This invention relates to a crown clusure and, more specifically, to a crown closure having a curved portion which is adapted to be the same shape as the mouth contour of the bottle to which the crown closure is attached and a method of manufacturing crown closures having a reduced radius.
In 1892 William Painter, founder of the present Crown Cork & Seal Company, was granted a patent for a beverage seal. Mr. Painter called this seal a crown because it resembled a crown of the type used by the nobility.
Natural cork disks were used in the early crowns. It was normal to have leaks in up to one percent of the closures. Later, composition cork come into use about 1915 and was an immediate success: This crown type was currently named “Standard Crown.” The original principle, the bottle finish and the means of applying the crown remained practically the same for 100 years.
An important modification, still in use, was introduced many years ago: A reduction of the cork disk's thickness from ⅛ inch to 1/16 inch, and consequently, a reduction of the height in the skirt wall from 0.262 inch (Standard Crown) to approximately 0.228 inch (named “Short Skirt”) was accomplished. There were also intermediate designs now forgotten.
Because the seal of composition cork is cut in disks, the lodging zone of the shell is alike and has a near cylindrical shape. During crowning there were practically no deformation of crowns in the zone between the seal surface of bottles and skirt wall of crowns, because it remained filled by the cork.
As shown in
This stretching of crowns causes tilting of crowns (crimped sideways on bottle) and high friction on internal lacquer, breaking it and making possible that internal corrosion takes place later. Also there is an over damaging of serrations and wearing of the bottle finish, reducing the useful life of returnable bottles.
This utility model is intended to solve thereafter mentioned problems by its special and particular configuration: A curved portion between skirt's wall and crown top adapted to the same shape as the bottle finish mouth contour that, at the same time, allows a reduction of the original blanking diameter, producing more crowns per sheet.
This utility patent is basically referred to a cap generally known as “crown cork” used for sealing mainly glass bottles with carbonated (beer, soft drinks, etc) and non-carbonated beverages (juices, sauces, etc).
In this model, the curved portion between the crown skirt's wall and crown top is adapted exactly to the finish mouth contour of bottles, permitting a particular and novel configuration that avoids crown tilting, eliminates lacquer breakage of crowns and therefore internal corrosion, minimizes bottle finish damage during crowning and during opening of bottles, improves useful life of crowner's elements, and reduces blank diameter of crown shells, allowing more crowns to be produced per sheet.
A full understanding of the invention can be gained from the following description of the preferred embodiments when read in conjunction with the accompanying drawings in which:
This utility patent is basically referred to a cap generally known as “crown cork” used for sealing mainly glass bottles with carbonated (beer, soft drinks, etc) and non-carbonated beverages (juices, sauces, etc).
As shown in
The crown cork 10, see
This curved portion 28 has a radius which can vary slightly with tolerances and also the shape of the finish as stated by Glass Packaging Institute (GPI). For the series 26-600, 26-650 and related, this curved portion radius will be about 0.157 inch (4 mm) similar to finish mouth contour's radius until the fulcrum 44. Prior art crowns 1, as shown in
For others finish models recommended by GPI, it will be apply the same idea: To have the internal curved portion with a radius equal to finish contour curvature radius.
Because of this new curved portion 28, it is necessary to make some modifications in manufacturing of the crown 10. For example, for finish 26-600 and related, the blank diameter of crown shells 20 must be reduced from 1.4446 inch (36.694 mm) to 1.3979 inch (35.506 mm).
Manufacture of crowns 10 is typically accomplished using a die press 50. A sheet of metal 51, typically tin or chromium-plated steel is lacquered on one side and varnished on the other side. A design, printing or both 52 may be lithographed onto the metal sheet 51 to indicate what product is in the bottle 40. The metal sheet 51 is inserted into a double action die press 50. This double action is obtained through a crank and cams which are so timed that on the down stroke of the press, the first action punches a plurality of crown blanks 54 from the metal sheet 51. As the main shaft keeps turning, the first action stops and the second action pushes the forming punches into the forming dies and form the crown blanks 54 into the proper shape. Crown shells 20 are then delivered to the compound applying or lining machines, were the liners 30 are applied. Because the curved portion 28 has a reduced radius, the diameter of the blank 54 may also be reduced. With this diameter reduction, in a typical sheet 51 used for making crowns 10, 8.42% more crowns 10 are obtained.
For the change from “Standard Crown” to “Short Skirt” it was stated that “the only difference between both is only in the height of the crown; all others dimensions remain the same.” But really, between standard and short skirt crown, there is an important difference: the blank 54 diameter (parametrical cut) must be reduced in the latter. Prior art Short Skirt crowns 1 with the same die set pattern as used for standard crown, serrations obtained are really shorter with dissimilarity between them, affecting the crown's performance.
Further reduction, in order to change from short skirt crown 1 to the crown 10, makes it necessary to change the number of serrations 26, in order to maintain the original shape of the serration 26 of standard crown and a better crown performance. For example, as shown in
It is necessary to mention here that the crown 10 diameter and height and the prior art crown 1 have the same dimensions and tolerances, in order to maintain the crowner's performance.
Crowns 10 with different number of serrations (and different shapes if necessary) could be designed, according to needs.
The particular shape of this crown 10 confers it particular characteristics, not shown by the prior art crown 1, as described as follows: eliminates crown tilting, harmful to a perfect seal, minimizes lacquer friction, avoiding lacquer's breakage because there is no stretching during crowning, due to the fact that the crown 10 has the same shape as the bottle 40 finish contour, avoiding also the internal post-corrosion, eliminates finish wearing or damage, due to the uneven stretching, during crowning and during the opening of bottles 40, easier opening of bottles 40 (uncrowning), reduces crowning forces around 30% in comparison with prior art crown, reducing also serrations abrasion and enlarging useful life of crowner elements, there are produced 8.42% more crowns per sheet 51 (crowns for finish 26-600 and related) in comparison with prior art crowns, because the proposed crown has a reduced blank 54 diameter, and increases productivity in areas as lithography, trimming and pressing. Reduces volume and weight in warehouse and increase of maximum capacity of shell production.
Number | Name | Date | Kind |
---|---|---|---|
468258 | Painter | Feb 1892 | A |
2048062 | Elder | Jul 1936 | A |
2099056 | Ferngren | Nov 1937 | A |
2138419 | Gavin | Nov 1938 | A |
2327455 | Punte | Aug 1943 | A |
3171458 | Strong | Mar 1965 | A |
3195754 | Brockett | Jul 1965 | A |
3198369 | St. Jacques | Aug 1965 | A |
3497098 | Myer | Feb 1970 | A |
3648874 | Moller | Mar 1972 | A |
3827594 | Leenaards | Aug 1974 | A |
4269321 | Ichinose et al. | May 1981 | A |
4782969 | Henning | Nov 1988 | A |
Number | Date | Country | |
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20010035390 A1 | Nov 2001 | US |