Wine Opener with Interior Threads
20200290856 ยท 2020-09-17
Inventors
Cpc classification
International classification
Abstract
The industry-standard corkscrew has numerous flaws resulting in broken corkseven in the hands of a professional. The present invention is a radical departure from the traditional corkscrew apparatus. The opener generally consists of the handle and an internally threaded half-pipe. The half-pipe slides between the cork and the bottle, wherein the series of threads engage the cork. Rotating the handle causes the threads to bore deeper into the neck of the bottle until the handles meets the lip of the bottle, and then lift the cork out of the bottle until it disengages and falls away from the opener. It should be appreciated that the elegance of the opener resides in its simplicity.
Claims
1. An opener for removing a cylindrical cork from a bottle comprising: (a) a semi-cylindrical pipe section having an upper end which is attached to a distal end of a handle, and a lower end, (b) wherein the semi-cylindrical pipe section has an arc angle, an interior wall upon which at least one thread is disposed, and an exterior wall; and (c) wherein the handle forms a shoulder positioned around the exterior wall.
2. The opener of claim 1 wherein the semi-cylindrical pipe section is further defined as having a radius approximately equivalent to the radius of the cork.
3. The opener of claim 1 wherein the longitudinal axis of the handle is perpendicular to the axis of the semi-cylindrical pipe section.
4. The opener of claim 3 wherein the semi-cylindrical pipe section has a tapered edge along the lower end.
5. The opener of claim 1 wherein a plurality of threads are disposed on the interior wall.
6. The opener of claim 5 wherein thread crest of at least one thread is different than the thread crest of another thread.
7. The opener of claim 1 wherein the arc angle of the semi-cylindrical pipe section is between 65 and 190.
8. The opener of claim 1 wherein the shoulders extend from the handle beyond the semi-cylindrical pipe section.
9. The opener of claim 1 wherein the longitudinal axis of the handle is concentric to the axis of the semi-cylindrical pipe section.
10. An instrument for removing a cylindrical cork from a bottle comprising: (a) an open cylinder and a handle having a distal end, and an upper and lower surface; (b) said open cylinder having an upper, lower, leading, and trailing edge, an opening angle, and an interior and exterior wall; (c) said open cylinder being inset from the distal end of the handle such that the opening angle of the open cylinder is directed away from the proximal end of the handle, the axis of the open cylinder being perpendicular to the longitudinal axis of the handle, and the upper edge of the open cylinder is generally coplaner with the upper surface of the handle, and the lower edge of the open cylinder resides below the lower surface of the handle; and (d) wherein a plurality of open threads are disposed on the interior wall of the open cylinder.
11. The instrument of claim 10 wherein the lower edge is tapered to assist with positioning the open cylinder between the cylindrical cork and the bottle.
12. The instrument of claim 11 wherein the lower edge is bowed away from the handle.
13. The instrument of claim 10 wherein at least one thread angle is different from another thread angle.
14. The instrument of claim 10 wherein the leading edge and trailing edge are dissimilar lengths.
15. The method of removing a cylindrical cork positioned in the neck of a bottle comprising: (a) introducing an opener comprising open cylinder attached to a handle, wherein the open cylinder has a wedging edge opposite the handle and a plurality of threads disposed on the interior wall of the open cylinder designed to engage on the cylindrical walls of the cork; (b) aligning the axis of the cork and the axis of the open cylinder; (c) applying downward force on the handle causing the wedging edge to slide between the cork and the neck of the bottle until a point where the threads engage with the cork; (d) applying a rotational force on the handle to screw the threads into the cork and cause the open cylinder to drive into the bottle until a point the handle makes contact with the rim of the bottle; (e) continuing to apply the rotational force on the handle causing the cork to rise out of the bottle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0023] The present invention, herein simply referred to as the opener 100, is a radical departure from the traditional corkscrew apparatus to remove a cork from a bottle. Disclosed are both the preferred embodiments of the apparatus, as well as the method of use by example. It should be appreciated that the elegance of the opener resides in its simplicity, however, also disclosed are alternative embodiments, enhancements, and variations of the tool.
[0024] shown in
[0025]
[0026] The inner wall 42 is the surface of the spoon 12 configured to come into contact with the cylindrical surface of the cork 24. The outer wall 43 is the surface of the spoon 12 configured to come into contact with the inner surface of the bottle neck 28. In the preferred embodiment, the wall thickness is minimized such that the spoon may easily wedge between the bottle 22 and the cork 24. To aid in this initial process, the wedging edge 16 may be tapered relative to the general wall thickness of the spoon 12 allowing this wedging edge 16 to be introduced between the bottle 22 and cork 24 prior to the thread 15 engagement. In a similar manner, the leading edge 15 and/or the trailing edge 17, may also be tapered relative to the general wall thickness. In addition, the wedging edge 16 may employ various geometries such as the downward edge shown in
[0027] As shown in
[0028] As shown in
[0029] The arc angle 18 of the spoon 12 is shown in
[0030]
[0031] Along the face of the inner wall 42 on both views are a series of open threads 14 positioned at an angle offset from the horizontal axis defined by the bottom of the handle 10. In the preferred embodiment, the threads 14 are parallel to one another, however, they need not have identical depth or pitch. To illustrate possible variations, View A and View B show variations of thread angle 19 where View A has a thread angle 19 of 80 and View B has a thread angle 19 of 55. Another variation in View A and B are differences in the thread crest 20 where View A comes to a sharp point and View B comprises a rounded or beveled shape. The idea behind the sharp point thread is to purposefully cut into the cork with a sharp thread. The beveled shape of the thread must be a small enough angle that the thread cleanly cuts into the cork without tearing. The benefit of a thread that cuts into the cork is that additional compression of the cork won't occur, and thread engagement can be ensured. The rounded edge on the threads is essential in compressing the cork without damage and this thread works by allowing the non-rigid material of the cork to form around the thread.
[0032] As a further extension of the optimization concepts presented, it may be beneficial to have shallow lower threads to initiate the engagement of the cork, and deeper threads higher on the inner wall 42 to aid in pulling the cork. Threads are most effective near the lip of the bottle, primarily due to the neck angle and the compression of the cork. The spoon 12 must compress the cork 24 into its shape to properly engage the threads; however, in the lower regions of the neck, the cork has additional room on the sides to expand, and although funneled into the spoon, the compression and subsequent thread engagement are not as strong.
[0033] Finally, another variation between View A and B illustrates that the threads may be mirrored to accommodate a right- or left-handed opener 100 where View A would require a counter-clockwise rotation and View B would require a clockwise rotation to remove a cork.
Method of Use:
[0034] The following description along with steps illustrated in
[0035] As shown in
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Alterative Embodiments:
[0037] The opener 100 may be constructed as a single die-cast employing any number of materials (plastics, metals, etc.) Alternatively, the opener 100 may be constructed as two separate pieces. A two-piece design may allow different manufacturing techniques and non-similar materials, such as a metal spoon and plastic handle.
[0038] As a two-piece design, a hinge 38 may be employed to make an opener that is capable of folding.
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[0040] Additional features may be incorporated into the opener 100 to extend the functionality. As an example,