US20150020416A1 - Shoe - Google Patents
Shoe Download PDFInfo
- Publication number
- US20150020416A1 US20150020416A1 US13/944,879 US201313944879A US2015020416A1 US 20150020416 A1 US20150020416 A1 US 20150020416A1 US 201313944879 A US201313944879 A US 201313944879A US 2015020416 A1 US2015020416 A1 US 2015020416A1
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- US
- United States
- Prior art keywords
- sole
- shoe
- coupling element
- insert
- recess
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
Links
- 230000008878 coupling Effects 0.000 claims abstract description 71
- 238000010168 coupling process Methods 0.000 claims abstract description 71
- 238000005859 coupling reaction Methods 0.000 claims abstract description 71
- 230000008859 change Effects 0.000 claims description 5
- 230000037396 body weight Effects 0.000 abstract 1
- 230000007246 mechanism Effects 0.000 description 5
- 230000006835 compression Effects 0.000 description 4
- 238000007906 compression Methods 0.000 description 4
- 230000000386 athletic effect Effects 0.000 description 3
- 239000000463 material Substances 0.000 description 3
- 238000005452 bending Methods 0.000 description 2
- 230000000295 complement effect Effects 0.000 description 2
- 230000003993 interaction Effects 0.000 description 2
- 230000008901 benefit Effects 0.000 description 1
- 239000002131 composite material Substances 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 239000010985 leather Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000000399 orthopedic effect Effects 0.000 description 1
- 239000012858 resilient material Substances 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B3/00—Footwear characterised by the shape or the use
- A43B3/06—Shoes with flaps; Footwear with divided uppers
-
- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B11/00—Footwear with arrangements to facilitate putting-on or removing, e.g. with straps
-
- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B23/00—Uppers; Boot legs; Stiffeners; Other single parts of footwear
- A43B23/02—Uppers; Boot legs
- A43B23/0245—Uppers; Boot legs characterised by the constructive form
- A43B23/0295—Pieced uppers
Definitions
- the present invention is directed to a shoe.
- a problem with many conventional shoes is that the wearer must typically bend over to manipulate the laces, straps, or other fastener (Velcro).
- the wearer also must typically hold open the mouth of the shoe (even when wearing a shoe without laces, straps or fasteners) since maneuvering the foot through the mouth of the shoe can be challenging without some concurrent manipulation of the mouth of the shoe.
- the present invention is directed to improved shoes and methods of donning a shoe that overcome the drawbacks of many conventional shoes which require manipulation of laces, straps or other fasteners and/or which require manipulating the mouth of the shoe or otherwise holding the shoe when donning the shoe.
- the present invention is directed to a shoe that simplifies donning the shoe.
- Specific applications include shoes for children, the elderly and the disabled. Although the present invention has such applications, of course, the present application may be used for any other purpose including casual shoes, athletic shoes, clogs, sandals or even formal wear without departing from the scope of the invention.
- the shoe may be manually manipulated into a bent position (which may also open the mouth of the shoe as described below) so that the wearer may simply step into the shoe.
- the bent position is also a stable position in that the shoe may still stand upright unaided while in the bent position.
- a first coupling element holds the shoe in the bent position.
- the first coupling element extends between a front portion and a rear portion of the shoe.
- the first coupling element has a first part that slides against a second part.
- the first and second parts are locked together in a locked position (which prevents further sliding movement) and holds the shoe in the bent position.
- the first coupling element may be under compression from a biasing force exerted by the rear sole.
- the first coupling element may be a separate element attached to the upper or sole or may be integrally formed with the upper or sole of the shoe.
- a second coupling element may also be provided on the other lateral side of the shoe.
- the second coupling element may be oriented the same or different from the first coupling element and may be any of those described herein or similar mechanisms within the scope of the invention.
- the mouth of the shoe may be enlarged when the shoe is in the bent position that may further facilitate donning the shoe.
- the mouth of the shoe may be enlarged longitudinally and/or laterally. Longitudinal increase of mouth size may naturally occur as the shoe is moved to the bent position since this motion tends to open the mouth of the shoe (by moving the rear upper away from the front upper).
- the mouth may also be laterally increased in size since the coupling element may bow laterally outwardly due to compression on the first coupling element exerted by a biasing force of the sole of the shoe.
- the first coupling element may not laterally enlarge the mouth without departing from other aspects of the present invention.
- the first and second parts of the coupling element(s) may also lock together when the bendable portion of the rear sole is in the relaxed or unbiased position to provided added stability when worn if necessary.
- the locked position associated with the relaxed position may also be overcome with a modest application of force to remove the shoe.
- the wearer may step on the heel of the shoe with the opposite foot while pulling up to withdraw the foot and “open” (bend) the bendable portion of the rear sole.
- the shoe of the present invention also may help in removing the shoe without manual manipulation.
- the coupling element may, in fact, be moved to the bent and locked position in this manner so that the shoe may also be opened and locked without manual manipulation.
- the rear portion is configured to be engaged by an opposing foot so that the bendable portion is moved to the bent position when the wearer steps on the rear portion with the opposing foot while pulling up with the foot wearing the shoe to be removed.
- FIG. 1 is a side view of a shoe in a relaxed, unbiased position.
- FIG. 2 is a side view of the shoe in a bent position.
- FIG. 3 is a partial cross-sectional view of the shoe.
- FIG. 4 is another partial cross-sectional view of the shoe.
- FIG. 5 shows an alternative embodiment of the shoe.
- FIG. 6 shows another embodiment of the shoe.
- FIG. 7 shows still another embodiment of the shoe.
- FIG. 8 is a top view of the shoe in the relaxed position.
- FIG. 9 is a top view of the shoe in the bent position showing the mouth of the shoe enlarged laterally and longitudinally.
- FIG. 10 shows another locking mechanism for locking the first and second parts together.
- FIG. 11 shows the shoe with integrally formed aspects.
- FIG. 12 shows an alternative embodiment of the shoe.
- FIG. 13 shows another embodiment of the shoe.
- FIG. 14 shows still another embodiment of the shoe.
- FIG. 15 shows yet another embodiment of the shoe.
- FIG. 16 shows another shoe having an intermediate element with a front recess and a rear recess in an unbiased position.
- FIG. 17 shows the shoe of FIG. 16 in the bent position.
- FIG. 18 shows an alternative shoe using the intermediate element of FIG. 16 .
- FIG. 19 shows another shoe using the intermediate element of FIG. 16 .
- FIG. 20 shows still another shoe using the intermediate element of FIG. 16 .
- FIG. 21 shows another intermediate element having a front insert and a rear insert.
- FIG. 22 shows an alternative shoe using the intermediate element of FIG. 16 .
- FIG. 23 shows another shoe using the intermediate element of FIG. 16 .
- FIG. 24 shows still another shoe using the intermediate element of FIG. 16 .
- FIG. 25 shows yet another shoe in a relaxed, unbiased position.
- FIG. 26 shows the shoe of FIG. 25 in a bent position.
- the shoe 2 has a front portion 4 including a front sole 6 and a front upper 8 .
- the front upper 8 is attached to and extends over the front sole 6 and over a foot of a wearer.
- the shoe 2 also includes a rear portion 10 coupled to the front portion 4 .
- the rear portion 10 has a rear sole 12 and a rear upper 14 attached to the rear sole 12 .
- the rear upper 14 and the rear sole 12 are configured to support a heel of the wearer.
- the term “shoe” as used herein shall mean any foot support and covering including but not limited to casual shoes, sandals, clogs, athletic shoes, formal shoes and orthopedic shoes.
- the front upper 8 and rear upper 14 may be any suitable material including, but not limited to, a woven material, a composite material such as those use in athletic shoes, rubber, leather or a combination.
- the rear sole 12 includes a bendable 16 portion and a rear heel portion 18 .
- the bendable portion 16 of the rear sole 12 is resilient and bendable from a relaxed position ( FIG. 1 ) to a bent position ( FIG. 2 ). In the bent position, the bendable portion 16 is in a biased condition so that the rear sole 12 is biased toward the relaxed position relative to the front sole 6 by the bendable portion 16 .
- the rear heel portion 18 supports at least part of the heel of the wearer.
- the bendable portion 16 of the rear sole 12 may be formed of a resilient material that resists bending but can be bent manually or with the other foot when removing the shoe 2 as described below.
- the rear heel portion 18 (and/or part of the front sole 6 ) may also bend somewhat without departing from the scope of the invention.
- the bendable portion 16 may be somewhat large compared to the rear heel portion 18 and may constitute a significant part of the rear sole 18 without departing from the scope of the invention.
- the rear heel portion 18 may be quite small without departing from the scope of the invention.
- the bendable portion 16 is positioned between the rear heel portion 18 and the front sole 6 .
- the bendable portion 16 is bent so that the front sole 6 and the rear heel portion 18 change an angle A relative to one another by at least 20 degrees when the bendable portion 16 moves to the bent position.
- the rear upper 14 is coupled to the rear sole 6 so that the rear upper 14 changes orientation with the rear heel portion 18 of the rear sole 12 .
- the front upper 8 is coupled to the front sole 6 so that the front upper 8 changes orientation with the front sole 6 when the bendable portion 16 of the rear sole 12 moves to the bent position.
- the rear portion 10 and in particular the bendable portion 16 of the rear sole 12 , is configured so that the rear sole 12 and the front sole 6 are shaped to rest stably in an upright position when the rear sole 12 is in the bent position as shown in FIG. 2 .
- the wearer may simply step onto the rear and/or front sole 12 , 6 .
- the locked position is automatically overcome when the user steps onto the shoe 2 .
- the front sole 6 and the rear sole 12 may be integrally formed and to this end may include a continuous layer 20 extending therebetween.
