The present invention relates to a system and method for connecting the ends of cords and laces, more specifically, a system and method for securing laces on shoes and other foot apparel.
Shoelaces have been used for centuries to connect the lateral sides of a shoe or other item of footwear. Shoe-wearers generally connect the sides of their shoes by lacing the sides together in a pattern over the top of the foot, and connect the loose ends of the laces by tying them in a knot, allowing the shoe-wearer to tighten the shoe and secure the shoe to the foot.
While lacing is an effective system, it suffers from persistent problems that are a direct result of the need to tie one's shoes. Specifically, (i) the shoe-wearer must tie his or her shoelaces anew each time the shoes are worn, (ii) knots commonly used to connect the ends of shoelaces for efficient tying and untying frequently come undone at undesired times, (iii) in cases of relaxed, hurried, or short-term use for which the shoe-wearer might not want to take the time to tie his or her shoes, the shoe-wearer is left with two loose shoelace ends trailing from each foot, creating a hazard and causing damage to the shoelaces, (iv) once tied, if the shoe-wearer wants to make adjustments, he or she must untie the shoe, make the desired adjustments, and then retie the shoe for each adjustment, (v) athletes and those in need of tactical footwear solutions can be hindered by the time tying one's shoes necessarily requires, and (vi) children, the elderly, invalids, and others may lack the dexterity needed to tie their shoes on their own, greatly reducing their freedom and independence.
Several viable products directed to the foregoing problems have been developed and have found commercial success. Most of these products have not eliminated the shoelace, but have instead attempted to improve upon the original system of tying the lace. Configurations for these systems often consist of shoelaces connecting the two sides of a shoe as in the original configuration, but these systems replace the shoelace knot with some type of adjustable friction lace lock.
Although some of these products are moderately effective, they could certainly be improved upon. While systems using adjustable lace locks have proven popular, there is one primary part of the system needing improvement, namely, what to do with the ends of the laces left dangling after they have run through the lace lock. Manufacturers who design shoes incorporating lace locks may sew the lace ends together or secure the lace ends with a permanent piece of hard plastic during the manufacturing process, before the shoe reaches the customer. Manufacturers who design shoelace systems using lace locks for aftermarket replacement of existing shoelaces by the customer may provide two pieces of hard-plastic that the customer can snap together to clamp the lace ends, creating a housing over the lace ends that often fails to hold the lace ends together, especially when pulled on during shoe tightening. This failure can be a serious problem for athletic or tactical applications requiring speed or for the “outdoors-person” relying on the durability of his or her gear. The aftermarket system manufacturer may also provide a single-piece, hard-plastic housing that still requires the shoe-wearer to tie a knot. The shoe-wearer may find that the system works better with the knot alone, without the extra hard-plastic housing, or that a knot in the end of the laces is aesthetically displeasing. Many shoe-wearers in need of a solution for the need to tie their laces find that the solutions currently available just don't fully satisfy their requirements.
A need therefore exists for an improved system and method for connecting two shoelaces. The present invention solves the aforementioned problems and provides a simple and effective method to accomplish the required end.
The present invention discloses a system and method for connecting two loose shoelace ends, or for connecting two loose lace or cord ends in any other lacing situation. This invention provides an effective and desirable solution to durably connect two loose lace ends. The system is a reliable cord or lace closure system that can be used with static, dynamic, or elastic cord or lace and can be used to connect two loose lace or cord ends under a variety of circumstances.
The system and method may be applied to loose shoelace ends after a shoe, or other item of footwear, has been laced and the lace ends have passed through an adjustable lace lock. The shoelace ends are then secured to form a closed lace loop above the shoe, of a diameter set by the user, by a process of hooking the lace ends together and the application of a heat-shrinkable connector element over this new lace junction. The result is a durable and reliable closed shoelace system that can be repeatedly adjusted, allowing the user to secure and adjust the shoe on the foot by pulling on the tube-covered junction of the laces with one hand while sliding the lace lock into position along the shoelace loop with the other hand.
The preferred embodiment of the present invention involves a particular lacing configuration, maintained through the use of a heat-shrinkable connector element, in order to secure shoe laces or other such cords. The instant system and method may be applied to loose shoelace ends after a shoe, or other item of footwear, has been laced and the lace ends have passed through an adjustable lace lock. The shoelace ends are then secured to form a closed lace loop above the shoe, of a diameter set by the user, by a process of hooking the lace ends together and the placement of a heat-shrinkable connector over the junction of the laces. In the preferred embodiment, the heat-shrinkable connector used to form the closed loop consists of a section of heat-shrinkable tubing, i.e., adhesive lined polyolefin tubing. It will be recognized that varying sizes of heat-shrinkable tubing may be used to accommodate other materials or sizes of laces.
The configuration and process for assembling the system described above is accomplished in these steps: In the first step shown in
In the second step, as seen in
Referring to
In the fourth step, shown in
In the fifth step, the heat-shrinkable tubing is subjected to heat in order to set it and secure the junction (D) into a fixed position. A match, a lighter, heat gun, or a similar source of heat is used to heat the junction and set the heat-shrinkable tubing. In
In the sixth step, illustrated in
At this point, the shoe-wearer can now use the closed lace system to repeatedly adjust the shoe, as seen in
The system can be used in aftermarket shoelace systems designed to replace existing shoelaces, as well as in the original shoe-manufacturing process, as an add-on during shoe sales, as a standalone product, and/or in any other lacing situation.
This invention is designed to provide an economical solution to the problems resulting from the need to tie one's shoes, and as a solution to the flaws in many of the currently available products related to the problems resulting from the need to tie one's shoes. Similar to the other available products, when using this invention, the user does not need to tie and untie his or her shoes each time they are worn or adjusted. In cases of relaxed, hurried, or short-term use for which the user might not want to take the time to tie his or her shoes, the user is not left with two loose shoelace ends trailing from each foot, creating a hazard and causing damage to the shoelaces. If the user wants to make adjustments, he or she does not need to untie the shoe to make the desired adjustments, and then retie the shoe for each adjustment. Athletes and those in need of tactical footwear solutions are not hindered by the time tying one's shoes necessarily requires. And children, the elderly, invalids, and others who may lack the dexterity needed to tie their shoes on their own can gain some freedom and independence.
In contrast to many of the currently available products related to the problems resulting from the need to tie one's shoes, this invention provides a solution to some persistent problems. This is a durable system that can work with different types of laces. Shoe-wearers who need to rely on their gear in emergency situations, in situations requiring fast lacing, and in situations requiring long-term exposure to extreme environments can trust that this solution will not fail, and that their laces will not then come undone. And, importantly, many shoe-wearers will find that this invention provides the simple, clean aesthetic they desire, while providing a convenient finger-pull. This invention provides a desirable alternative to the other available products relating to the problems resulting from the need to tie one's shoes.
While the invention has been described in reference to certain preferred embodiments, it will be readily apparent to one of ordinary skill in the art that certain modifications or variations may be made to the device without departing from the scope of invention described in the foregoing specification.
This application claims priority from U.S. Provisional Patent application No. 62/179,570 filed on May 11, 2015.
Number | Date | Country | |
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62179570 | May 2015 | US |