Field of the Invention
The present invention relates to an air connector for inflating air, and more particularly to a quick air connector structure for a pneumatic valve which is operated easily and quickly
Description of the Prior Art
A conventional air connector is connected with an air inflating apparatus (such as a pump, a pneumatic pump, or a gas cylinder) and a tire to inflate air into the tire from the air inflating apparatus, thus inflating air into the tire.
Conventional air inflating manners contains retaining an air connector with a pneumatic valve by ways of a compression rubber, but the air connector cannot connect with the pneumatic valve tightly and is only used in an air inflating process at a low pressure. In other words, as inflating air at a high pressure, the air connector is sprayed by the high pressure to remove from the pneumatic valve, so a user has to press the air connector downwardly with one hand and to rotate the air connector tightly with the other hand.
The other air inflating manners is to screw male threads with female threads so that the air connector is screwed with the pneumatic valve. However, when screwing the male threads with the female threads at the high pressure, the user has to screw the air connector with the pneumatic valve with one hand and to hold the tire with the other hand, thus having troublesome operation.
As illustrated in
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a quick connector structure for a pneumatic valve in which plural first locking teeth of a first limiting block engage with or disengage from Presta threads of Presta valve, and plural second locking teeth of a second limiting block engage with or disengage from Schrader threads of Schrader valve, thus obtaining quick assembly, secure connection, and high-pressure inflation.
In addition, a first locking unit includes a closing ring fixed on a smallest area thereof to flow air, so a conventional airtight structure configured between a control set and a body is eliminated to achieve brilliant airtightness and easy operation of the control set.
Another objective of the present invention is to provide a quick connector structure for a pneumatic valve in which the air connector is operated with user's one hand to control the first limiting block and the second limiting block by using the control set, hence the air connector is connected with or is removed from the Schrader valve and the Presta valve easily.
Accordingly, a quick connector structure for a pneumatic valve provided by the present invention is connected with at least one valve to inflate air, and each of the at least one valve includes threads arranged around an outer peripheral side thereof, the air connector contains: a body, at least one locking unit, and a control set.
The body includes at least one inserting hole formed on a first end thereof and an air intake defined on a second end thereof and communicating with the at least one inserting hole, wherein an airtight washer is fixed between the at least one inserting hole, and the body includes at least one through orifice arranged on an outer peripheral side thereof and passing through the at least one inserting hole.
The at least one locking unit includes at least one limiting block matching with and fixed in the at least one through orifice and moving into or out of the at least one through orifice, wherein each of the at least one limiting block has a retaining segment corresponding to each of the at least one inserting hole, and the retaining segment of each limiting block has plural locking teeth, wherein each of the at least one limiting block also has a defining segment extending outwardly from an outer peripheral side thereof, and between each limiting block and the at least one through orifice is defined a closing ring to close an air flowing gap between each limiting block and the at least one through orifice.
The control set is fitted with the body and alternatively presses the defining segment of each limiting block to control each limiting block to move into and position in the at least one inserting hole.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
With reference to
The body 10 is comprised of a first part 10A, a second part 10B, and a third part 10C, wherein the first part 10A is in connection with the second part 10B, and the second part 10B is coupled with the third part 10C. The body 10 includes a Schrader inserting hole 11 formed on a first end thereof and includes a Presta inserting hole 12, an outer diameter of which is less than an outer diameter of the Schrader inserting hole 11, and the Presta inserting hole 12 is spaced a distance away from an inner end of the Schrader inserting hole 11. The body 10 also includes an accommodation groove 13 defined inside the Presta inserting hole 12; an air intake 14 defined on a second end thereof and communicating with the Schrader inserting hole 11, the Presta inserting hole 12, and the accommodation groove 13; at least one first through orifice 15 arranged on an outer peripheral side of the body 10 and passing through the Presta inserting hole 12; at least one second through orifice 16 arranged on the outer peripheral side of the body 10 and passing through the Schrader inserting hole 11; an airtight washer 17 fixed between the Schrader inserting hole 11 and the Presta inserting hole 12; and at least one third through orifice 18 defined on the outer peripheral side of the body 10 and passing through the accommodation groove 13; wherein the air intake 14 is located at the first part 10A, the accommodation groove 13 is defined in the first part 10A and the second part 10B, the Presta inserting hole 12 and the at least one first through orifice 15 are defined in the second part 10B, and the Schrader inserting hole 11 and the at least one second through orifice 16 are arranged in the third part 10C.