- the front sole 6 and the rear sole 12 may also have a laminated or layered structure.
- the front upper 8 and/or the rear upper 14 may also be integrally formed with the front sole 6 and/or rear sole 12 or may be separately formed and attached to the front and rear soles 6 , 12 without departing from the term “coupled” or “attached” as used herein.
- Another shoe is described below in which other parts of the shoe (and even the whole shoe) may be integrally formed.
- the shoe 2 also includes a first coupling element 22 extending between the front portion 4 and the rear portion 10 .
- the first coupling element 22 has a first part 24 coupled to the rear portion 10 and a second part 26 coupled to the front portion 4 .
- the first part 24 and the second part 26 slide relative to, and against, one another when the rear sole 12 moves from the relaxed position to the bent position.
- the first part 24 is coupled to the rear heel portion 18 to change orientation with the rear heel portion 18 when the bendable portion 16 is in the bent position.
- the second part 26 is coupled to the front portion 4 so that the second part 26 changes orientation with the front portion 4 .
- the compressive force exerted on the first coupling element 22 may be only part of the biasing force exerted by the bendable portion 16 of the rear sole 18 since other parts of the shoe 2 (and even another coupling element on the other side as described below) may absorb some of this force.
- other portions of the shoe 2 such as the front upper 8 or the rear upper 14 , may also contribute to resisting movement to the bent position and exerting a force to bias the rear sole 18 and front sole 6 back to the relaxed position without departing from the scope of the invention.
- Various aspects of the present invention are directed to use of the bendable portion 16 and, specifically, a resilient bendable portion 16 that provides a “natural” more comfortable sole compared to some prior art shoes.
- Other aspects of the present invention may, of course, be practiced without the resilient, bendable portion 16 of the rear sole 12 .
- the shoe 2 of the present invention may also be locked in the relaxed position as described below.
- the rear portion 10 and in particular the bendable portion 16 of the rear sole 12 , is configured so that the rear sole 12 may be manually manipulated into the bent position and, together with the front sole 6 , will permit the shoe 2 to rest in a stable upright position when placed on the ground as shown in FIG. 2 .
- the bendable portion 16 of the rear sole 12 may be positioned at any location between a heel 30 and a toe 32 such as near the middle, near the toe 32 or even near the heel 30 without departing from the scope of the invention.
- the first part 24 has a first recess wall 34 that forms a first recess 36 and is coupled to the rear portion 10 .
- the second part 26 has a first insert 38 positioned in the first recess 36 .
- the first insert 38 slides within the first recess 36 when the rear sole 12 moves to the bent position.
- the first recess wall 34 may be coupled to the rear sole 12 so that the biasing force of the rear sole 12 when the rear sole 12 is in the bent position is transferred from the rear sole 12 to the first recess wall 34 (see FIGS. 1 and 2 ).
- the first insert 38 may be coupled to the front upper 8 so that a biasing force is transferred to the first insert 38 through a portion 27 of the rear upper 8 positioned between the first insert 38 and the front sole 6 .
- FIG. 5 another shoe 2 A is shown wherein the same or similar reference numbers refer to the same or similar structure.
- a first recess wall 34 A is coupled to a rear upper 14 A so that the biasing force is transferred from the rear sole 18 to the first recess wall 34 A through a portion 25 A of a rear upper 14 A positioned between the first recess wall 34 A and the rear sole 12 (and specifically the rear heel portion 18 ). All aspects of shoe 2 are applicable to shoe 2 A and incorporated for shoe 2 A as with all other shoes described herein.
- FIG. 6 still another shoe 2 B is shown having a first insert 38 B coupled to the front sole 6 (rather than front upper 14 ) so that the biasing force is transferred from the front sole 6 to the first insert 38 B.
- the first recess wall 34 B is coupled to the rear sole 12 similar to shoe 2 .
- Still another shoe 2 C is shown in FIG. 7 in which a first recess wall 38 C (which forms first recess 36 C) is coupled to a rear upper 14 C and a first insert 38 C is coupled to the front sole 6 so that the biasing force is directly applied to the first recess wall 38 C and the first insert 38 by the rear sole 18 and the front sole 6 .
- first part 24 and the second part 26 automatically move to the locked position when the shoe 2 is manipulated into the bent position of FIG. 2 .
- the locked position prevents further relative sliding between the first part 24 and the second part 26 .
- the locking engagement between the first and second parts 24 , 26 holds the bendable portion 16 of the rear sole 12 in the bent position.
- the locked position is automatically overcome when the wearer steps onto the front and/or rear sole 6 , 12 .
- the first coupling element 22 may include a plurality of protrusions 50 coupled to the first part 24 and/or the second part 26 .
- the protrusions 50 may simply be compressed to lock the first and second parts 24 , 26 together.
- FIG. 3 shows the protrusions 50 coupled to the first part 26 and, in particular, form part of the first recess wall 34 which forms the recess 36 .
- the other part such as the second part 26 in this case, may have a complementary structure, such as additional protrusions, depressions, or openings, which cooperate with the protrusions to lock the first and second parts 24 , 26 together.
- the insert 38 may have depressions 51 that form the locking engagement with the protrusions 50 as shown in FIG.
- the shoe 2 may also be in a locked position when in the relaxed or unbiased position as described below.
- the locked position may be provided in any suitable manner including a compression fit, friction fit, Velcro, or one or more bendable tabs which are sufficient to resist opening of the bendable portion 16 of the rear sole 14 from the bent position.
- the locked position may also be provided with the insert 38 being simply larger than a portion of the recess 36 so that simple friction “locks” the insert 38 to the recess wall 34 .
- the term “locked” as used herein does not require any physical connection or interlocking relationship and may simply be a frictional engagement without other physical connection.
- the locked position 24 is overcome by the wearer stepping onto the front and/or rear sole 6 , 12 so that the rear sole 12 and the rear upper 14 close around the wearer's heel as the bendable portion 16 of the rear sole 12 straightens relative to the front sole 6 .
- the first part 24 and the second part 26 may lock together at a location independent of the recess 36 and the insert 38 .
- the insert 38 may become locked to a structure outside the recess 36 without departing from the scope of the invention so long as the insert 38 remains within the recess 36 .
- the first insert 38 and the first recess 36 have similar and complementary shapes.
- the recess 36 and recess wall 38 may have any suitable cross section such as circular, oval, or generally rectangular with smooth edges.
- the recess 36 and recess wall 38 also do not have to completely surround the insert 38 .
- the recess wall 38 and recess 36 may be somewhat C-shaped or U-shaped without departing from the scope of the invention.
- the recess 36 and recess wall 38 do not need to be long and may, in fact, be somewhat short such as a relatively thin strap.
- the recess wall 38 may not be solid and may be a woven, wound or even an extruded tube of material having interstitial spaces or voids formed therein without departing from the scope of the invention.
- the first and second parts 24 , 26 may also lock together in the relaxed or unbiased position of the bendable portion 16 as shown in FIG. 1 .
- the first coupling element 22 may include protrusions 50 and depressions 51 that cooperate in the relaxed position as shown in FIG. 1 .
- the rear portion 10 such as the rear sole 12 , may be engaged by the opposing foot of the wearer to remove the shoe 2 with the locked position being overcome with a modest amount of force.
- the locked position may be overcome when the user pulls up with the foot wearing the shoe 2 to be removed with a modest amount of force.
- the locked position of the bendable portion 16 in the relaxed position is overcome when removing the shoe 2 without manual manipulation.
- the present invention may also facilitate removing the shoe 2 without manual manipulation particularly since a mouth 40 of the shoe 2 may be enlarged to some extent as now described with reference to FIGS. 8 and 9 .
- the shoe 2 has the mouth 40 into which the wearer's foot is introduced and positioned.
- the mouth 40 is formed between the front portion 4 and the rear portion 10 .
- the shoe 2 may also include a second coupling element 42 which may have any of the features and characteristics of the first coupling element 18 which are expressly incorporated here. It is also understood that the second coupling element 42 may be the same as the first coupling element 18 or may be different.
- the second coupling element 42 also has a first part 43 coupled to the rear portion 10 and a second part 45 coupled to the front portion 4 .
- the first coupling element 22 extends along a lateral side 46 between the front portion 4 and the rear portion 10 while the second coupling element 42 extends along an opposing lateral side 48 from the first coupling element 22 .
- the second coupling element 42 is compressed between the front and rear portions 4 , 10 when the bendable portion 16 of the rear sole 12 is bent.
- the mouth 40 may be enlarged in a lateral direction by the first coupling element 22 (which bends outwardly in a lateral direction) when the rear sole 12 is in the bent position.
- the first coupling element 22 is compressed when the rear sole 12 is in the bent position relative to the front sole 6 .
- the first coupling 22 is compressed between the first part 26 and the second part 28 by the biasing force created by the bendable portion 16 of the rear sole 12 .
- the first coupling element 22 is compressed between the front portion 4 and rear portion 10 by the biasing force exerted by the bendable portion 16 of the rear sole 18 in the bent position.
- the second coupling element 42 may also be deformed outwardly to further enlarge the mouth 40 of the shoe 2 and all characteristics and features of the first coupling element 22 are incorporated here for the second coupling element 22 .
- an advantage of the present invention is that the mouth 40 of the shoe 2 may be enlarged when the shoe 2 is in the bent position.
- the mouth 40 may increase in size laterally since the first and/or coupling elements 22 , 42 may be bowed slightly outward laterally due to compression on the elements 22 , 42 .
- the mouth 40 may also be longitudinally increased in size as the rear sole 14 is bent since the rear upper 14 simply tends to moves away from the front upper 8 when the rear sole 12 is bent. Increasing the dimensions of the mouth 40 may help the wearer step into the shoe without having to manipulate the shoe 2 .
