1. Field of the Invention
The present invention relates to a bottle cork opener, which includes a handle unit, and an air pump having an outlet needle for insertion through a cork, and is operated to pump air into the bottle to remove the cork by means of moving the handle unit up and down, more particularly one, which is made such that air resistance, which is formed in upward and downward movements of the handle unit, can be reduced for operation to be smoother as well as for the length of time taken in operation to be shortened.
2. Brief Description of the Prior Art
Referring to
However, because the cork is relatively tightly fitted in the neck of the bottle, in case the cork opener has not been inserted into the cork at enough depth, the cork can't be easily pulled out of the bottle, and can be broken during the upward movement of the cork opener. And, small pieces of the cork can be formed, and fall into the contents of the bottle in case the cork opener has not been inserted into the cork too deeply.
It is a main object of the present invention to provide a bottle cork opener, which can be smoothly operated, and with which a cork can be opened very rapidly.
The bottle cork opener of the present invention includes a hollow handle unit, an air pump, first and second hollow fitting units. The air pump includes a hollow main body, an outlet needle secured on the a lower end of the hollow main body, and a piston rod passed through an upper end, and displaceable relative to the hollow main body; the piston rod is securely connected to the securing part of the handle unit at an upper end; the hollow main body has a limiting portion on an upper end, and a stopping part on a lower end. The first fitting unit has a limiting part on an upper end, which has a first hole. The main body of the pump is passed through the first hole, and displaceable relative to the first fitting unit; the limiting portion of the air pump is shaped so as not to move into the first fitting unit; the stopping part of the lower end of the air pump main body is shaped so as not to move outside the first fitting unit. The first fitting unit has a through hole at a lower end for allowing the outlet needle of the air pump to be passed through. The first fitting unit has a displacement portion, which is extended from the lower end, and formed with several guide gaps. The displacement portion of the first fitting unit is passed through an upper end of the second fitting unit. The second fitting unit has several position-limiting blocks projecting from the upper end and respectively movably held in the guide gaps of the displacement portion. Thus, a cork of a bottle can be removed from the bottle by means of moving the handle unit up and down after the outlet needle has been inserted through the cork to communicate with inside of the bottle.
The present invention will be better understood by referring to the accompanying drawings, wherein:
Referring to
The handle unit 1 includes a securing part 11, and a hollow handle part 12. The hollow handle part 12 has screw threads on an outer side of an upper end thereof while the securing part 11 has screw threads on an inner side thereof. The securing part 11 is securely connected to the upper end of the handle part 12 with the help of the screw threads. The securing part 11 is formed with a connecting portion 111 whose inner side is formed with screw threads.
The air pump 2 includes a hollow main body, a piston rod 21, a limiting part 22, a stopping part 23, and an outlet needle 24, and is made such that air will travel into it in both forward and rearward movements of the piston rod 21. The air pump 2 is equipped with control devices, and valves at upper and lower ends thereof such that the valves will be opened, and air drawn into it when the piston rod 21 is drawn; thus, air will be drawn into, and pumped from the air pump 2 in each drawn movement of the piston rod 21. The air pimp 2 is a heretofore known art, and isn't the subject of the present invention therefore it won't be further detailed herein. The limiting part 22 is detachably secured on an upper end of the hollow main body, and is shaped like a cap of the air pump 2. The stopping part 23 is secured on the lower end of the hollow main body while the outlet needle 24 is secured to the stopping part 23. The piston rod 21 is passed through the upper end of the hollow main body, and is formed with screw threads on an upper end thereof, and securely connected to the connecting portion 111 of the handle unit 1 at the upper end with the help of the screw threads.
The first fitting unit 3 includes a limiting part 31, a hollow containing part 32, and a displacement portion 33 extended from a lower end of the hollow containing part 32, and is connected to the air pump 2 such that it can slide along an inner room of the handle part 12 of the handle unit 1, and such that the air pump 2 can slide along an inner room thereof. The limiting part 31 is like a cap, and has screw threads (not numbered) on an inner side thereof, and a through hole 311 on a top thereof. The hollow containing part 32 has a stopping portion 321 above the displacement portion 33 on an inner side thereof, and a through hole 322, which is defined by the stopping portion 321. The displacement portion 33 is formed with several elongated guide gaps 331 thereon, and position-limiting protrusions 333 on an outward side of a lower end thereof. Furthermore, displacement spaces 332, 332 are provided adjacent to two selected opposing ones of the elongated guide gaps 331 at an upper end of the displacement portion 33; thus, the selected opposing elongated guide gaps 331, 331 each has an upper portion wider than a lower portion.
The second fitting unit 4 has a hollow containing portion 41, several extension portions 42 on an inner side of an upper end of the hollow containing portion 41, an annular stopping protrusion 44 on the inner side near the upper end, several guide rails 45 on the inner side, and a stopping portion 46 on an outward side near the upper end thereof. The displacement portion 33 of the first fitting unit 3 is passed into the hollow containing portion 41 with the extension portions 42 being respectively positioned in the guide gaps 331 thereof, and with the position-limiting protrusions 333 being under the annular stopping protrusion 44, and with the guide rails 45 being respectively in the guide gaps 331; thus, the position-limiting protrusions 333 will come into contact with the annular stopping protrusion 44 when the first fitting unit 3 is upwards displaced relatively to the second fitting unit 4, and in turns, the first fitting unit 3 can't separate from the second fitting unit 4. Two position limiting blocks 43, each of which tapers towards an upper end, and has inverted-L shape, are respectively secured on two opposing ones of the extension portions 42 so as to be in the upper sections of the two selected guide gaps 331, 331, which have the displacement spaces 332, 332 formed next thereto to have an upper portion wider than a lower portion; thus, the position limiting blocks 43 can only be moved within the wider upper sections of the guide gaps 331, and in turns, the first fitting unit 3 can only be up and down displaced relative to the second fitting unit 4 for a short distance accordingly. The stopping portion 46 of the second fitting unit 4 is provided for preventing the handle unit 1 from moving past it during the downward movement of the handle unit 1, as shown in
In assembling the present bottle cork opener, referring to
Referring to
The reason why there are both the first and the second fitting units 3 and 4 provided in the present invention, which are displaceable relative to each other, instead of single fitting unit is because in the upward drawn movement of the handle unit 1, some air will be caused to move in between the first and the second fitting units 3 and 4 to form upward drawing force, and effect of such upward drawing force of air has to be reduced; in upward drawn movement of the handle unit 1, the first fitting unit 3 will move upwards slightly owing to the upward drawing force of air, but the second fitting unit 4 won't therefore position of the second fitting unit 4 won't be changed. Furthermore, air resistance against the handle unit 1, which will form in downwardly depressed movement of the handle unit 1, can be reduced owing to the guide gaps 331, and the handle unit 1 can be more smoothly operated, allowing the cork to be opened soon after the handle unit 1 is operated. In other words, it takes relatively short time to open a cork with the present cork opener. After the cork is removed from the bottle, it will be held in the second fitting unit 4.
Referring to
From the above description, it can be easily understood that the bottle cork opener of the present invention has advantages as followings:
Number | Name | Date | Kind |
---|---|---|---|
1921811 | Ludwig | Sep 1933 | A |
2729124 | Farandatos | Jan 1956 | A |
5012703 | Reinbacher | May 1991 | A |
20050076741 | Chan | Apr 2005 | A1 |