Sole Assembly Formed of Multiple Preforms
20190168475 ยท 2019-06-06
Inventors
- Tee L. Wan (Portland, OR, US)
- Thienchai Chaisumrej (Bangkok, TH)
- Chia-Yi Wu (Long An Province, VN)
- Yu-Chen Lin (Taipei City, TW)
Cpc classification
B29D35/0054
PERFORMING OPERATIONS; TRANSPORTING
International classification
A43B13/12
HUMAN NECESSITIES
Abstract
A sole assembly may be formed by a method that includes positioning a plurality of preforms having different colors together to form a sole assembly preform and placing the sole assembly preform in a recess in a first portion of a mold assembly. The sole assembly preform is subjected to heat for a predetermined amount of time such that the plurality of preforms bond to one another to form a sole assembly.
Claims
1. A sole assembly, comprising: a core portion including a lower surface and ribs extending downward from the lower surface, wherein the ribs define a shoulder extending about at least a portion of the core portion; a first insert contained within and bonded to the core portion; and a perimeter portion bonded to the core portion, wherein the perimeter portion forms at least a portion of an outer periphery of the sole assembly, wherein the perimeter portion includes an aperture that defines an interior lip, and wherein the interior lip is seated on the shoulder of the core portion.
2. The sole assembly according to claim 1, wherein an outer peripheral edge of the first insert is completely surrounded by the core portion and contained within a first interior recess defined by the ribs of the core portion.
3. The sole assembly according to claim 1, wherein the perimeter portion completely surrounds an outer periphery of the core portion.
4. The sole assembly according to claim 1, wherein a surface of the aperture abuts an exterior perimeter of the ribs.
5. The sole assembly according to claim 1, wherein lower surfaces of the core portion, the first insert, and the perimeter portion include a plurality of grooves and lugs or projections.
6. The sole assembly according to claim 1, wherein the core portion has a first color, the first insert has a second color different from the first color, and the perimeter portion has a third color different from the first color and the second color.
7. The sole assembly according to claim 1, wherein each of the core portion, the first insert, and the perimeter portion is an ethyl vinyl acetate material.
8. The sole assembly according to claim 1, wherein the perimeter portion forms an entire outer periphery of the sole assembly.
9. The sole assembly according to claim 1, wherein the core portion, the first insert, and the perimeter portion have different hardnesses from one another.
10. The sole assembly according to claim 1, wherein the first insert is located in a forefoot region or in a heel region of the sole assembly.
11. The sole assembly according to claim 1, wherein the first insert extends from a midfoot region to a forefoot region of the sole assembly.
12. The sole assembly according to claim 1, further comprising: a second insert contained within and bonded to the core portion.
13. The sole assembly according to claim 12, wherein an outer peripheral edge of the second insert is completely surrounded by the core portion.
14. The sole assembly according to claim 12, further comprising: a third insert contained within and bonded to the core portion.
15. The sole assembly according to claim 14, wherein an outer peripheral edge of each of the second insert and the third insert is completely surrounded by the core portion.
16. The sole assembly according to claim 1, wherein lower surfaces of the core portion, the first insert, and the perimeter portion form a grid of hexagonal projections.
17. A sole assembly, comprising: a core portion including a lower surface and ribs extending downward from the lower surface, wherein the ribs define a shoulder extending about at least a portion of the core portion; a first insert contained within and bonded to the core portion, wherein an outer peripheral edge of the first insert is completely surrounded by the core portion and contained within a first interior recess defined by the ribs of the core portion; and a second insert contained within and bonded to the core portion, wherein an outer peripheral edge of the second insert is completely surrounded by the core portion and contained within a second interior recess defined by the ribs of the core portion.
18. The sole assembly according to claim 17, wherein: (a) the first insert is located in a forefoot region of the sole assembly and the second insert is located in a heel region of the sole assembly; or (b) the first insert is located in a forefoot region of the sole assembly and the second insert extends from a midfoot region to a forefoot region of the sole assembly; or (c) the first insert is located in a heel region of the sole assembly and the second insert extends from a midfoot region to a forefoot region of the sole assembly.
19. The sole assembly according to 17, further comprising: a third insert contained within and bonded to the core portion, wherein an outer peripheral edge of the third insert is completely surrounded by the core portion and contained within a third interior recess defined by the ribs of the core portion.