- the rear sole 12 and the rear upper 14 close around the wearer's heal when the user steps onto the rear sole 12 and/or the front sole 6 .
- lateral and “longitudinal” as used herein shall mean relative to the orientation of the foot of the wearer or the shoe itself with longitudinal LO being heel to toe and lateral LA being transverse to longitudinal LO.
- longitudinal LO being heel to toe
- lateral LA being transverse to longitudinal LO.
- a first coupling element 22 D is configured so that a first part 24 D is locked to a second part 26 D in a plurality of discrete positions so that the first part 24 D and the second part 26 D are slidable to a plurality of locked positions by manual manipulation.
- Each of the locked positions is a stable position (as defined herein) and each of the locked positions may be overcome to move the rear heel portion 18 back toward a relaxed position relative to the front sole 6 when the wearer steps into the shoe 2 D.
- the first part 24 D includes a first set of protrusions 60 , similar to mechanical teeth 61
- the second part 26 includes a second set of protrusions 62 .
- the first and second sets of protrusions 60 , 62 engage one another in a nearly continuous manner similar to interlocking mechanical teeth so that the bendable portion 16 of the rear heel portion 18 can assume varying degrees of bending when locked.
- the first and second parts 24 D, 26 D may simply have a friction fit which is continuously variable without departing from the scope of the invention.
- Any shoe described herein may include the locking mechanism shown in FIG. 10 or any other suitable locking mechanism as described herein.
- the shoe 2 E may be made of rubber (such as an injection molded rubber product) that integrates various parts (and even the whole) shoe 2 E.
- a first part 24 E may be integrally formed with a rear portion 10 E such as a rear upper 14 E while a second part 26 E may be integrally formed with a front portion 4 E such as a front upper 8 E.
- Even the first part 24 E and the second part 26 E may be integrally formed in that the entire shoe 2 E of FIG. 11 is integrally formed while still having parts that slidably engage one another.
- any of the shoes described herein may be integrally formed while still being “coupled” or “attached” together.
- the insert may be a separate piece attached to the front upper, integrally formed with the front upper, or coupled to the front upper via another element (similar to embodiments below in connection with an intermediate element).
- a first part 24 G includes a first insert 38 G coupled to a rear portion 14 G and a second part 26 G having a first recess wall 34 G forming a recess 36 G and coupled to a front portion 8 G.
- the first insert 38 G is positioned and slidable within the first recess 36 G and is automatically locked relative to the first recess 36 G when the rear sole 12 is in the bent position (and possibly more positions as described herein).
- the first insert 38 G is coupled to the rear sole 12 so that the biasing force is transferred from the rear sole 12 directly to the first insert 38 G.
- the first recess wall 34 G which forms the first recess 36 G, is coupled to the front sole 6 so that forces exerted by the front sole 6 are directed to the first recess wall 34 G.
- FIGS. 13-15 show additional shoes 2 H, 2 J, 2 K in accordance with the present invention wherein the same or similar reference numbers refer to the same or similar structure.
- FIG. 13 shows the shoe 2 H having a first insert 38 H coupled to a rear upper 14 H and a first recess wall 34 H, which forms the first recess 36 H, coupled to the front upper 8 H.
- FIG. 14 shows the shoe 2 J with a first insert 38 J coupled to the rear sole 14 J and a first recess wall 34 J, which forms the first recess 36 J, coupled to the front upper 8 J.
- FIG. 13 shows the shoe 2 H having a first insert 38 H coupled to a rear upper 14 H and a first recess wall 34 H, which forms the first recess 36 H, coupled to the front upper 8 H.
- FIG. 14 shows the shoe 2 J with a first insert 38 J coupled to the rear sole 14 J and a first recess wall 34 J, which forms the first recess 36 J, coupled to the front upper 8 J.
- shoe 2 K including a first insert 38 K coupled to a rear upper 14 K and a first recess wall 34 K, forming the first recess 36 K, coupled to the front sole 6 .
- the shoes 2 H, 2 J, 2 K may include all similar features and aspects of the other shoes described herein and all such features, aspects and characteristics are incorporated for all shoes described herein.
- the shoe 2 L includes an intermediate element 80 having a rear recess wall 82 which forms a rear recess 84 and a front recess wall 86 forming a front recess 88 .
- a first part 24 L and a second part 26 L may lock together at a first location 90 and/or a second location 92 via the intermediate element 80 using any suitable mechanism including any of those mentioned herein.
- the following describes use of one or both of the locking locations 90 , 92 and that the first and second locking locations 90 , 92 may define whether the intermediate element 80 is part of the first part 24 or the second part 26 .
- the first and second parts 24 L, 26 L are part of a first coupling element 22 L as described herein.
- the first part 24 L includes a rear insert 94 slidably positioned within the rear recess 84 of the intermediate element 80 and a front insert 96 positioned and slidable within the front recess 88 of the intermediate element 80 . Both the rear insert 94 and the front insert 96 slide within the respective recesses 84 , 88 when and the rear sole 12 moves to the bent position and both change orientation with the respective front and rear portions 4 L, 10 L of the shoe 2 L.
- the rear insert 94 is attached to the rear sole 12 while the front insert 96 is attached to the front sole 6 .
- a rear insert 94 M may be attached to a rear upper 14 M as shown in FIG. 18 for shoe 2 M.
- FIG. 18 for shoe 2 M.
- FIG. 19 shows another shoe 2 N having a rear insert 94 N attached to a rear upper 14 N and a front insert 96 coupled to a front upper 8 N.
- the biasing force on the front sole 6 and rear heel portion 18 (exerted by the bendable portion 12 ) is directed through a portion 25 N of the rear upper and a portion 27 N of the front upper 8 N as described above.
- Yet another shoe 2 P is shown in FIG. 20 in which a rear insert 94 P is coupled to the rear sole 12 while a front insert 96 P is coupled to a front upper 8 P.
- the intermediate element 80 may be considered part of the second part 26 L, 26 M, 26 N, 26 P when the first and second parts lock together at the first locking location 90 in that the boundary defining the relationship between the first part and the second part is determined, at least in part, by the first locked location 90 .
- the rear recess 84 and the rear insert 94 are considered the “first recess” and the “first insert” in that these parts define the sliding intersection of the first and second parts 24 P, 26 P.
- the front recess 88 and the front insert 96 are considered the “second recess” and “second insert.”
- the intermediate element 80 may be considered part of the first part 24 P. Consequently, the front recess 88 and the front insert 96 are considered the “first recess” (as part of the first part 24 P) and the “first insert” (as part of the second part 24 P) since the second locking location 92 primarily defines the intersection in the sliding relationship between the first and second parts.
- the intermediate element 80 may, of course, be locked at both the first and second locking locations 90 , 92 (and even more without departing from the scope of the invention similar to shoe 2 D of FIG. 10 ). When locked at two (or more) locations in this manner, the intermediate element 80 may be defined as part of either the first part 24 L, 24 M, 24 N, 24 P or the second part 26 L, 26 M, 26 N, 26 P without departing from the scope of the invention.
- FIG. 21 still another shoe 2 Q is shown having another intermediate element 80 Q wherein the same or similar reference numbers refer to the same or similar structure.
- the intermediate element 80 Q has a rear insert 94 Q and a front insert 96 Q.
- the front insert 94 Q is slidably positioned within a front recess 88 Q and the rear insert 94 Q is slidably positioned in a rear recess 84 Q.
- the front recess 88 Q is formed by a front recess wall 98 Q that may be attached to the front portion 4 Q (such as the front upper 8 Q or the front sole 6 ) and the rear recess 84 Q is formed by a rear recess wall 100 Q attached to the rear upper 14 Q or the rear sole 12 .
- the intermediate element 80 Q may also be locked at a first locking location 90 Q and/or a second locking location 92 Q. Also similar to the embodiment described above, when the first locking location 90 Q is used, the intermediate element 80 Q may be considered part of a second part 26 Q. As such, the rear recess 84 Q and the rear insert 94 Q are considered the “first recess” and the “first insert” as used herein which define the sliding interaction between the first and second parts 24 Q, 26 Q. When the second locking location 92 Q is used, the intermediate element 80 Q may be considered part of the first part 24 Q so that the front recess 88 Q and front insert 96 Q are considered the “first recess” and “first insert” as defined herein.
- the intermediate element 80 Q may be locked at both the first and second locking locations 90 Q, 92 Q (or more such as in FIG. 10 ). When locked at two (or more) locations, the intermediate element 80 Q may be considered part of either the first part 24 Q or the second part 26 Q as defined herein.
- the rear recess wall 100 is attached to the rear sole 12 and the front recess wall 98 is attached to the front sole 6 so that the biasing force of the bendable portion 16 of the rear sole 12 is transferred directly to the rear recess wall 100 and the front recess wall 98 as described herein.
- FIGS. 22-24 show shoe 2 R having a rear recess wall 110 (forming a rear recess 111 ) attached to a rear upper 14 R and a front recess wall 112 (forming a front recess 113 ) coupled to a front upper 8 R.
- FIG. 23 has a rear recess wall 100 S (forming rear recess 101 ) attached to a rear upper 14 S while a front recess wall 112 S (forming front recess 113 ) is attached to a front sole 6 .
- Shoe 2 T of FIG. 24 has a rear recess wall 110 T (forming rear recess 111 T) coupled to the rear sole 12 while a front recess wall 112 T (forming front recess 113 T) is coupled to a front upper 8 T.
- Each of these shoes 2 R, 2 S, 2 T includes features of similar embodiments above when describing the same or similar structure.
- each shoe includes a mouth that may be enlarged when in the bent position as also described above.
