Device for inflating automobile tires
11167733 ยท 2021-11-09
Assignee
Inventors
- Jui Meng Huang (Changhua County, TW)
- Yen Chun Huang (Changhua County, TW)
- Chang Yu Huang (Changhua County, TW)
Cpc classification
B60C25/18
PERFORMING OPERATIONS; TRANSPORTING
B60S5/043
PERFORMING OPERATIONS; TRANSPORTING
B60S5/04
PERFORMING OPERATIONS; TRANSPORTING
B60C29/04
PERFORMING OPERATIONS; TRANSPORTING
B60C29/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60S5/04
PERFORMING OPERATIONS; TRANSPORTING
B60C29/06
PERFORMING OPERATIONS; TRANSPORTING
B60C25/18
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for inflating a tire includes a forward sleeve including an internally threaded head; an air intake assembly including a joining member secured to the forward sleeve and having a constricted section and an air inlet; an air intake extending out of the joining member at an acute angle and having an air channel for communicating with the air inlet through the constricted section, and a connector; and a rear sleeve secured to the joining member; and a valve assembly including a rod through both the rear sleeve and the joining member; a mounting sleeve in the forward sleeve and having a groove at a first end, the groove being in the internally threaded head, and a fitting hole communicating with the groove; a flexible tubular member in the mounting sleeve; a handle secured to the rod; and a snap ring on the rod.
Claims
1. A device for inflating a tire including a valve having external threads, and an injection nozzle including a projection and a needle projecting rearward from the projection, comprising: a forward sleeve including an internally threaded head at a first end, the internally threaded head being configured to threadedly secure to the external threads; an air intake assembly including a joining member having a first end secured to a second end of the forward sleeve, the joining member having a constricted section and an air inlet at a second end; an air intake extending out of the joining member at an acute angle and having an air channel adjacent to the constricted section, the air channel being configured to be in fluid communication with the air inlet through the constricted section, and a connector; and a rear sleeve having a first end secured to a second end of the joining member; and a valve assembly including a rod through both the rear sleeve and the joining member; a mounting sleeve in a first end of the forward sleeve and having a groove at a first end, the groove being in the internally threaded head, and a fitting hole configured to be in fluid communication with the groove; a flexible tubular member disposed in the mounting sleeve and having a positioning section in the fitting hole; a handle secured to a second end of the rod; and a snap ring disposed on the rod; wherein the projection is fastened by the groove and the needle is inserted into the positioning section; wherein a push of the handle pushes the injection nozzle into the external threads; and wherein the snap ring is configured to limit a rearward movement of the valve assembly when the snap ring is stopped by the constricted section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(11) Referring to
(12) The device 10 comprises a forward sleeve 21 including an internally threaded head 22 at a first end, the internally threaded head 22 being threadedly secured to the external threads 911; an air intake assembly 31 including a joining member 32 having a first end secured to a second end of the forward sleeve 21 and using an O-ring 23 to seal a joining portion of the joining member 32 and the internally threaded head 22, the joining member 32 having a constricted section 322 and an air inlet 321 at a second end; an air intake 34 extending out of the joining member 32 at an acute angle and having an air channel A adjacent to the constricted section 322 and communicating with the air inlet 321 through the constricted section 322, and a connector 341 at a distal end for releasably connecting to a pressurized air source 99; and a rear sleeve 33 having a first end secured to a second end of the joining member 32; and a valve assembly 11 including a rod 12 through both the rear sleeve 33 and the joining member 32; a mounting sleeve 13 in a first end of the forward sleeve 21 and having a groove 131 at a first end, the groove 131 being in the internally threaded head 22, and a fitting hole 132 communicating with the groove 131; a flexible tubular member 14 disposed in the mounting sleeve 13 and having a positioning section 141 in the fitting hole 132; a handle 15 secured to a second end of the rod 12; and a snap ring 16 snapped into an annular groove (not numbered) on the rod 12. The projection 921 is fastened by the groove 131. The needle 922 is inserted into the positioning section 141 to be positioned. An air path Y consists of the joining member 32, the rear sleeve 33 and the forward sleeve 21 and the air path Y communicates with the atmosphere through the air inlet 321 and the air channel A. The snap ring 16 may limit a rearward movement of the valve assembly 11 when the snap ring 16 is stopped by the constricted section 322.
(13) As shown in
(14) As shown in
(15) Referring to
(16) The device 40 comprises a forward tube 21; an air intake assembly 31 including a joining member 32 having a first end secured to a second end of the forward tube 21 and using an O-ring 46 to seal a joining portion of the forward tube 21 and the internally threaded head, the joining member 32 having a constricted section 322 and an air inlet 321 at a second end; an air intake 34 extending out of the joining member 32 at an acute angle and having an air channel A adjacent to the constricted section 322 and communicating with the air inlet 321 through the constricted section 322, and a connector 341 at a distal end for releasably connecting to a pressurized air source 99; and a rear sleeve 33 having a first end secured to a second end of the joining member 32; a valve assembly 11 including a rod 12 through both the joining member 32 and the rear sleeve 33; a hollow mounting sleeve 13 projecting out of a first end of the rod 12 in the forward tube 21 and having a groove (not numbered) at a first end; a flexible tubular member (not numbered) 14 disposed in the mounting sleeve 13; a handle 15 secured to a second end of the rod 12; and a snap ring 16 snapped into an annular groove (not numbered) on the rod 12; a forward sleeve assembly 81 including a rear annular flange 84 on the forward tube 21, an intermediate sleeve 83 extending forward out of the flange 84 and put on the forward tube 21, and an internally threaded forward sleeve 82 secured to forward external threads (not numbered) of the intermediate sleeve 83; a nozzle connection assembly 41 in the forward sleeve 82 and including a rear enlargement 44, a forward tubular member 42 threadedly secured to the enlargement 44, two opposite grooves 43 on the tubular member 42, and an axial channel 45 through both the enlargement 44 and the tubular member 42; a limit ring 61 mounted on the tubular member 42; a compression spring 71 biased between the limit ring 61 and a shoulder between the enlargement 44 and the tubular member 42; and two rod-shaped catches 51 in the grooves 43 respectively and having two round ends 53 contacting the limit ring 61, and a shank 52.
(17) An air path consists of the joining member 32, the rear sleeve 33 and the forward sleeve 21 and the air path communicates with the atmosphere through the air inlet 321 and the air channel A. A push of the handle 15 is required prior to inflating the tire. After the tire has been inflated, a pull of the handle 15 returns the device 40 to the inoperative state. The snap ring 16 may limit a rearward movement of the valve assembly 11 when the snap ring 16 is stopped by the constricted section 322.
(18) While the invention has been described in terms of preferred embodiments, those skilled in the art will recognize that the invention can be practiced with modifications within the spirit and scope of the appended claims.