The first locking unit 20 includes a first limiting block 21 matching with and fixed in the at least one first through orifice 15 and moving into or out of the at least one first through orifice 15. The first limiting block 21 has a first retaining segment 211 corresponding to the Presta inserting hole 12, and the first retaining segment 211 has plural first locking teeth 2111 for engaging with the Presta threads 3A of the Presta valve 3. The first limiting block 21 also has a first defining segment 212 extending outwardly from an outer peripheral side thereof, wherein between the outer peripheral side of the first limiting block 21 and the at least one first through orifice 15 is defined a closing ring 22 to close an air flowing gap between the first limiting block 21 and the at least one first through orifice 15, and a first pushing spring 23 is fixed between the first limiting block 21 and the body 10 and pushes the first limiting block 21 to move away from the Presta inserting hole 12.
The second locking unit 30 includes a second limiting block 31 matching with and fixed in the at least one second through orifice 16 and moving into or out of the at least one second through orifice 16, the second limiting block 31 has a second retaining segment 311 corresponding to the Schrader inserting hole 11, and the second retaining segment 311 has plural second locking teeth 3111 for engaging with the Schrader threads 2A of the Schrader valve 2. The second limiting block 31 also has a second defining segment 312 extending outwardly from one end thereof, wherein a second pushing spring 32 is fixed between the second limiting block 31 and the body 10 and pushes the second limiting block 31 to move away from the Schrader inserting hole 11.
The control set 40 is disposed on the body 10 and controls the first defining segment 212 of the first limiting block 21 and the second defining segment 312 of the second limiting block 31 so that the plural first locking teeth 2111 of the first retaining segment 211 of the first limiting block 21 and the plural second locking teeth 3111 of the second retaining segment 311 of the second limiting block 21 move in or away from the Presta inserting hole 12 and the Schrader inserting hole 11. The control set 40 is formed in a ring shape and is fitted with the body 10. The control set 40 includes a pressing protrusion 41 to stop a movement of the defining segment 212 of the second limiting block 21, and the control set 40 stops a movement of the second defining segment 312 of the second limiting block 31 by using its inner peripheral side.
The movable post 50 is mounted in and is limited by the accommodation groove 13 of the body 10 to move between the air intake 14 and the Schrader inserting hole 11, and the movable post 50 includes a pressing segment 51 corresponding to the Schrader inserting hole 11 and includes a limitation segment 52 relative to the pressing segment 51, such that the movable post 50 is configured to flow the air, and the pressing segment 51 corresponds to the Schrader inlet valve 2B.
The spring 60 is secured between the accommodation groove 13 of the body 10 and the movable post 50, such that the spring 60 pushes the movable post 50 to move toward the Schrader inserting hole 11.
The positioning device 70 includes at least one steel ball 71 correspond to the at least one third through orifice 18, wherein the at least one steel ball 71 is slidably fixed in the at least one third through hole 18. The positioning device 70 also includes a fitting sleeve 72 fitted with the body 10 and corresponding to the at least one third through orifice 18, and the at least one steel ball 71 is controlled by the fitting sleeve 72 to move into or out of the accommodation groove 13.
Referring to
Referring further to
As shown in
When the spring 60 does not operate, the movable post 50 is forced by the air pressure to move toward the Schrader inserting hole 11.
The quick connector structure for a pneumatic valve is also embodied as illustrated in
Thereby, the quick connector structure for a pneumatic valve of the present invention has advantages as follows:
1. The quick connector structure of an air connector 1 is connected with the Schrader valve 2 and the Presta valve 3, wherein the plural first locking teeth 2111 of the first limiting block 21 engage with or disengage from the Presta threads 3A of the Presta valve 3, and the plural second locking teeth 3111 of the second limiting block 31 engage with or disengage from the Schrader threads 2A of the Schrader valve 2, thus obtaining quick assembly, secure connection, and high-pressure inflation. In addition, the first locking unit 20 includes the closing ring 22 fixed on a smallest area thereof to flow the air, so a conventional airtight structure configured between the control set 40 and the body 10 is eliminated in this present invention to achieve brilliant airtightness and easy operation of the control set 40.
2. The air connector 1 is operated with user's one hand to control the first limiting block 21 and the second limiting block 31 by using the control set 40, hence the air connector 1 is connected with or is removed from the Schrader valve 2 and the Presta valve 3 easily.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.