- the intermediate elements 80 , 80 Q have been described with reference to embodiments having two inserts or two recesses, the intermediate element 80 , 80 Q may also include a recess at one end and an insert at the other end without departing from the invention. Furthermore, the intermediate element 80 , 80 Q may be considered part of the first part 24 or the second part 26 thereby providing at least two parts for the first part or second part. In this regard, the first part and the second part may clearly be formed in more than two parts without departing from the scope of the invention.
- FIGS. 25 and 26 another shoe 2 U is shown wherein the same or similar reference numbers refer to the same or similar structure.
- the shoe 2 U has a front portion 4 U including the front sole 6 and a front upper 8 U.
- the shoe 2 U also includes a rear portion 10 U coupled to the front portion 4 U.
- the rear portion 10 U has the rear sole 12 and a rear upper 14 U attached to the rear sole 12 .
- the rear sole 12 includes the bendable portion 16 and the rear heel portion 18 .
- the shoe 2 U has a first coupling element 22 U extending between the front portion 4 U and the rear portion 10 U.
- the first coupling element 22 U has a first part 24 U coupled to the rear portion 10 U and a second part 26 U coupled to the front portion 4 U.
- the first part 24 U and the second part 26 U slide relative to, and against, one another when the rear sole 12 moves to the bent position.
- the rear portion 10 U, and in particular the bendable portion 16 of the rear sole 12 is configured so that the rear sole 12 may be manually manipulated into the bent position and, together with the front sole 6 , will permit the shoe 2 U to rest in a stable upright position when placed on the ground.
- the first part 24 U has a first insert 38 U and the second part 26 U has a first recess wall 34 U that forms a first recess 36 U.
- the first insert 38 is positioned in (and slidable within) the first recess 36 U.
- the first insert 38 U slides within the first recess 36 U when the rear sole 12 moves to the bent position.
- the first insert 38 U may be coupled to the rear upper 14 A so that the biasing force is transferred from the rear sole 18 to the first recess wall 34 U through a portion 25 U of the rear upper 14 U positioned between the first insert 38 U and the rear sole 12 U (and specifically the rear heel portion 18 ).
- first recess wall 34 U may be coupled to the front upper 8 U so that a biasing force is transferred to the first recess wall 34 U through a portion 27 U of the front upper 8 U positioned between the first recess wall 34 U and the front sole 6 .
- the first part 24 U and the second part 26 U automatically move to the locked position when the shoe 2 U is manipulated into the bent position of FIG. 26 .
- the locked position prevents further relative sliding between the first and second parts 24 U, 26 U.
- the locked position is automatically overcome when the wearer steps onto the front and/or rear sole 6 , 12 .
- the mouth 40 of the shoe 2 U may be enlarged in the manner described herein and all features and characteristics related to enlarging the mouth 40 in the bent position are incorporated here as with all other shoes described herein.
- the shoe 2 U may also include the second coupling element 42 (see FIGS. 8 and 9 ) as described herein.
- the first part 24 U and the second part 26 U may lock together in any suitable manner.
- the first part 24 U and/or the second part 26 U may include a plurality of protrusions 50 U.
- the protrusions 50 U are compressed (or compressed together when provided on both the first and second parts 24 U, 26 U) to lock the first and second parts 24 U, 26 U together.
- the protrusions 50 U may also engage one another to hold the shoe 2 U in the relaxed position as well.
- the first part 24 U is pivotally coupled to the rear portion 10 U such as to the rear upper 14 U.
- the first part 24 U may include a pin 104 that permits the first part 24 U to pivot relative to the rear portion 10 U.
- the second part 26 U may also be pivotally coupled to the front portion 4 U of the shoe 2 U with a pin 106 that permits the second part 26 U to pivot relative to the front upper 8 U.
- the rear upper 14 U may include a rear pocket wall 120 that forms a rear pocket 122 .
- the rear pocket wall 120 and the front pocket wall 124 are partially removed in FIG. 26 for clarity.
- the first part 24 U is positioned in the rear pocket 122 and sweeps through the rear pocket 122 when the rear sole 6 moves to the bent position.
- the front upper 8 U has a front pocket wall 124 that forms a front pocket 126 .
- the second part 26 U is positioned in the front pocket 126 and sweeps through the front pocket 126 when the rear sole 6 moves to the bent position.
- the rear pocket wall 120 and the front pocket wall 124 are in contact with one another when the rear sole is 6 is in the relaxed position.
- the term “insert” as used for one embodiment shall include all characteristics of any of the other inserts described herein including the interaction with the recess, recess wall and front and rear portions.
- any insert described herein may automatically lock when manipulated to the bent position.
- the insert may be attached to the rear sole so that the biasing force is transferred directly to the insert shall be equally applicable to all other shoes and such descriptions and features are expressly incorporated for all shoes described herein.
- the rear upper may be one or more straps which are continuous with the coupling element or the shoe may contain fasteners without departing from some aspects of the present invention.
Landscapes
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
A shoe has a coupling element extending between the front and rear portions of the shoe to maintain the shoe in a bent position. The shoe rests stably on the ground in the bent position so that the user may simply step into the shoe. The bent position is overcome by the user's bodyweight, which overcomes a locked position of the coupling element.
Description
- The present invention is directed to a shoe. A problem with many conventional shoes is that the wearer must typically bend over to manipulate the laces, straps, or other fastener (Velcro). The wearer also must typically hold open the mouth of the shoe (even when wearing a shoe without laces, straps or fasteners) since maneuvering the foot through the mouth of the shoe can be challenging without some concurrent manipulation of the mouth of the shoe.
- The present invention is directed to improved shoes and methods of donning a shoe that overcome the drawbacks of many conventional shoes which require manipulation of laces, straps or other fasteners and/or which require manipulating the mouth of the shoe or otherwise holding the shoe when donning the shoe.
- The present invention is directed to a shoe that simplifies donning the shoe. Specific applications include shoes for children, the elderly and the disabled. Although the present invention has such applications, of course, the present application may be used for any other purpose including casual shoes, athletic shoes, clogs, sandals or even formal wear without departing from the scope of the invention.
- The shoe may be manually manipulated into a bent position (which may also open the mouth of the shoe as described below) so that the wearer may simply step into the shoe. The bent position is also a stable position in that the shoe may still stand upright unaided while in the bent position. When the wearer steps onto the front sole and/or the rear sole, a bendable portion of the rear sole straightens so that the rear upper and rear sole close around the wearer's heel while the entire shoe closes around the wearer's foot.
- A first coupling element holds the shoe in the bent position. The first coupling element extends between a front portion and a rear portion of the shoe. As the shoe moves to the bent position, the first coupling element has a first part that slides against a second part. The first and second parts are locked together in a locked position (which prevents further sliding movement) and holds the shoe in the bent position. In the bent position, the first coupling element may be under compression from a biasing force exerted by the rear sole. The first coupling element may be a separate element attached to the upper or sole or may be integrally formed with the upper or sole of the shoe. A second coupling element may also be provided on the other lateral side of the shoe. The second coupling element may be oriented the same or different from the first coupling element and may be any of those described herein or similar mechanisms within the scope of the invention.
- In an aspect of the invention, the mouth of the shoe may be enlarged when the shoe is in the bent position that may further facilitate donning the shoe. The mouth of the shoe may be enlarged longitudinally and/or laterally. Longitudinal increase of mouth size may naturally occur as the shoe is moved to the bent position since this motion tends to open the mouth of the shoe (by moving the rear upper away from the front upper). The mouth may also be laterally increased in size since the coupling element may bow laterally outwardly due to compression on the first coupling element exerted by a biasing force of the sole of the shoe. Of course, the first coupling element may not laterally enlarge the mouth without departing from other aspects of the present invention.
- The first and second parts of the coupling element(s) may also lock together when the bendable portion of the rear sole is in the relaxed or unbiased position to provided added stability when worn if necessary. The locked position associated with the relaxed position may also be overcome with a modest application of force to remove the shoe. For example, the wearer may step on the heel of the shoe with the opposite foot while pulling up to withdraw the foot and “open” (bend) the bendable portion of the rear sole. Thus, the shoe of the present invention also may help in removing the shoe without manual manipulation. The coupling element may, in fact, be moved to the bent and locked position in this manner so that the shoe may also be opened and locked without manual manipulation. Stated another way, the rear portion is configured to be engaged by an opposing foot so that the bendable portion is moved to the bent position when the wearer steps on the rear portion with the opposing foot while pulling up with the foot wearing the shoe to be removed.
- These and other aspects of the invention will become apparent from the following description of the preferred embodiments.
