Footwear lacing system
10021942 ยท 2018-07-17
Assignee
Inventors
- Bryan P. Conrad (Lake Oswego, OR, US)
- AMY LYTTLE (PORTLAND, OR, US)
- Billy McFarland (Portland, OR, US)
- Phuc Nguyen (Portland, OR, US)
- Erin Toraya (Portland, OR, US)
Cpc classification
A43C9/00
HUMAN NECESSITIES
Y10T24/37
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A43C7/005
HUMAN NECESSITIES
A43C1/006
HUMAN NECESSITIES
Y10T24/3737
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
A43C9/00
HUMAN NECESSITIES
Abstract
A lacing system for an article of footwear may include a lateral series of lace-receiving elements and a medial series of lace-receiving elements. A first lace extends consecutively through a first lateral lace-receiving element, a second lateral lace-receiving element, a fourth medial lace-receiving element, a fifth lateral lace-receiving element, a third medial lace-receiving element, and again through the first lateral lace-receiving element. A second lace extends consecutively through a first medial lace-receiving element, a second medial lace-receiving element, a fourth lateral lace-receiving element, a fifth medial lace-receiving element, a third lateral lace-receiving element, and again through the first medial lace-receiving element.
Claims
1. An article of footwear having an upper and a sole structure, the upper including a lacing system comprising: a first series of lace-receiving elements extending in a longitudinal direction of the footwear; a second series of lace-receiving elements extending in the longitudinal direction of the footwear, the second series being spaced from and parallel to the first series; a first lace that comprises a first lace element and a second lace element that is coextensive with the first lace element, the first lace having a first terminal end and a second terminal end opposite the first terminal end; and a second lace that comprises a first lace element and a second lace element that is coextensive with the first lace element, wherein the second lace has a first terminal end and a second terminal end opposite the first terminal end; wherein the first lace element and the second lace element converge to form a unitary lace segment defining an end length of the first lace disposed adjacent to the first terminal end of the first lace, and the first lace element and the second lace element are joined to each other along the end length by a permanent connector interconnecting the first lace element and the second lace element along the end length, the first lace element is in direct contact with the second lace element along the end length, and the first lace element and the second lace element are parallel to each along the end length; wherein the first lace element and second lace element of the second lace converge to form a unitary lace segment defining an end length of the second lace disposed adjacent to the first terminal end of the second lace; wherein the first lace element of the first lace extends through a topmost lace-receiving element of the first series of lace-receiving elements located adjacent to an ankle opening of the upper and the second lace element of the first lace extends through a lace-receiving element of the first series of lace-receiving elements that is consecutive with the topmost lace-receiving element of the first series of lace-receiving elements; wherein, at a point disposed adjacent to the second terminal end of the first lace, the first lace element and the second lace element of the first lace together extend through a bottommost lace-receiving element of the second series of lace-receiving elements; wherein, at a point disposed adjacent to the second terminal end of the second lace, the first lace element and the second lace element of the second lace together extend through a bottommost lace-receiving element of the first series of lace-receiving elements; and a connector designed to connect the second terminal end of the first lace with the second terminal end of the second lace at a point disposed between the bottommost lace-receiving element of the first series and the bottommost lace-receiving element of the second series.
2. The article of footwear recited in claim 1, wherein the first lace element of the second lace extends through a topmost lace-receiving element of the second series of lace-receiving elements located adjacent to an ankle opening of the upper and the second lace element of the second lace extends through a lace-receiving element of the second series of lace-receiving elements that is consecutive with the topmost lace-receiving element of the second series of lace-receiving elements.
3. The article of footwear recited in claim 1, wherein the unitary lace segment of the first lace and the unitary lace segment of the second lace are designed to be tied together in the form of a bow knot.