20. The sole assembly according to claim 19, wherein the first insert is located in a forefoot region of the sole assembly, the second insert extends from a midfoot region to a forefoot region of the sole assembly, and the third insert is located in a heel region of the sole assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023] The figures referred to above are not drawn necessarily to scale, should be understood to provide a representation of particular embodiments of the invention, and are merely conceptual in nature and illustrative of the principles involved. Some features of the mold assemblies used to manufacture a sole assembly have been enlarged or distorted relative to others to facilitate explanation and understanding. The same reference numbers are used in the drawings for similar or identical components and features shown in various alternative embodiments. Mold assemblies for a sole assembly and methods of manufacture for such a sole assembly as disclosed herein would have configurations and components determined, in part, by the intended application and environment in which they are used.
DETAILED DESCRIPTION OF CERTAIN PREFERRED EMBODIMENTS
[0024] An article of footwear 10 is depicted in
[0025] Upper 12 defines a void or chamber for receiving a foot. For purposes of reference, upper 12 includes a lateral side 22, an opposite medial side 24, and a vamp or instep area 26. Lateral side 22 is positioned to extend along a lateral side of the foot (i.e., the outside) and generally passes through each of regions 16-20. Similarly, medial side 24 is positioned to extend along an opposite medial side of the foot (i.e., the inside) and generally passes through each of regions 16-20. Upper 12 may also include a closure mechanism, such as lace 28. Upper 12 also includes an ankle opening 30 that provides the foot with access to the void within upper 12.
[0026] Upper 12 may also include an insole (or sockliner, not shown), which is generally a thin, compressible member located within the void for receiving the foot and proximate to a lower surface of the foot. Typically, the insole, which is configured to enhance footwear comfort, may be formed of foam, and optionally a foam component covered by a moisture wicking fabric or textile material. Further, the insole or sockliner may be glued or otherwise attached to the other components of footwear 10, although it need not be attached, if desired.
[0027] Sole assembly 14 may be directly secured to upper 12 with an adhesive, for example. Suitable adhesives are well known in the art and need not be discussed in greater detail here. Sole assembly 14 may be secured to upper 12 with any other suitable fastening means, and such other suitable means of sole assembly 14 to upper 12 will become readily apparent to those skilled in the art, given the benefit of this disclosure.
[0028] It is to be appreciated that in certain embodiments, sole assembly 14 may serve as a midsole, with an outsole (not shown) being secured to the bottom surface of the midsole. In other embodiments, as illustrated here, the bottom surface of sole assembly 14 serves as the ground-engaging portion (or other contact surface-engaging portion) of footwear 10.
[0029] Sole assembly 14 is responsible for attenuating ground (or other contact surface) reaction forces to lessen stresses upon the foot and leg, and absorb energy. Sole assembly 14 may also beneficially utilize such ground reaction forces for more efficient toe-off, and control potentially harmful foot motions, such as over pronation. Sole assembly 14 also forms a ground-engaging portion (or other contact surface-engaging portion) of sole assembly 10. As noted above, in certain embodiments there is a separate outsole member attached to the bottom surface of a midsole of sole assembly 14, while in other embodiments there is no separate outsole member of the sole assembly. The bottom surface of sole assembly 14 may include texturing to improve traction.
[0030] Sole assembly 14 is formed of a plurality of components having different colors. The method used to form the sole assembly from a plurality of preforms having different colors reduces the bleeding between the different colored portions, thereby enhancing the aesthetics of sole assembly 14. The plurality of components may also have, in addition to different colors, different physical properties or performance characteristics. For example, the hardness of the various components may be different. It is to be appreciated that any of the known physical properties or performance characteristics for sole assemblies can be different for the different components of sole assembly 14, thereby altering the support, cushioning, load carrying capability, wear characteristics, and tread life of sole assembly 14, for example. Other suitable physical properties or performance characteristics will become readily apparent to those skilled in the art, given the benefit of this disclosure.
[0031] As seen in the embodiment illustrated in
[0032] In certain embodiments, core portion 32, inserts 34, and perimeter portion 36 may be formed of injection phylon (Ethylene Vinyl Acetate or EVA). The EVA may have a Vinyl Acetate (VA) level between approximately 9% and approximately 40%. Suitable EVA resins include Elvax, provided by DuPont, and Engage, provided by the Dow Chemical Company, for example. In certain embodiments, the EVA may be formed of a combination of high melt index and low melt index material. For example, the EVA may have a melt index between approximately 1 and approximately 50.