-
FIG. 1 is a side view of a shoe in a relaxed, unbiased position. -
FIG. 2 is a side view of the shoe in a bent position. -
FIG. 3 is a partial cross-sectional view of the shoe. -
FIG. 4 is another partial cross-sectional view of the shoe. -
FIG. 5 shows an alternative embodiment of the shoe. -
FIG. 6 shows another embodiment of the shoe. -
FIG. 7 shows still another embodiment of the shoe. -
FIG. 8 is a top view of the shoe in the relaxed position. -
FIG. 9 is a top view of the shoe in the bent position showing the mouth of the shoe enlarged laterally and longitudinally. -
FIG. 10 shows another locking mechanism for locking the first and second parts together. -
FIG. 11 shows the shoe with integrally formed aspects. -
FIG. 12 shows an alternative embodiment of the shoe. -
FIG. 13 shows another embodiment of the shoe. -
FIG. 14 shows still another embodiment of the shoe. -
FIG. 15 shows yet another embodiment of the shoe. -
FIG. 16 shows another shoe having an intermediate element with a front recess and a rear recess in an unbiased position. -
FIG. 17 shows the shoe ofFIG. 16 in the bent position. -
FIG. 18 shows an alternative shoe using the intermediate element ofFIG. 16 . -
FIG. 19 shows another shoe using the intermediate element ofFIG. 16 . -
FIG. 20 shows still another shoe using the intermediate element ofFIG. 16 . -
FIG. 21 shows another intermediate element having a front insert and a rear insert. -
FIG. 22 shows an alternative shoe using the intermediate element ofFIG. 16 . -
FIG. 23 shows another shoe using the intermediate element ofFIG. 16 . -
FIG. 24 shows still another shoe using the intermediate element ofFIG. 16 . -
FIG. 25 shows yet another shoe in a relaxed, unbiased position. -
FIG. 26 shows the shoe ofFIG. 25 in a bent position. - Referring to
FIGS. 1 and 2 , ashoe 2 in accordance with the present invention is shown. Theshoe 2 has afront portion 4 including a front sole 6 and a front upper 8. The front upper 8 is attached to and extends over the front sole 6 and over a foot of a wearer. Theshoe 2 also includes arear portion 10 coupled to thefront portion 4. Therear portion 10 has arear sole 12 and a rear upper 14 attached to therear sole 12. The rear upper 14 and the rear sole 12 are configured to support a heel of the wearer. The term “shoe” as used herein shall mean any foot support and covering including but not limited to casual shoes, sandals, clogs, athletic shoes, formal shoes and orthopedic shoes. The front upper 8 and rear upper 14 may be any suitable material including, but not limited to, a woven material, a composite material such as those use in athletic shoes, rubber, leather or a combination. - The rear sole 12 includes a bendable 16 portion and a
rear heel portion 18. Thebendable portion 16 of the rear sole 12 is resilient and bendable from a relaxed position (FIG. 1 ) to a bent position (FIG. 2 ). In the bent position, thebendable portion 16 is in a biased condition so that the rear sole 12 is biased toward the relaxed position relative to the front sole 6 by thebendable portion 16. Therear heel portion 18 supports at least part of the heel of the wearer. Thebendable portion 16 of the rear sole 12 may be formed of a resilient material that resists bending but can be bent manually or with the other foot when removing theshoe 2 as described below. Of course, the rear heel portion 18 (and/or part of the front sole 6) may also bend somewhat without departing from the scope of the invention. Furthermore, thebendable portion 16 may be somewhat large compared to therear heel portion 18 and may constitute a significant part of the rear sole 18 without departing from the scope of the invention. To this end, therear heel portion 18 may be quite small without departing from the scope of the invention. - The
bendable portion 16 is positioned between therear heel portion 18 and the front sole 6. Thebendable portion 16 is bent so that the front sole 6 and therear heel portion 18 change an angle A relative to one another by at least 20 degrees when thebendable portion 16 moves to the bent position. The rear upper 14 is coupled to the rear sole 6 so that the rear upper 14 changes orientation with therear heel portion 18 of the rear sole 12. Likewise, the front upper 8 is coupled to the front sole 6 so that the front upper 8 changes orientation with the front sole 6 when thebendable portion 16 of the rear sole 12 moves to the bent position. - The
rear portion 10, and in particular thebendable portion 16 of the rear sole 12, is configured so that the rear sole 12 and the front sole 6 are shaped to rest stably in an upright position when the rear sole 12 is in the bent position as shown inFIG. 2 . In this stable, upright position, the wearer may simply step onto the rear and/or front sole 12, 6. The locked position is automatically overcome when the user steps onto theshoe 2. - The front sole 6 and the rear sole 12 may be integrally formed and to this end may include a
continuous layer 20 extending therebetween. The front sole 6 and the rear sole 12 may also have a laminated or layered structure. Furthermore, the front upper 8 and/or the rear upper 14 may also be integrally formed with the front sole 6 and/or rear sole 12 or may be separately formed and attached to the front and 6, 12 without departing from the term “coupled” or “attached” as used herein. Another shoe is described below in which other parts of the shoe (and even the whole shoe) may be integrally formed.rear soles - The
shoe 2 also includes afirst coupling element 22 extending between thefront portion 4 and therear portion 10. Thefirst coupling element 22 has afirst part 24 coupled to therear portion 10 and asecond part 26 coupled to thefront portion 4. Thefirst part 24 and thesecond part 26 slide relative to, and against, one another when the rear sole 12 moves from the relaxed position to the bent position. Thefirst part 24 is coupled to therear heel portion 18 to change orientation with therear heel portion 18 when thebendable portion 16 is in the bent position. Likewise, thesecond part 26 is coupled to thefront portion 4 so that thesecond part 26 changes orientation with thefront portion 4. The compressive force exerted on thefirst coupling element 22 may be only part of the biasing force exerted by thebendable portion 16 of the rear sole 18 since other parts of the shoe 2 (and even another coupling element on the other side as described below) may absorb some of this force. Furthermore, other portions of theshoe 2, such as the front upper 8 or the rear upper 14, may also contribute to resisting movement to the bent position and exerting a force to bias the rear sole 18 and front sole 6 back to the relaxed position without departing from the scope of the invention. Various aspects of the present invention are directed to use of thebendable portion 16 and, specifically, a resilientbendable portion 16 that provides a “natural” more comfortable sole compared to some prior art shoes. Other aspects of the present invention may, of course, be practiced without the resilient,bendable portion 16 of the rear sole 12. Theshoe 2 of the present invention may also be locked in the relaxed position as described below. - The
rear portion 10, and in particular thebendable portion 16 of the rear sole 12, is configured so that the rear sole 12 may be manually manipulated into the bent position and, together with the front sole 6, will permit theshoe 2 to rest in a stable upright position when placed on the ground as shown inFIG. 2 . As mentioned above, thebendable portion 16 of the rear sole 12 may be positioned at any location between aheel 30 and atoe 32 such as near the middle, near thetoe 32 or even near theheel 30 without departing from the scope of the invention. - Referring now to cross-sectional views of
FIGS. 3 and 4 , thefirst part 24 has afirst recess wall 34 that forms afirst recess 36 and is coupled to therear portion 10. Thesecond part 26 has afirst insert 38 positioned in thefirst recess 36. Thefirst insert 38 slides within thefirst recess 36 when the rear sole 12 moves to the bent position. Thefirst recess wall 34 may be coupled to the rear sole 12 so that the biasing force of the rear sole 12 when the rear sole 12 is in the bent position is transferred from the rear sole 12 to the first recess wall 34 (seeFIGS. 1 and 2 ). Thefirst insert 38 may be coupled to the front upper 8 so that a biasing force is transferred to thefirst insert 38 through a portion 27 of the rear upper 8 positioned between thefirst insert 38 and the front sole 6. - Referring to
FIG. 5 , anothershoe 2A is shown wherein the same or similar reference numbers refer to the same or similar structure. Afirst recess wall 34A is coupled to a rear upper 14A so that the biasing force is transferred from the rear sole 18 to thefirst recess wall 34A through aportion 25A of a rear upper 14A positioned between thefirst recess wall 34A and the rear sole 12 (and specifically the rear heel portion 18). All aspects ofshoe 2 are applicable toshoe 2A and incorporated forshoe 2A as with all other shoes described herein. - Referring to
FIG. 6 , still anothershoe 2B is shown having a first insert 38B coupled to the front sole 6 (rather than front upper 14) so that the biasing force is transferred from the front sole 6 to the first insert 38B. The first recess wall 34B is coupled to the rear sole 12 similar toshoe 2. Still anothershoe 2C is shown inFIG. 7 in which a first recess wall 38C (which forms first recess 36C) is coupled to a rear upper 14C and a first insert 38C is coupled to the front sole 6 so that the biasing force is directly applied to the first recess wall 38C and thefirst insert 38 by the rear sole 18 and the front sole 6. As mentioned above, thefirst part 24 and thesecond part 26 automatically move to the locked position when theshoe 2 is manipulated into the bent position ofFIG. 2 . The locked position prevents further relative sliding between thefirst part 24 and thesecond part 26. The locking engagement between the first and 24, 26 holds thesecond parts bendable portion 16 of the rear sole 12 in the bent position. The locked position is automatically overcome when the wearer steps onto the front and/or rear sole 6, 12. - Referring to
FIGS. 3 and 4 , thefirst coupling element 22 may include a plurality of protrusions 50 coupled to thefirst part 24 and/or thesecond part 26. The protrusions 50 may simply be compressed to lock the first and 24, 26 together.second parts FIG. 3 shows the protrusions 50 coupled to thefirst part 26 and, in particular, form part of thefirst recess wall 34 which forms therecess 36. The other part, such as thesecond part 26 in this case, may have a complementary structure, such as additional protrusions, depressions, or openings, which cooperate with the protrusions to lock the first and 24, 26 together. For example, thesecond parts insert 38 may have depressions 51 that form the locking engagement with the protrusions 50 as shown inFIG. 4 . A modest amount of force is required to move the protrusions 50 out of the depressions 51 thereby locking the first and 24, 26 together while still easily being overcome when the user steps into the shoe. Thesecond parts shoe 2 may also be in a locked position when in the relaxed or unbiased position as described below. - The locked position may be provided in any suitable manner including a compression fit, friction fit, Velcro, or one or more bendable tabs which are sufficient to resist opening of the
