The present invention relates to a universal female connector, and more particularly, to a universal female connector that is able to be connected with different types of male connectors.
There are many types of connectors used in the industrial field about fluid, and generally include a female connector and a male connector which is connected to the female connector so as to connect two pipes through which fluid goes.
As shown in
The present invention intends to provide a universal female connector which is easily connected to different types of male connectors. Besides, the universal female connector of the present invention is safe and reliable.
The present invention relates to a universal female connector and comprises a body having a head part and a tail part respectively connected to two ends of the body. A first path is defined axially through the head part and the body, and a second path is defined axially through the tail part. The first path communicates with the second path. The head part includes an annular recess defined in the inner periphery thereof. A hole is defined transversely through the wall of the body and communicates with the first path.
A movable unit is movably located within the first path, and includes an elongate hollow part which has a first end and a second end. The diameter of the first end of the elongate hollow part is larger than that of the second end of the elongate hollow part. A first seal is located in the elongate hollow part. Multiple beads are movably located in apertures defined through the wall of the first end of the elongate hollow part. Multiple engaging portions are formed on the outside of the middle portion of the elongate hollow part.
A valve unit is located in the second path of the tail part and includes a second seal, so as to prevent air in the second path from entering into the first part. A button unit is movably inserted into the hole of the body to position the elongate hollow part.
Preferably, the first seal is pushed by a male connector that is connected to the head part, when the male connector pushes the first seal, the elongate hollow part is pushed to be engaged with the button unit, and and the movable unit pushes the movable unit to communicate the first and second paths. The movable unit moves back to an initial position by pushing the button unit so as to disengage the male connector from the head part.
Preferably, the movable unit includes a first spring to push the elongate hollow part back to the initial position. The valve unit includes a second spring and a valve. The second spring pushes the valve to push the second seal. The second spring also pushes the valve unit back to an initial position of the valve unit. The button unit includes a third spring which is mounted to a protrusion of the button unit so as to push the button unit back to an initial position of the button unit.
Preferably, the movable unit includes a first engaging portion and a second engaging portion, wherein the first and second engaging portions are cone-shaped portions.
Preferably, the button unit includes a frame with an opening. The protrusion extends from one end of the frame. A first positioning face and a second positioning face are respectively formed within the opening of the frame so as to contact the first engaging portion or the second engaging portion. The first positioning face and the second positioning face are located alternatively with each other.
Preferably, the elongate hollow part includes a shoulder formed in the inner periphery thereof.
Preferably, the first seal includes multiple lips which flexibly extend radially from the inner periphery of the first seal.
Preferably, the body includes pressure release bore defined through the wall thereof, and the pressure release bore communicates with the first path.
The first seal of the present invention has a sealing feature when different types of male connectors are connected to the body. The male connectors can be the Industrial male connector, the Aro male connector, the Truflate male connector, the Rectus male connector and the Italian male connector.
The two engaging portions on the elongate hollow part and are located corresponding to the opening of the button unit so that when a male connector is connected to the body, the movable unit pushes the vale away and the positioning faces of the button unit are engaged with the engaging portion to position the elongate hollow part, such that the valve is kept as opened status to communicate the first path with the second path. When the button unit is pushed, the engaging portions are removed from the opening of the button unit, the elongate hollow part moves back to its initial position, and the male connector can be separated from the body, and the valve is closed.
When the male connector is separated from the body and the valve is closed, the pressurized air is released from the pressure release bore of the body to prevent from pushing the male connector to injure the users.
The present invention will become more apparent from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
As shown in
A movable unit 2 is movably located within the first path 11, and the movable unit 2 includes an elongate hollow part 20 which includes a first end 201 and a second end 202. The diameter of the first end 201 of the elongate hollow part 20 is larger than that of the second end 202 of the elongate hollow part 20. A first seal 21 is located in the elongate hollow part 20 and includes multiple lips 211 which flexibly extend radially from the inner periphery of the first seal 21. Multiple beads 22 are movably located in apertures defined through the wall of the first end 201 of the elongate hollow part 20. The beads 22 are to be engaged with the groove 901 of the male connectors 9 mentioned before. Two engaging portions are formed on the outside of the middle portion of the elongate hollow part 20. Specifically, the engaging portions are a first engaging portion 203 and a second engaging portion 204. The first and second engaging portions 203, 204 each are a cone-shaped portion. Further referring to
A valve unit 3 is located in the second path 102 of the tail part 12 so as to prevent the pressurized air in the second path 102 from entering into the first part 101. The valve unit 3 is also pushed by the second end 202 of the elongate hollow part 20 to open the second path 102. The valve unit 3 includes a valve 30, a second seal 31 and a second spring 32, wherein the second spring 32 provides a force to let the valve 30 to push the second seal 31 so as to close the second path 102. The second spring 32 also pushes the valve unit 3 back to the initial position of the valve unit 3.
A button unit 4 is movably inserted into the hole 13 of the body 1 to position the elongate hollow part 20. The button unit 4 includes a frame 41 with an opening 42, and a protrusion 43 which extends from one end of the frame 41. The elongate hollow part 20 extends through the opening 42. The third spring 44 is mounted to the protrusion 43 of the button unit 4 so as to push the button unit 4 back to the initial position of the button unit 4. A first positioning face 421 and a second positioning face 422 are respectively formed within the opening 42 of the frame 41. The first positioning face 421 and the second positioning face 422 are located alternatively with each other. The first positioning face 421 and the second positioning face 422 contact the first engaging portion 203 or the second engaging portion 204 to position the elongate hollow part 20 and the valve unit 3 at two positions as shown in
As shown in
When the Industrial male connector 91 continuously moved, the elongate hollow part 20 with the beads 22 compress the first spring 23 to store energy. The cone-shaped first engaging portion 203 pushes the first and second positioning faces 421, 422 so that the frame 41 is moved and compresses the third spring 44 to store energy, until the vertical face 205 of the first engaging portion 203 is stopped at the second positioning face 422 of the frame 41 to position the elongate hollow part 20 at the first position “d1”. The beads 22 position the Industrial male connector 91, so that the first and second hoses “a”, “b” communicate with each other.
When the elongate hollow part 20 is positioned by the opening 42 of the frame 41, the second end 202 of the elongate part 20 moves the valve 30 of the valve unit 30 to form a gap between the valve 30 and the second seal 31, such that the pressurized air is allowed to flow from the first path 101 to the second path 102 via the gap. The pressurized fluid in the second path 102 flows to the first path 101 and the second hose “b”. The valve 30 compresses the second spring 32 to store energy.
When the users want to close the communication between the first and second hoses “a” and “b”, the button unit 4 is pushed to move the frame 41 so that the second positioning face 422 is separated from the vertical face 205 of the first engaging portion 203, and the first spring 23 pushes the elongate hollow part 20 back to the initial position “d”, and the Industrial male connector 91 is separated from the universal female connector “A”. The valve 30 of the valve unit 3 moves to its initial position by the second spring 32 so that there is no gap formed between the valve 30 and the second seal 31 so that the first path 101 does not communicate with the second path 102. The button unit 4 moves back to its initial position by the third spring 44.
As shown in
When the users want to close the communication between the first and second hoses “a” and “b”, the button unit 4 is pushed to move the frame 41 so that the first positioning face 421 is separated from the vertical face 205 of the second engaging portion 204, and the first spring 23 pushes the elongate hollow part 20 back to the initial position “d”, and the Aro male connector 92 is separated from the universal female connector “A”. The valve is closed and no gap is formed so that the first path 101 does not communicate with the second path 102.
As shown in
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Date | Country | Kind |
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108210243 | Aug 2019 | TW | national |