4. An article of footwear having an upper and a sole structure, the upper including a lacing system comprising: a first series of lace-receiving elements extending in a longitudinal direction of the footwear; a second series of lace-receiving elements extending in the longitudinal direction of the footwear, the second series being spaced from and parallel to the first series; a first lace that comprises a first lace element and a second lace element that is coextensive with the first lace element, wherein the first lace has a first terminal end and a second terminal end opposite the first terminal end, wherein, at a point disposed adjacent to the second terminal end of the first lace, the first lace element and the second lace element of the first lace together extend through a bottommost lace-receiving element of the first series of lace-receiving elements; a second lace that comprises a first lace element and a second lace element that coextensive with the first lace element, wherein the second lace has a first terminal end and a second terminal end opposite the first terminal end, wherein the first lace element and second lace element of the second lace converge at a converging point to form a unitary lace segment defining an end length of the second lace disposed adjacent to the first terminal end of the second lace, and the first lace element and the second lace element are inseparably joined to each other along the end length by a permanent connector interconnecting the first lace element and the second lace element along the end length such that the first lace element is inseparably and permanently connected to the second lace element along the end length, the first lace element and the second lace element are in direct contact with each other at the converging point, and the first lace element and the second lace element are parallel to each along the end length; wherein, at a point disposed adjacent to the second terminal end of the first lace, the first lace element and the second lace element of the second lace together extend through a bottommost lace-receiving element of the second series of lace-receiving elements; wherein the end length of the first lace and the end length of the second lace are designed to be tied together in the form of a bow knot; and a connector designed to connect the second terminal end of the first lace with the second terminal end of the second lace.
5. The article of footwear recited in claim 4, wherein the connector is a detachable connector.
6. The article of footwear recited in claim 5, wherein the connector has a clamshell configuration formed by a first connector portion and a second connector portion connected together by a hinge.
7. The article of footwear recited in claim 6, wherein the connector includes a first fastener element disposed on the first connector portion and a second fastener element disposed on the second connector portion, the first fastener element and the second fastener element fitting together to lock the first connector portion and the second connector portion around the first lace and the second lace.
8. The article of footwear recited in claim 4, wherein the connector is designed to receive and secure the first lace element and the second lace element of the first lace and the first lace element and the second lace element of the second lace.
9. The article of footwear recited in claim 4, wherein the connector connects the second terminal end of the first lace with the second terminal end of the second lace at a point disposed between the bottommost lace-receiving element of the first series and the bottommost lace-receiving element of the second series.
10. The article of footwear recited in claim 4, wherein the first lace element of the first lace extends from the bottommost lace-receiving element of the first series of lace-receiving elements to and through a first lace-receiving element of the second series of lace-receiving elements, the first lace-receiving element of the second series being consecutive with the bottommost lace-receiving element of the second series, and the first lace element is inseparably adhered to the second lace element along the end length.
11. The article of footwear recited in claim 10, wherein the second lace element of the first lace extends from the bottommost lace-receiving element of the first series of lace-receiving elements to and through a second lace-receiving element of the second series of lace-receiving elements, the second lace-receiving element of the first series being consecutive with the first lace-receiving element of the second series.
12. The article of footwear recited in claim 4, wherein the first lace element of the first lace extends through a topmost lace-receiving element of the second series of lace-receiving elements located adjacent to an ankle opening of the upper and the second lace element of the first lace extends through a lace-receiving element of the second series of lace-receiving elements that is consecutive with the topmost lace-receiving element of the first series of lace-receiving elements.
13. The article of footwear recited in claim 12, wherein the first lace element of the second lace extends through a topmost lace-receiving element of the first series of lace-receiving elements located adjacent to an ankle opening of the upper and the second lace element of the second lace extends through a lace-receiving element of the first series of lace-receiving elements that is consecutive with the topmost lace-receiving element of the second series of lace-receiving elements.
Description
FIGURE DESCRIPTIONS
(1) The foregoing Summary and the following Detailed Description will be better understood when read in conjunction with the accompanying figures.