bendable portion 16 of the rear sole 14 from the bent position. The locked position may also be provided with theinsert 38 being simply larger than a portion of therecess 36 so that simple friction “locks” theinsert 38 to therecess wall 34. Thus, the term “locked” as used herein does not require any physical connection or interlocking relationship and may simply be a frictional engagement without other physical connection. The lockedposition 24 is overcome by the wearer stepping onto the front and/or rear sole 6, 12 so that the rear sole 12 and the rear upper 14 close around the wearer's heel as thebendable portion 16 of the rear sole 12 straightens relative to the front sole 6. - The
first part 24 and thesecond part 26 may lock together at a location independent of therecess 36 and theinsert 38. For example, theinsert 38 may become locked to a structure outside therecess 36 without departing from the scope of the invention so long as theinsert 38 remains within therecess 36. Thefirst insert 38 and thefirst recess 36 have similar and complementary shapes. Therecess 36 andrecess wall 38 may have any suitable cross section such as circular, oval, or generally rectangular with smooth edges. Therecess 36 andrecess wall 38 also do not have to completely surround theinsert 38. For example, therecess wall 38 andrecess 36 may be somewhat C-shaped or U-shaped without departing from the scope of the invention. Furthermore, therecess 36 andrecess wall 38 do not need to be long and may, in fact, be somewhat short such as a relatively thin strap. Finally, therecess wall 38 may not be solid and may be a woven, wound or even an extruded tube of material having interstitial spaces or voids formed therein without departing from the scope of the invention. - The first and
24, 26 may also lock together in the relaxed or unbiased position of thesecond parts bendable portion 16 as shown inFIG. 1 . To this end, thefirst coupling element 22 may include protrusions 50 and depressions 51 that cooperate in the relaxed position as shown inFIG. 1 . Therear portion 10, such as the rear sole 12, may be engaged by the opposing foot of the wearer to remove theshoe 2 with the locked position being overcome with a modest amount of force. For example, when therear portion 10 is stepped on by the opposing foot, the locked position may be overcome when the user pulls up with the foot wearing theshoe 2 to be removed with a modest amount of force. In this manner, the locked position of thebendable portion 16 in the relaxed position is overcome when removing theshoe 2 without manual manipulation. Thus, the present invention may also facilitate removing theshoe 2 without manual manipulation particularly since amouth 40 of theshoe 2 may be enlarged to some extent as now described with reference toFIGS. 8 and 9 . - Referring now to
FIGS. 8 and 9 , top views of theshoe 2 are shown. Theshoe 2 has themouth 40 into which the wearer's foot is introduced and positioned. Themouth 40 is formed between thefront portion 4 and therear portion 10. Theshoe 2 may also include asecond coupling element 42 which may have any of the features and characteristics of thefirst coupling element 18 which are expressly incorporated here. It is also understood that thesecond coupling element 42 may be the same as thefirst coupling element 18 or may be different. Thesecond coupling element 42 also has afirst part 43 coupled to therear portion 10 and asecond part 45 coupled to thefront portion 4. - The
first coupling element 22 extends along alateral side 46 between thefront portion 4 and therear portion 10 while thesecond coupling element 42 extends along an opposinglateral side 48 from thefirst coupling element 22. Like thefirst coupling element 22, thesecond coupling element 42 is compressed between the front and 4, 10 when therear portions bendable portion 16 of the rear sole 12 is bent. - The
mouth 40 may be enlarged in a lateral direction by the first coupling element 22 (which bends outwardly in a lateral direction) when the rear sole 12 is in the bent position. Thefirst coupling element 22 is compressed when the rear sole 12 is in the bent position relative to the front sole 6. Thefirst coupling 22 is compressed between thefirst part 26 and thesecond part 28 by the biasing force created by thebendable portion 16 of the rear sole 12. Stated another way, thefirst coupling element 22 is compressed between thefront portion 4 andrear portion 10 by the biasing force exerted by thebendable portion 16 of the rear sole 18 in the bent position. Thesecond coupling element 42 may also be deformed outwardly to further enlarge themouth 40 of theshoe 2 and all characteristics and features of thefirst coupling element 22 are incorporated here for thesecond coupling element 22. - As such, an advantage of the present invention is that the
mouth 40 of theshoe 2 may be enlarged when theshoe 2 is in the bent position. Themouth 40 may increase in size laterally since the first and/or 22, 42 may be bowed slightly outward laterally due to compression on thecoupling elements 22, 42. Theelements mouth 40 may also be longitudinally increased in size as the rear sole 14 is bent since the rear upper 14 simply tends to moves away from the front upper 8 when the rear sole 12 is bent. Increasing the dimensions of themouth 40 may help the wearer step into the shoe without having to manipulate theshoe 2. The rear sole 12 and the rear upper 14 close around the wearer's heal when the user steps onto the rear sole 12 and/or the front sole 6. The term “lateral” and “longitudinal” as used herein shall mean relative to the orientation of the foot of the wearer or the shoe itself with longitudinal LO being heel to toe and lateral LA being transverse to longitudinal LO. As mentioned herein, all aspects of each of the shoes are applicable to all other shoes and this is applicable to all features and aspects of enlarging the mouth of the shoe in the bent position. - Referring now to
FIG. 10 , anothershoe 2D is shown wherein the same or similar reference numbers refer to the same or similar structure. Afirst coupling element 22D is configured so that afirst part 24D is locked to asecond part 26D in a plurality of discrete positions so that thefirst part 24D and thesecond part 26D are slidable to a plurality of locked positions by manual manipulation. Each of the locked positions is a stable position (as defined herein) and each of the locked positions may be overcome to move therear heel portion 18 back toward a relaxed position relative to the front sole 6 when the wearer steps into theshoe 2D. Thefirst part 24D includes a first set ofprotrusions 60, similar tomechanical teeth 61, while thesecond part 26 includes a second set of protrusions 62. The first and second sets ofprotrusions 60, 62 engage one another in a nearly continuous manner similar to interlocking mechanical teeth so that thebendable portion 16 of therear heel portion 18 can assume varying degrees of bending when locked. Similar to the discussion above, the first and 24D, 26D may simply have a friction fit which is continuously variable without departing from the scope of the invention. Any shoe described herein may include the locking mechanism shown insecond parts FIG. 10 or any other suitable locking mechanism as described herein. - Referring to
FIG. 11 , another shoe 2E is shown which has integrally formed parts. To this end, the shoe 2E may be made of rubber (such as an injection molded rubber product) that integrates various parts (and even the whole) shoe 2E. For example, afirst part 24E may be integrally formed with arear portion 10E such as a rear upper 14E while asecond part 26E may be integrally formed with afront portion 4E such as a front upper 8E. Even thefirst part 24E and thesecond part 26E may be integrally formed in that the entire shoe 2E ofFIG. 11 is integrally formed while still having parts that slidably engage one another. It is understood that any of the shoes described herein may be integrally formed while still being “coupled” or “attached” together. For example, when it is said that the first insert is coupled to the front upper, the insert may be a separate piece attached to the front upper, integrally formed with the front upper, or coupled to the front upper via another element (similar to embodiments below in connection with an intermediate element). - Referring to
FIG. 12 , anothershoe 2G is shown wherein the same or similar reference numbers refer to the same or similar structure and all characteristics and aspects of the same or similar structures shall be incorporated for each of the structures for all shoes described herein. Afirst part 24G includes afirst insert 38G coupled to arear portion 14G and asecond part 26G having afirst recess wall 34G forming arecess 36G and coupled to afront portion 8G. Thefirst insert 38G is positioned and slidable within thefirst recess 36G and is automatically locked relative to thefirst recess 36G when the rear sole 12 is in the bent position (and possibly more positions as described herein). Thefirst insert 38G is coupled to the rear sole 12 so that the biasing force is transferred from the rear sole 12 directly to thefirst insert 38G. Thefirst recess wall 34G, which forms thefirst recess 36G, is coupled to the front sole 6 so that forces exerted by the front sole 6 are directed to thefirst recess wall 34G. -
FIGS. 13-15 show 2H, 2J, 2K in accordance with the present invention wherein the same or similar reference numbers refer to the same or similar structure.additional shoes FIG. 13 shows theshoe 2H having afirst insert 38H coupled to a rear upper 14H and afirst recess wall 34H, which forms thefirst recess 36H, coupled to the front upper 8H.FIG. 14 shows the shoe 2J with a first insert 38J coupled to the rear sole 14J and a first recess wall 34J, which forms thefirst recess 36J, coupled to the front upper 8J.FIG. 15 showsshoe 2K including a first insert 38K coupled to a rear upper 14K and afirst recess wall 34K, forming the first recess 36K, coupled to the front sole 6. As mentioned elsewhere herein, the 2H, 2J, 2K may include all similar features and aspects of the other shoes described herein and all such features, aspects and characteristics are incorporated for all shoes described herein.shoes - Referring to
FIGS. 16 and 17 , still anothershoe 2L is shown wherein the same or similar reference numbers refer to the same or similar structure specifically incorporated here. Theshoe 2L includes anintermediate element 80 having arear recess wall 82 which forms arear recess 84 and afront recess wall 86 forming afront recess 88. Afirst part 24L and asecond part 26L may lock together at afirst location 90 and/or asecond location 92 via theintermediate element 80 using any suitable mechanism including any of those mentioned herein. The following describes use of one or both of the locking 90, 92 and that the first andlocations 90, 92 may define whether thesecond locking locations intermediate element 80 is part of thefirst part 24 or thesecond part 26. The first and 24L, 26L are part of a first coupling element 22L as described herein.second parts - The
