollow receiving sleeve having a retaining shoulder formed on a first end of the hollow receiving sleeve, and a holder formed on a second end of the hollow receiving sleeve; a central needle formed in a column shape and having multiple spaced ribs formed on the central needle; a second spring fitted with the central needle and a first end of the second spring abutting against the multiple spaced ribs of the central needle; the central needle being received in the hollow receiving sleeve from the first end of the hollow receiving sleeve so that a second end of the second spring contacts with the holder, and the second spring is surrounded by the receiving hollow sleeve; and an abutting loop fitted on a first end of the central needle; such that after the hollow receiving sleeve is connected with the mounting, the arcuate stop shoulder of the mounting engages with the retaining shoulder of the hollow receiving sleeve, a second end of the central needle extends out of the aperture of the mounting, and the second spring pushes the abutting loop of the central needle to close the holder of the hollow receiving sleeve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0015] With reference to
[0016] The box 1 includes a button 11 fixed on a top thereof, a coupling orifice 12 defined on a peripheral side thereof, and a body of the air compressor (not shown) accommodated in the box 1. The connection hose 4 includes a first segment 41 formed on a first end thereof, a second segment 42 formed on a second end thereof and having a check connector 5 connected on the second segment 42. The sealant supply can 2 is connected on the coupling orifice 12, and the tire sealant supply can 2 includes an open segment 21 extending downward, a bottom fringe 22 extending upward, and a supply tube 23 configured to engage with the first segment 41 of the connection hose 4. The check connector 5 of the second segment 42 of the connection hose 4 is screwed with an air nozzle 9 of a tire 99, when feeding chemical sealant and inflating compressed airs to the tire 99 which is broken. After the box 1 is started by a vehicle power supply or other DC power supplies, the compressed airs of the air compressor force the chemical sealant of the sealant supply can 2 to flow into the tire 99 via the connection hose 4, thus repairing and inflating the tire 99. The tire 99 is any one of an automobile tire, a motorcycle tire, and a bicycle tire.
[0017] Referring to
[0018] Referring to
[0019] As shown in
[0020] As illustrated in
[0021] Thereby, the check structure for the connection of the air nozzle of the tire and the connection hose of the air compressor is capable of avoiding the eruption of the chemical sealant in an incorrect operation.
[0022] 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.