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DETAILED DESCRIPTION
(20) The following discussion and accompanying figures disclose a lacing system for an article of footwear. The article of footwear is presented as having a general configuration suitable for walking or running. Concepts associated with the footwear may also be applied to a variety of other athletic footwear types, including baseball shoes, basketball shoes, cross-training shoes, cycling shoes, football shoes, tennis shoes, and soccer shoes, for example. The concepts may also be applied to footwear types that are generally considered to be non-athletic, including dress shoes, loafers, and boots. The concepts disclosed herein apply, therefore, to a wide variety of footwear types and are not limited to the various configurations presented herein.
(21) General Footwear Structure
(22) An article of footwear 10 is depicted in
(23) For reference purposes, footwear 10 may be divided into three general regions: a forefoot region 11, a midfoot region 12, and a heel region 13. Forefoot region 11 generally includes portions of footwear 10 corresponding with the toes and the joints connecting the metatarsals with the phalanges. Midfoot region 12 generally includes portions of footwear 10 corresponding with an arch area of the foot. Heel region 13 generally corresponds with rear portions of the foot, including the calcaneus bone. Footwear 10 also includes a lateral side 14 and a medial side 15, which extend through each of regions 11-13 and correspond with opposite sides of footwear 10. More particularly, lateral side 14 corresponds with an outside area of the foot (i.e. the surface that faces away from the other foot), and medial side 15 corresponds with an inside area of the foot (i.e., the surface that faces toward the other foot). Regions 11-13 and sides 14-15 are not intended to demarcate precise areas of footwear 10. Rather, regions 11-13 and sides 14-15 are intended to represent general areas of footwear 10 to aid in the following discussion. In addition to footwear 10, regions 11-13 and sides 14-15 may also be applied to sole structure 20, upper 30, and individual elements thereof.
(24) Sole structure 20 includes a midsole 21, an outsole 22, and a sockliner 23. Midsole 21 is secured to a lower surface of upper 30 and may be formed from a compressible polymer foam element (e.g., a polyurethane or ethylvinylacetate foam) that attenuates ground reaction forces (i.e., provides cushioning) when compressed between the foot and the ground during walking, running, or other ambulatory activities. In further configurations, midsole 21 may incorporate fluid-filled chambers, plates, moderators, or other elements that further attenuate forces, enhance stability, or influence the motions of the foot, or midsole 21 may be primarily formed from a fluid-filled chamber. Outsole 22 is secured to a lower surface of midsole 21 and may be formed from a wear-resistant rubber material that is textured to impart traction. Sockliner 23 is located within upper 30, as depicted in
(25) Upper 30, as noted above, is secured to sole structure 20 and provides a comfortable and secure covering for a foot of a wearer. A majority of upper 30 is formed from a covering element 31 that defines a portion of a void 32 within upper 30. Void 32 is a generally hollow area of footwear 10 that has a general shape of the foot and is intended to receive the foot. Covering element 31 extends (a) along a portion of void 32 in lateral side 14, (b) along a portion of void 32 in medial side 15, (c) over void 32 in a forefoot region 11, and (d) around void 32 in heel region 13. As such, covering element 31 effectively provides a covering for the foot. The various portions of covering element 31 may be formed from one or more of a plurality of material elements (e.g., textiles, polymer sheet layers, polymer foam layers, leather, synthetic leather) that are stitched or bonded together. Referring to
(26) A portion of upper 30 that covers an instep of the foot includes a throat area 36 that is located in at least midfoot region 12. Although the extent of throat area 36 may vary depending upon the construction and style of footwear 10, throat area 36 generally extends between forefoot region 11 (or a forward area of midfoot region 12) and ankle opening 35, as shown in
(27) Lacing System Configuration
(28) Upper 30 has a lacing system that includes a lateral series 40 of five lace-receiving elements 41-45, a medial series 50 of five lace-receiving elements 51-55, a first lace 60, and a second lace 70. The lacing system provides a wearer with the ability to selectively modify the dimensions of upper 30. More particularly, the wearer may utilize the lacing system to (a) enlarge the dimensions of void 32 and ankle opening 35 when placing footwear 10 upon the foot and removing footwear 10 from the foot and (b) decrease the dimensions of void 32 and ankle opening 35 to tighten upper 30 around the foot.