first part 24L includes arear insert 94 slidably positioned within therear recess 84 of theintermediate element 80 and afront insert 96 positioned and slidable within thefront recess 88 of theintermediate element 80. Both therear insert 94 and thefront insert 96 slide within the 84, 88 when and the rear sole 12 moves to the bent position and both change orientation with the respective front andrespective recesses 4L, 10L of therear portions shoe 2L. Therear insert 94 is attached to the rear sole 12 while thefront insert 96 is attached to the front sole 6. Alternatively, arear insert 94M may be attached to a rear upper 14M as shown inFIG. 18 forshoe 2M.FIG. 19 shows anothershoe 2N having arear insert 94N attached to a rear upper 14N and afront insert 96 coupled to a front upper 8N. The biasing force on the front sole 6 and rear heel portion 18 (exerted by the bendable portion 12) is directed through aportion 25N of the rear upper and aportion 27N of the front upper 8N as described above. Yet another shoe 2P is shown inFIG. 20 in which a rear insert 94P is coupled to the rear sole 12 while a front insert 96P is coupled to a front upper 8P. Once again the same or similar reference numbers shall refer to the same or similar structure and shall expressly incorporate all characteristics for each shoe. - Referring again to
FIGS. 16 and 17 , theintermediate element 80 may be considered part of the 26L, 26M, 26N, 26P when the first and second parts lock together at thesecond part first locking location 90 in that the boundary defining the relationship between the first part and the second part is determined, at least in part, by the first lockedlocation 90. When theintermediate element 80 is considered part of thefirst part 24, therear recess 84 and therear insert 94 are considered the “first recess” and the “first insert” in that these parts define the sliding intersection of the first and second parts 24P, 26P. Similarly, thefront recess 88 and thefront insert 96 are considered the “second recess” and “second insert.” - When the
second locking location 92 is provided, theintermediate element 80 may be considered part of the first part 24P. Consequently, thefront recess 88 and thefront insert 96 are considered the “first recess” (as part of the first part 24P) and the “first insert” (as part of the second part 24P) since thesecond locking location 92 primarily defines the intersection in the sliding relationship between the first and second parts. Theintermediate element 80 may, of course, be locked at both the first andsecond locking locations 90, 92 (and even more without departing from the scope of the invention similar toshoe 2D ofFIG. 10 ). When locked at two (or more) locations in this manner, theintermediate element 80 may be defined as part of either the 24L, 24M, 24N, 24P or thefirst part 26L, 26M, 26N, 26P without departing from the scope of the invention.second part - Referring to
FIG. 21 , still anothershoe 2Q is shown having another intermediate element 80Q wherein the same or similar reference numbers refer to the same or similar structure. The intermediate element 80Q has arear insert 94Q and afront insert 96Q. Thefront insert 94Q is slidably positioned within afront recess 88Q and therear insert 94Q is slidably positioned in arear recess 84Q. Thefront recess 88Q is formed by afront recess wall 98Q that may be attached to thefront portion 4Q (such as the front upper 8Q or the front sole 6) and therear recess 84Q is formed by arear recess wall 100Q attached to the rear upper 14Q or the rear sole 12. - The intermediate element 80Q, like the
intermediate element 80 above, may also be locked at afirst locking location 90Q and/or asecond locking location 92Q. Also similar to the embodiment described above, when thefirst locking location 90Q is used, the intermediate element 80Q may be considered part of asecond part 26Q. As such, therear recess 84Q and therear insert 94Q are considered the “first recess” and the “first insert” as used herein which define the sliding interaction between the first and 24Q, 26Q. When thesecond parts second locking location 92Q is used, the intermediate element 80Q may be considered part of thefirst part 24Q so that thefront recess 88Q andfront insert 96Q are considered the “first recess” and “first insert” as defined herein. Of course, the intermediate element 80Q may be locked at both the first and 90Q, 92Q (or more such as insecond locking locations FIG. 10 ). When locked at two (or more) locations, the intermediate element 80Q may be considered part of either thefirst part 24Q or thesecond part 26Q as defined herein. The rear recess wall 100 is attached to the rear sole 12 and the front recess wall 98 is attached to the front sole 6 so that the biasing force of thebendable portion 16 of the rear sole 12 is transferred directly to the rear recess wall 100 and the front recess wall 98 as described herein. -
2R, 2S, 2T using the intermediate element 80Q are shown inAdditional shoes FIGS. 22-24 wherein the same or similar reference numbers refer to the same or similar structure and each being defined (such as the first insert and first recess) in accordance with the discussion above.FIG. 22 showsshoe 2R having a rear recess wall 110 (forming a rear recess 111) attached to a rear upper 14R and a front recess wall 112 (forming a front recess 113) coupled to a front upper 8R.Shoe 2S OFFIG. 23 has arear recess wall 100S (forming rear recess 101) attached to a rear upper 14S while afront recess wall 112S (forming front recess 113) is attached to a front sole 6.Shoe 2T ofFIG. 24 has arear recess wall 110T (formingrear recess 111T) coupled to the rear sole 12 while afront recess wall 112T (forming front recess 113T) is coupled to a front upper 8T. Each of these 2R, 2S, 2T includes features of similar embodiments above when describing the same or similar structure. For example, the biasing force exerted by the bendable portion 16R, 16S, 16T through a portion of the rear or front upper 25, 27 is similar to embodiments described above. Furthermore, each shoe includes a mouth that may be enlarged when in the bent position as also described above.shoes - Although the
intermediate elements 80, 80Q have been described with reference to embodiments having two inserts or two recesses, theintermediate element 80, 80Q may also include a recess at one end and an insert at the other end without departing from the invention. Furthermore, theintermediate element 80, 80Q may be considered part of thefirst part 24 or thesecond part 26 thereby providing at least two parts for the first part or second part. In this regard, the first part and the second part may clearly be formed in more than two parts without departing from the scope of the invention. - Referring to
FIGS. 25 and 26 , another shoe 2U is shown wherein the same or similar reference numbers refer to the same or similar structure. The shoe 2U has a front portion 4U including the front sole 6 and a front upper 8U. The shoe 2U also includes a rear portion 10U coupled to the front portion 4U. The rear portion 10U has the rear sole 12 and a rear upper 14U attached to the rear sole 12. The rear sole 12 includes thebendable portion 16 and therear heel portion 18. - The shoe 2U has a first coupling element 22U extending between the front portion 4U and the rear portion 10U. The first coupling element 22U has a first part 24U coupled to the rear portion 10U and a second part 26U coupled to the front portion 4U. The first part 24U and the second part 26U slide relative to, and against, one another when the rear sole 12 moves to the bent position. The rear portion 10U, and in particular the
bendable portion 16 of the rear sole 12, is configured so that the rear sole 12 may be manually manipulated into the bent position and, together with the front sole 6, will permit the shoe 2U to rest in a stable upright position when placed on the ground. - The first part 24U has a first insert 38U and the second part 26U has a first recess wall 34U that forms a first recess 36U. The
first insert 38 is positioned in (and slidable within) the first recess 36U. The first insert 38U slides within the first recess 36U when the rear sole 12 moves to the bent position. The first insert 38U may be coupled to the rear upper 14A so that the biasing force is transferred from the rear sole 18 to the first recess wall 34U through a portion 25U of the rear upper 14U positioned between the first insert 38U and the rear sole 12U (and specifically the rear heel portion 18). Similarly, the first recess wall 34U may be coupled to the front upper 8U so that a biasing force is transferred to the first recess wall 34U through a portion 27U of the front upper 8U positioned between the first recess wall 34U and the front sole 6. - As mentioned above, the first part 24U and the second part 26U automatically move to the locked position when the shoe 2U is manipulated into the bent position of
FIG. 26 . The locked position prevents further relative sliding between the first and second parts 24U, 26U. The locked position is automatically overcome when the wearer steps onto the front and/or rear sole 6, 12. Themouth 40 of the shoe 2U may be enlarged in the manner described herein and all features and characteristics related to enlarging themouth 40 in the bent position are incorporated here as with all other shoes described herein. The shoe 2U may also include the second coupling element 42 (seeFIGS. 8 and 9 ) as described herein. - The first part 24U and the second part 26U may lock together in any suitable manner. For example, the first part 24U and/or the second part 26U may include a plurality of protrusions 50U. The protrusions 50U are compressed (or compressed together when provided on both the first and second parts 24U, 26U) to lock the first and second parts 24U, 26U together. The protrusions 50U may also engage one another to hold the shoe 2U in the relaxed position as well.
- The first part 24U is pivotally coupled to the rear portion 10U such as to the rear upper 14U. To this end, the first part 24U may include a
pin 104 that permits the first part 24U to pivot relative to the rear portion 10U. The second part 26U may also be pivotally coupled to the front portion 4U of the shoe 2U with apin 106 that permits the second part 26U to pivot relative to the front upper 8U. - The rear upper 14U may include a
rear pocket wall 120 that forms arear pocket 122. Therear pocket wall 120 and thefront pocket wall 124 are partially removed inFIG. 26 for clarity. The first part 24U is positioned in therear pocket 122 and sweeps through therear pocket 122 when the rear sole 6 moves to the bent position. Similarly, the front upper 8U has afront pocket wall 124 that forms afront pocket 126. The second part 26U is positioned in thefront pocket 126 and sweeps through thefront pocket 126 when the rear sole 6 moves to the bent position. Therear pocket wall 120 and thefront pocket wall 124 are in contact with one another when the rear sole is 6 is in the relaxed position. - As used herein, the term “insert” as used for one embodiment shall include all characteristics of any of the other inserts described herein including the interaction with the recess, recess wall and front and rear portions. For example, any insert described herein may automatically lock when manipulated to the bent position. Another example is that the insert may be attached to the rear sole so that the biasing force is transferred directly to the insert shall be equally applicable to all other shoes and such descriptions and features are expressly incorporated for all shoes described herein.
- The present invention has been described with respect to various preferred features and embodiments, however, it is understood that numerous modifications may be made without departing from the scope of the invention. For example, the rear upper may be one or more straps which are continuous with the coupling element or the shoe may contain fasteners without departing from some aspects of the present invention.
