Stretching a piercing enlarges the opening of the piercing to accommodate larger sized jewelry. It is possible to use a scalpel or dermal punch to cut ears to a large gauge hole right away, but that process is generally illegal in most states and often removes too much tissue from the earlobe, making the procedure very hard to reverse. Another popular method is to force a larger piece of jewelry into the hole, but this is generally very painful and causes a great deal of damage to the tissue. The problem with this method is that the jewelry often contains sharp edges which can damage the skin around the piercing or the jewelry size difference is too great and abrupt, which can also damage the skin around the piercing.
Another method is to push an insertion taper through the ear piercing and then transferring a piece of jewelry into the piercing by using the jewelry to push out the insertion taper. One problem with this method is that the insertion taper sizes are based on the American Wire Gauge Standard, so the size difference from one gauge to the other can be too great, which can damage the skin around the piercing during a stretch. Another issue with this method is that it requires a professional to perform the procedure. In addition during the transfer process, since there is no stable connection between the jewelry and insertion taper, often the connection is lost and the jewelry is not inserted which means another attempt to insert has to be made, which causes damage to the tissue around the piercing.
To overcome the problems with existing methods for enlarging piercings, a new device and method is provided. A series of interconnecting pieces are used to safely and systematically enlarge a piercing.
To overcome the problems with existing methods for enlarging piercings a carefully constructed series of plugs are sequentially installed into the piercing. As depicted in
These plugs are designed to be used as a set with each plug in the set to be inserted sequentially. Each plug in the set is designed so that equal incremental expansion of the piercing is accomplished with all the plugs in a series designed for the desired told expansion. To minimize possible damage to the skin, the growth in size in each consecutive plug in a series is limited to less than 1.6 mm. Each plug in a series is designed to be able to connect with the smaller and larger sized adjacent plugs in the series. Each series could include as many plugs as warranted for a particular situation but typically a series would include ten units/plugs.
For example, Series 1 starts with unit 1.1 which has a body with a diameter of 5.189 mm and a circumference of 16.3 mm. The next unit in the series is 1.2 which has a body with a diameter of 5.529 mm and a circumference of 17.3 mm. The next unit in the series is 1.3 which has a body with a diameter of 5.87 mm and a circumference of about 18.3 mm. This approximate equal growth in circumference is kept the same in between each of the 10 units of each series. Series 1 will have a growth in circumference between each unit body of about 1 mm. The growth of circumference between the units in each series is approximately the same, but the growth in circumference between each series does not have to be the same. The first and last unit of each series has a size that is directly based on common body jewelry sizes.
Common body jewelry sizes are based on the ‘American Wire Gauge’ standard and utilize the scale from 20 gauge to 00 gauge. After 00 gauge jewelry is most commonly measured using the US measuring system or the metric system. Series 1 starts with a unit (1.1) that has a body diameter of 5.189 mm, which is the same as 4 gauge, and ends with a unit (1.10) that has a body diameter of 8.252 mm, which is the same as 0 gauge. Series 2 starts a unit (2.1) that has a body diameter of 8.252 mm, which is the same as 0 gauge, and ends with a unit (2.10) that has a body diameter of 12.7 mm, which is the same as ½″. The last unit of each series is the same size as the first unit in the next sequential series.
Each plug body (1) is cylindrical in shape, and typically approximately 12 mm long with a 3 mm ramp. The ramp grows to the diameter of the next unit body in the series. For example, unit body 1.1 has a diameter of 5.189 mm, but the ramp or flare has a diameter of 5.529 mm, which is the same as the body diameter of unit 1.2. Unit 1.2 which has a body diameter of 5.529 mm, has a ramp or flare with a diameter of 5.87 mm, which is the same diameter as the body of unit 1.3. This allows for smooth transitions between each unit body when the series is used as directed.
A Series of Units/Plugs is Used in the Following Manner:
The above illustrates various concepts, structures and techniques which are the subject of this patent. It will now become apparent to those of ordinary skill in the art that other embodiments incorporating these concepts, structures and techniques may be used. Accordingly, it is submitted that that scope of the patent should not be limited to the described embodiments but rather should be limited only by the spirit and scope of the following claims. Examples of other embodiments are: a series of units can consist of more or less individual units than 10; the dimensions indicated in the example can be varied as warranted; and the number of days that a plug is left in place can be varied as warranted.
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Entry |
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“Ultimate Ear Stretching Plug Kit (0g—1 inch)”, Jan. 29, 2010, Kingsbodyjewelry.com, pp. 1-2. |
Number | Date | Country | |
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20120198886 A1 | Aug 2012 | US |