(29) Lateral series 40 includes the various lace-receiving elements 41-45 and extends longitudinally through a portion of throat area 36 that generally corresponds with lateral side 14. Lace-receiving elements 41-45 are successively positioned on upper 30. More particularly, lace-receiving element 41 is located proximal to ankle opening 35 and rearward of the other lace-receiving elements 42-45, lace-receiving element 42 is positioned forward of lace-receiving element 41, lace-receiving element 43 is positioned forward of lace-receiving element 42, lace-receiving element 44 is positioned forward of lace-receiving element 43, and lace-receiving element 45 is positioned forward of lace-receiving element 44 and proximal to a forward portion of throat area 36.
(30) Medial series 50 includes the various lace-receiving elements 51-55 and extends longitudinally through a portion of throat area 36 that generally corresponds with medial side 15. As such, lateral series 40 and medial series 50 are spaced from each other across a portion of throat area 36 where tongue 37 is exposed. Lace-receiving elements 51-55 are successively positioned on upper 30. More particularly, lace-receiving element 51 is located proximal to ankle opening 35 and rearward of the other lace-receiving elements 52-55, lace-receiving element 52 is positioned forward of lace-receiving element 51, lace-receiving element 53 is positioned forward of lace-receiving element 52, lace-receiving element 54 is positioned forward of lace-receiving element 53, and lace-receiving element 55 is positioned forward of lace-receiving element 54 and proximal to a forward portion of throat area 36.
(31) Each of lace-receiving elements 41-45 and 51-55 are formed as a tubular structure with an axis extending in the longitudinal direction of footwear 10. As an example of the manner in which this tubular structure may be formed, each of lace-receiving elements 41-45 and 51-55 may have the configuration of a folded material element, as depicted in
(32) Laces 60 and 70 may be formed from conventional materials utilized in footwear laces. Moreover, laces 60 and 70 may be formed from any of a variety of elongate and flexible elements, such as a cord, rope, twine, filament, cable, thread, or yarn, for example. Although laces 60 and 70 are depicted as having a generally circular cross-sectional shape, laces 60 and 70 may also have an elongate, compressed, or otherwise non-circular shape.
(33) Each of laces 60 and 70 pass through selected lace-receiving elements 41-45 and 51-55. The specific manner in which laces 60 and 70 are routed through the various lace-receiving elements 41-45 and 51-55 may be viewed in
(34) Second lace 70 is routed similarly to first lace 60, but exhibits a reversed or mirror-image routing. More specifically, second lace 70 extends consecutively (i.e., in order) through lace-receiving element 51, lace-receiving element 52, lace-receiving element 44, lace-receiving element 55, lace-receiving element 53, and again through lace-receiving element 51. Given this routing, second lace 70 passes twice through lace-receiving element 51, but only passes once through each of lace-receiving elements 43, 44, 52, and 55. That is, two segments (i.e., separate sections or portions) of second lace 70 extend through lace-receiving element 51. Another feature of this routing is that second lace 70 extends through (a) two consecutive lace-receiving elements 51 and 52 of medial series 50 and (b) two consecutive lace-receiving elements 43 and 44 of lateral series 40. Furthermore, a feature of this routing is that second lace 70 extends through three lace-receiving elements 51, 52, and 55 of medial series 50 and two lace-receiving elements 43 and 44 of lateral series 40.
(35) Although lateral series 40 and medial series 50 are discussed above and depicted as extending longitudinally through portions of throat area 36 that respectively correspond with lateral side 14 and medial side 15, lateral series 40 and medial series 50 may not be restricted to this configuration. As an example, lateral series 40 and medial series 50 may curve toward lateral side 14 or may be positioned on lateral side 14. In general, however, lateral series 40 will be positioned more toward lateral side 14 than medial series 50, and medial series 50 will be positioned more toward medial side 15 than lateral series 40.