[0033] The EVA may also include various components including a blowing agent. The blowing agent may have a percent weight between approximately 10% and approximately 20%. Suitable blowing agents include azodicarboamide, for example. In certain embodiments, a peroxide-based curing agent, such as dicumyl peroxide may be used. The amount of curing agent may be between approximately 0.6% and approximately 1.5%. The EVA may also include homogenizing agents, process aids, and waxes. For example, a mixture of light aliphatic hydrocarbons such as Struktol 60NS may be included. The EVA may also include other constituents such as a release agent (e.g., stearic acid), activators (e.g., zinc oxide), fillers (e.g., magnesium carbonate), pigments, and clays.
[0034] As illustrated in
[0035] Preforms of the components of sole assembly 14 are seen in exploded form in
[0036] An aperture 50 extending through perimeter portion preform 36 defines an interior lip 52 that is seated on shoulder 48 of core portion preform 32. As seen in
[0037] As seen here in
[0038] A method of forming sole assembly 14 that reduces bleeding between the colors of core portion preform 32, insert preforms 34, and perimeter portion preform 36 will now be described. As seen in
[0039] Recesses 64 formed in the bottom of core recess 63 serve to form ribs 42 when core portion preform 32 is formed in first preform mold assembly 54. Recesses 64 may include surface irregularities 66, which serve to form the mating surface irregularities 53 in the lower surface of ribs 42, as described above in conjunction with
[0040] Core portion preform 32 is formed in core recess 63 of first preform mold assembly 54 in known fashion, with heated EVA being inserted into core recess 63. The resultant EVA core portion preform 32 is later combined with insert preforms 34 and perimeter preform 36 to form sole assembly 14, as described in greater detail below.
[0041] A second preform mold assembly 68, seen in
[0042] Surface irregularities 88 formed in the bottom surface of recess 82 serve to form the mating surface irregularities 53 in the lower surface of inserts 34 and perimeter portion 36, as described above with respect to core portion 32 and in conjunction with
[0043] A perimeter portion preform 36 with insert preforms 34 seated therein and formed in second preform mold assembly 68 is shown here for illustrative purposes in the right recess 82 of bottom plate 70. It is to be appreciated that any number of insert preforms 34 may be formed in second preform mold assembly 68. In the illustrated embodiment, there are three insert preforms 34 used to form sole assembly 14. It is to be appreciated that a single insert preform 34, or any number of insert preforms 34, may be used to form sole assembly 14.
[0044] As seen in
[0045] After heated EVA is injected into perimeter recess 63, top plate 72 is then pivoted down into a closed position on core plate 73. Heated EVA for forming insert portions 34 is then injected through a second gate 92 formed in top plate 72 and core plate 73 into insert recesses 84. Thus, the configuration of the second preform mold assembly 68 allows for the simultaneous formation of two different colors of the injected EVA material to form both insert preforms 34 and perimeter portion preform 36.
[0046] All of the preforms, that is, core portion preform 32, insert preforms 34, and perimeter portion preform 36, each having a different color, are then preassembled into a single sole assembly preform 94. As illustrated in
[0047] In certain embodiments, third mold assembly 100 is maintained at a temperature between approximately 170 C. and 180 C. for approximately 10 minutes. The specific temperature and time period used to form sole assembly 14 in third mold assembly 100 can be varied, in known fashion, depending on the particular EVA used.
[0048] In known fashion, after sole assembly 14 is removed from third mold assembly 100, sole assembly 14 will expand. Sole assembly 14 then goes through typical stabilization steps, including cooling and trimming, as necessary.
[0049] By inserting the entire unitary preform 94 into recess 96 at one time, bleeding between the different colors of the portions of preform 94 as sole assembly 14 is formed is reduced, since all of the materials start melting at the same time upon insertion into third mold assembly 100.
[0050] In certain embodiments, as seen in
[0051] Thus, while there have been shown, described, and pointed out fundamental novel features of various embodiments, it will be understood that various omissions, substitutions, and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit and scope of the invention. For example, it is expressly intended that all combinations of those elements and/or steps which perform substantially the same function, in substantially the same way, to achieve the same results are within the scope of the invention. Substitutions of elements from one described embodiment to another are also fully intended and contemplated. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.