Claims (35)
1. A shoe, comprising:
a front portion including a front sole and a front upper, the front upper being attached to the front sole and extending over the front sole and configured to extend over a foot of a wearer;
a rear portion attached to the front portion, the rear portion having a rear sole and a rear upper attached to the rear sole, the rear upper and the rear sole configured to support a heel of the wearer, the rear sole having a bendable portion and a rear heel portion, the bendable portion being resilient and bendable from a relaxed position to a bent position so that the rear sole is bent relative to the front sole, the bendable portion being in a biased condition when in the bent position so that the bendable portion is biased toward the relaxed position when in the bent position; and
a first coupling element extending between the front portion and the rear portion, the first coupling element having a first part and a second part, the first part coupled to the rear portion and the second part coupled to the front portion, the first part and the second part sliding relative to one another when the rear sole moves from the relaxed position to the bent position, the first part and the second part automatically being in a locked position which prevents further relative sliding between the first part and the second part when the rear sole is in the bent position, the locked position being overcome when the wearer steps onto at least one of the front sole and the rear sole.
2. The shoe of claim 1 , wherein:
the first coupling element is compressed when the rear sole is in the bent position relative to the front sole and the bendable portion is in the biased condition, the first coupling being compressed between the first part and the second part by a biasing force exerted by the bendable portion of the rear sole.
3. The shoe of claim 1 , wherein:
the rear portion is configured with the bendable portion positioned between the rear heel portion and the front sole, the bendable portion being bent so that the front sole and the rear heel sole portion change an angle relative to one another by at least 20 degrees when the bendable portion is in the bent position.
4. The shoe of claim 1 , wherein:
the first coupling element is compressed between the front portion and the rear portion by a biasing force exerted by the bendable portion of the rear sole when in the bent position.
5. The shoe of claim 1 , wherein:
the front portion is configured with the front sole including a common layer extending continuously from the front sole to the rear sole.
6. The shoe of claim 1 , wherein:
the rear portion is configured with the rear sole integrally formed with the front sole.
7. The shoe of claim 1 , wherein:
the first coupling element is configured so that the first part and the second part slide against one another when the rear sole moves to the bent position from the relaxed position.
8. The shoe of claim 1 , wherein:
the rear portion is configured with the bendable portion positioned between the rear heel portion and the front sole; and
the first coupling element is configured with the first part coupled to the rear sole to change orientation with the rear heel portion when the bendable portion of the rear sole is in the bent position.
9-13. (canceled)
14. The shoe of claim 1 , wherein:
the first coupling element includes a first insert and a first recess wall, the first recess wall forming a first recess which is U-shaped when viewed from a lateral direction.
15. The shoe of claim 1 , wherein:
the first coupling element bends outwardly in a lateral direction when the rear sole is in the bent position, the lateral direction being defined relative to a shoe orientation.
16. The shoe of claim 1 , further comprising:
a mouth into which the wearer's foot is placed, the mouth being formed between the front portion and the rear portion, the mouth being enlarged in a lateral direction by the first coupling element when the rear sole is in the bent position.
17. The shoe of claim 1 , wherein:
the rear portion is configured with the rear sole being manually manipulated into the bent position.
18. The shoe of claim 1 , wherein:
the rear portion is configured with the rear sole and the front sole shaped to rest stably in an upright position when the rear sole is in the bent position so that the wearer may step onto the at least one of the rear sole and the front sole, wherein the locked position is automatically overcome when the user steps onto the at least one of the front sole and the rear sole.
19. The shoe of claim 1 , wherein:
the first coupling element includes a first insert, the first insert being U-shaped when viewed from a lateral direction.
20. The shoe of claim 1 , further comprising:
a second coupling element also having a first part and a second part, the first part being coupled to the rear portion and the second part coupled to the front portion;
the first coupling element extends along a lateral side between the front portion and the rear portion; and
the second coupling element extends along an opposing lateral side from the first coupling element and also extends from the front portion to the rear portion.
21-23. (canceled)
24. The shoe of claim 1 , wherein:
the rear portion is configured with the bendable portion positioned between the rear heel portion and the front sole, the rear upper being coupled to the rear heel portion so that the rear upper changes orientation with the rear heel portion, the front upper being coupled to the front sole so that the front upper changes orientation with the front sole when the bendable portion of the rear sole moves to the bent position.
25. The shoe of claim 1 , further comprising:
a mouth into which the wearer's foot is placed, the mouth being enlarged in a longitudinal direction and a lateral direction when the rear sole is in the bent position.
26. The shoe of claim 1 , wherein:
the rear sole and the rear upper close around the wearer's heal when the user steps onto the front sole.
27. The shoe of claim 1 , wherein:
the first coupling element is configured with the first part being locked to the second part in a plurality of discrete positions so that the first part and the second part are slidable to each of the plurality of locked positions by manual manipulation, wherein each of the plurality of locked positions is a stable position and each of the plurality of locked positions may be overcome to move the rear sole back toward the relaxed position when the wearer steps onto the at least one of the rear sole and the front sole.
28. The shoe of claim 1 , wherein:
the first coupling element is configured with the second part coupled to the front portion so that the second part changes orientation with the front portion when the rear sole moves to the bent position.
29. The shoe of claim 1 , wherein:
the first coupling element is configured with the first part having a first recess wall coupled to the rear portion, the first recess wall forming a first recess, the second part of the first coupling element having a first insert positioned in the first recess, the first insert sliding within the first recess when the rear sole moves to the bent position, the first insert being automatically locked relative to the first recess when the rear sole is moved to the bent position.
30. The shoe of claim 29 , wherein:
the first coupling element is configured with the first recess wall of the first part coupled to the rear sole so that a biasing force of the rear sole when the rear sole is in the bent position is transferred from the rear sole to the first recess wall.
31-32. (canceled)
33. The shoe of claim 29 , wherein:
the first coupling element is configured with the first insert coupled to the front upper, wherein a biasing force of the rear sole when the rear sole is in the bent position is transferred from the front sole to the first insert through the front upper.
34. The shoe of claim 1 , wherein:
the first coupling element is configured so that the first part forms a first insert coupled to the rear portion, the second part having a first recess wall coupled to the front portion and forming a first recess, the first insert being positioned and slidable within the first recess, the first insert sliding within the first recess when the rear sole moves from the relaxed position to the bent position, the first insert being automatically locked relative to the first recess when the rear sole is moved to the bent position.
35. The shoe of claim 34 , wherein:
the first coupling element is configured with the first insert coupled to the rear sole so that a biasing force created when the rear sole is in the bent position is transferred from the rear sole directly to the first insert.
36-54. (canceled)
55. The shoe of claim 1 , wherein:
the first part of the first coupling element is pivotally coupled to the rear portion.
56-61. (canceled)
62. The shoe of claim 1 , wherein:
at least one of the first part and the second part of the first coupling element forms a first insert, wherein the other of the first part and the second part forms a first recess, the first insert being positioned in and slidable within the first recess when the rear sole moves to the bent position.
63. The shoe of claim 1 , wherein
the first part and the second part of the first coupling element also automatically being in a second locked position when the rear sole is in the relaxed position.
64. The shoe of claim 63 , wherein:
the rear portion is configured to be engaged by an opposing foot, wherein the bendable portion is movable to the bend position when the wearer steps on the rear portion with the opposing foot while pulling up with the foot.
65. The shoe of claim 64 , wherein:
the bendable portion of the rear sole is configured to be moved to the bent position when removing the shoe without manual manipulation by engaging the rear portion with the opposing foot while pulling up with the foot.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13/944,879 US20150020416A1 (en) | 2013-07-18 | 2013-07-18 | Shoe |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US13/944,879 US20150020416A1 (en) | 2013-07-18 | 2013-07-18 | Shoe |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US20150020416A1 true US20150020416A1 (en) | 2015-01-22 |
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ID=52342425
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US13/944,879 Abandoned US20150020416A1 (en) | 2013-07-18 | 2013-07-18 | Shoe |
Country Status (1)
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| US11659886B2 (en) * | 2019-02-26 | 2023-05-30 | Fast Ip, Llc | Rapid-entry footwear having a heel arm and a resilient member |
| US11140941B2 (en) * | 2019-05-03 | 2021-10-12 | Nike, Inc. | Footwear upper with unitary support frame |
| US12471660B2 (en) | 2019-07-29 | 2025-11-18 | Fast Ip, Llc | Rapid-entry footwear having a stabilizer and an elastic element |
| US12274325B2 (en) | 2019-07-29 | 2025-04-15 | Fast Ip, Llc | Rapid-entry footwear having a stabilizer and an elastic element |
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| US12262777B2 (en) | 2019-09-09 | 2025-04-01 | Fast Ip, Llc | Rapid-entry footwear having an arm for expanding an opening |
| US12569027B2 (en) | 2019-10-17 | 2026-03-10 | Fast Ip, Llc | Rapid-entry footwear comprised of a unified material |
| US11707113B2 (en) | 2019-10-18 | 2023-07-25 | Nike, Inc. | Easy-access article of footwear with cord lock |
| US11589653B2 (en) | 2019-11-25 | 2023-02-28 | Nike, Inc. | Tension-retaining system for a wearable article |
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| US12426666B2 (en) | 2020-11-20 | 2025-09-30 | Fast Ip, Llc | Rapid-entry footwear having a split back |
| US12414601B2 (en) | 2021-02-17 | 2025-09-16 | Fast Ip, Llc | Rapid-entry footwear having a transforming footbed |
| US12414609B2 (en) | 2021-03-24 | 2025-09-16 | Fast Ip, Llc | Rapid-entry footwear having a rotating tongue |
| US12059052B2 (en) * | 2021-09-10 | 2024-08-13 | Wolverine Outdoors, Inc. | Footwear entry system |
| US20230077572A1 (en) * | 2021-09-10 | 2023-03-16 | Wolverine Outdoors, Inc. | Footwear entry system |
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| US12599196B2 (en) | 2023-08-31 | 2026-04-14 | Nike, Inc. | Device for an article of footwear including a frame with a footwear plate |
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| STCB | Information on status: application discontinuation |
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