(36) When separated from a remainder of footwear 10, laces 60 and 70 exhibit the configuration depicted in
(37) In some conventional articles of footwear, tensioning a lace involves simultaneously pulling on (a) multiple segments of the lace where the lace crosses between various lace-receiving elements and (b) end portions of the lace. In addition to utilizing both hands of the wearer, tensioning a lace in some conventional articles of footwear may be time-consuming and relatively difficult for the wearer. An advantage of the lacing system discussed above, however, is the relative quickness and ease with which upper 30 may be tightened around the foot. More particularly, the wearer need only pull on or otherwise place end lengths 61 and 71 in tension to tighten upper 30 around the foot because central lengths 62 and 72 freely slide through lace-receiving elements 41-45 and 51-55 when end lengths 61 and 71 are tensioned. As such, the wearer need not pull on segments of laces 60 and 70 that extend between or pass through lace-receiving elements 41-45 and 51-55 (i.e., central lengths 62 and 72) when securing the foot within footwear 10. Moreover, various individuals (e.g., children, elderly, disabled) may benefit greatly from the relative quickness and ease with which upper 30 may be tightened around the foot with the lacing system.
(38) Further Configurations
(39) The general configuration discussed above provides an example of various features associated with the lacing system. Many of these features, however, may be modified or otherwise changed, while retaining the advantage of tightening upper 30 around the foot with relative ease. As an example,
(40) The lacing system discussed above includes five lace-retaining elements 41-45 and five lace retaining elements 51-55. Referring to
(41) Another configuration of footwear 10 is depicted in
(42) Yet another configuration of footwear 10 is depicted in
(43) The two parts of the hook-and-loop fastener generally include hooks in a hook part or loops in a loop part, with the hooks engaging the loops to secure the hook part and the loop part together. Although retainer 82 and securing member 83 may include either the hook part or the loop part, footwear 10 gains an advantage when (a) retainer 82 incorporates the loop part and (b) securing member 83 includes the hook part. More particularly, prior to engaging retainer 82 and securing member 83, end lengths 61 and 71 may contact other objects, such as apparel of the wearer or carpeting. If retainer 82 includes the hook part, retainer 82 may become inadvertently joined to one of the other objects. As such, incorporating the loop part into retainer 82 has the advantage of being less likely to engage the other objects.
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(45) In some embodiments, the connector may be detachable such that the connector may be detached and reattached without damaging either the connector or a lace. For example, connector 118 may be detachable. A detachable connector may be helpful when a user wants to change the look of the article of footwear by using different colored laces. Additionally, such an embodiment may also be helpful when a user wants to replace a broken lace. As discussed in further detail below, connector 118 is shown in
(46) While
(47) Lateral series 125 of lace-receiving elements include a first lace-receiving element 102, a second lace-receiving element 103, a third lace-receiving element 104, a fourth lace-receiving element 105, a fifth lace-receiving element 106, a sixth lace-receiving element 107, and a seventh lace-receiving element 108. First lace-receiving element 102 may be the topmost lace-receiving element of lateral series 125 and may be located adjacent to an ankle opening of the upper and may be located adjacent to an ankle opening of the upper. Seventh lace-receiving element may be the bottommost lace-receiving element of lateral series 125.
(48) Medial series 126 of lace-receiving elements may include a first lace-receiving element 109, a second lace-receiving element 110, a third lace-receiving element 111, a fourth lace-receiving element 112, a fifth lace-receiving element 113, a sixth lace-receiving element 114, and a seventh lace-receiving element 115. First lace-receiving element 102 may be the topmost lace-receiving element of medial series 126 and may be located adjacent to an ankle opening of the upper. Seventh lace-receiving element 115 may be the bottommost lace-receiving element of medial series 126.
(49) The laces used in the lacing configuration shown in
(50) In some embodiments, the first lace segment and the second lace segment may converge at a point where the first lace segment and the second lace segment are joined to form a unitary lace segment defining an end length of the lace. For example, first lace element 116 and second lace element 117 may be parallel and joined along a first end length 120 of first lace 119 disposed adjacent to first terminal end 140 of first lace 119. Although depicted as being joined with stitching, the first lace element and the second lace element of first lace 119 may also be joined with an adhesive, thermal bonding, staples, or braiding, for example. That is, a variety of mechanical or chemical methods may be utilized to join the lace elements. Alternatively, in some embodiments, instead of joining the first lace element and the second lace element to form an end length of the lace, the end length of the lace can be formed as a single strand during manufacturing (e.g., braided, or woven, etc.), which then bifurcates into two diverging strands comprising the first lace element and the second lace element. For example, as shown in
(51) The Y-shaped laces may include an aglet on the first terminal end. For example, as shown in
(52) In some embodiments, first lace element 116 and second lace element 117 may be parallel and joined together along a second end length disposed adjacent to second terminal end 144. For example, as shown in
(53) In some embodiments, to allow a user to replace first lace 119, aglet 162 may be included separately with a new lace. In such embodiments, a user may attach aglet 162 around the second end length of first lace 119. For example, aglet 119 may include a strip of material that may be wrapped around the second end length of first lace 119 and secured to itself by adhesive or any other mechanical or chemical methods. In some embodiments, other mechanical or chemical methods may be used to join first lace element 116 to second lace element 117 along the second end length. For example,
(54) Second lace 121 may include a first terminal end 142 and a second terminal end 146 opposite first terminal end 142. Second lace 121 may include a first lace element 123 and a second lace element 124. First lace element 123 and second lace element 124 may be parallel and coextensive. First lace element 123 and second lace element 124 may be parallel and joined along a first end length 122 of second lace 121 disposed adjacent to first terminal end 142 of second lace 121. Although depicted as being joined with stitching, the first lace element and the second lace element of second lace 121 may also be joined with an adhesive, thermal bonding, staples, or braiding, for example. That is, a variety of mechanical or chemical methods may be utilized to join the lace elements. As shown in
(55) In some embodiments, first lace element 123 and second lace element 124 may be parallel and joined together along a second end length disposed adjacent to second terminal end 146. For example, as shown in
(56) In some embodiments, an article of footwear may be sold with the type of laces shown in
(57) When incorporated into an article of footwear, the first end lengths of first lace 119 and second lace 121 may be tied together (or otherwise secured) or untied to modify the dimensions of upper 100. The end lengths of first lace 119 and second lace 121 may be configured to or designed to be tied together. For example, the end lengths of both laces may have a length sufficient for tying the two end lengths together to form a bow knot.
(58) First lace element 116 and second lace element 117 of first lace 119 may together extend through seventh lace-receiving element 108. First lace element 116 may extend from seventh lace-receiving element 108 to and through fifth lace-receiving element 113. First lace element 116 may extend from fifth lace-receiving element 113 to and through third lace-receiving element 104. First lace element 116 may extend from third lace-receiving element 104 to and through first lace-receiving element 109.
(59) Second lace element 117 may extend from seventh lace-receiving element 108 to and through sixth lace-receiving element 114. Second lace element 117 may extend from sixth lace-receiving element 114 to and through fourth lace-receiving element 105. Second lace element 117 may extend from fourth lace-receiving element 105 to and through second lace-receiving element 110.
(60) First lace element 123 and second lace element 124 of second lace 121 may together extend through seventh lace-receiving element 115. First lace element 123 may extend from seventh lace-receiving element 115 to and through fifth lace-receiving element 106. First lace element 123 may extend from fifth lace-receiving element 106 to and through third lace-receiving element 111. First lace receiving element 123 may extend from third lace-receiving element 111 to and through first lace-receiving element 102.
(61) Second lace element 124 may extend from seventh lace-receiving element 115 to and through sixth lace-receiving element 107. Second lace element 124 may extend from sixth lace-receiving element 107 to and through fourth lace-receiving element 112. Second lace element 124 may extend from fourth lace-receiving element 112 to and through second lace-receiving element 103.
(62) As previously discussed,
(63) As previously stated, connector 118 may have a clamshell configuration. Connector 118 may include a first connector portion 156 and a second connector portion 158. A hinge 154 may connect first connector portion 156 to second connector portion 158 such that first connector portion 156 and second connector portion 158 may pivot with respect to one another. A first fastener element 150 may be disposed on first connector portion 156 and a second fastener element 152 may be disposed on second connector portion 158. First fastener element 150 may fit together with second fastener element 152 to lock first connector portion 156 and second connector portion 158 together around first lace 119 and second lace 121. Once the first fastener element 150 and second fastener element 152 are locked together, the fastener elements may be unlocked to open connector 118 such that first lace 119 and second lace 121 may be removed from connector 118. As shown in
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(65) In some embodiments, the laces described with respect to
(66) In some embodiments, the method may include 3D printing (additive manufacturing) a lace having a Y-shape. In some embodiments, the method may include using additive printing to make a first lace element and a second lace element. In some embodiments, the method may include using additive printing to make an end length of a lace that is formed of a single lace element. In such embodiments, the end length of the lace may be added to the first lace element and the second lace element to connect the first lace element to the second lace element.
(67) In some embodiments, the method may include joining a portion of the first lace element to a portion of the second lace element, collectively forming a Y-shaped lace. In some embodiments, the method may include joining a portion of the first lace element to a portion of the second lace element to form a unitary lace segment defining an end length of the lace. In some embodiments, the step of joining a portion of the first lace element to a portion of the second lace element may include stitching a portion of the first lace element to a portion of the second lace element. In some embodiments, the step of joining a portion of the first lace element to a portion of the second lace element may include thermally bonding a portion of the first lace element to a portion of the second lace element. In such embodiments, the step of thermally bonding the portions of the lace elements may include applying heat and pressure to the portions of the lace elements together such that the laces melt slightly from the heat and fuse together. In some embodiments, the method may include applying an aglet around the unitary lace segment defining the end length of the lace. In some embodiments, the step of joining the first lace element to a portion of the second lace element may include forming a single strand lace, or lace element, and bifurcating the lace into two diverging lace segments during manufacturing of the lace. For example, in such embodiments, a knitting process may be used to form a single strand lace, or lace element, that diverges into two lace segments. In another example, additive printing may be used to form a single strand lace, or lace element, that diverges into two lace segments.
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(72) First lace element 1516 may extend through third lace-receiving element 1510 to and through first lace-receiving element 1512. Second lace element 1518 may extend through fourth lace-receiving element 1511 to and through second lace-receiving element 1513. First lace element 1516 and second lace element 1518 may be connected by connector 1550 between fourth lace-receiving element 1511 and third lace-receiving element 1510.
(73) First lace element 1530 may extend through third lace-receiving element 1514 to and through first lace-receiving element 1508. Second lace element 1532 may extend through fourth lace-receiving element 1515 to and through second lace-receiving element 1513. First lace element 1530 and second lace element 1532 may be connected by a connector (hidden from view by portion of upper 1502 along which second series 1504 is located) between fourth lace-receiving element 1515 and third lace-receiving element 1514.
(74) In some embodiments, the remainder of first lace element 1516 extending beyond first lace-receiving element 1512, and the remainder of second lace element 1518 extending beyond second lace-receiving element 1513, may be joined together to form a unitary lace segment. In some embodiments, the remainder of first lace element 1530 extending beyond first lace-receiving element 1508 and the remainder of second lace element 1532 extending beyond second lace-receiving element 1509 may be joined together to form a unitary lace segment. In some of these embodiments, the unitary lace segment of the first lace may be tied to a unitary lace segment of the second lace to form a bow knot. For example,
(75) While the lace-receiving elements shown in
(76) The invention is disclosed above and in the accompanying figures with reference to a variety of configurations. The purpose served by the disclosure, however, is to provide an example of the various features and concepts related to the invention, not to limit the scope of the invention. One skilled in the relevant art will recognize that numerous variations and modifications may be made to the configurations described above without departing from the scope of the present invention, as defined by the appended claims.