EP3089795B1 - Sportsball mit gekerbter überzug - Google Patents

Sportsball mit gekerbter überzug Download PDF

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Publication number
EP3089795B1
EP3089795B1 EP14827685.0A EP14827685A EP3089795B1 EP 3089795 B1 EP3089795 B1 EP 3089795B1 EP 14827685 A EP14827685 A EP 14827685A EP 3089795 B1 EP3089795 B1 EP 3089795B1
Authority
EP
European Patent Office
Prior art keywords
panel
indentation
casing
ball
indentations
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.)
Active
Application number
EP14827685.0A
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English (en)
French (fr)
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EP3089795A1 (de
Inventor
Scott R. Berggren
Tal Cohen
Vincent F. White
Gary W. Glahn
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nike Innovate CV USA
Original Assignee
Nike Innovate CV USA
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from US14/145,215 external-priority patent/US9370693B2/en
Application filed by Nike Innovate CV USA filed Critical Nike Innovate CV USA
Priority to EP20165813.5A priority Critical patent/EP3708228B1/de
Publication of EP3089795A1 publication Critical patent/EP3089795A1/de
Application granted granted Critical
Publication of EP3089795B1 publication Critical patent/EP3089795B1/de
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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B45/00Apparatus or methods for manufacturing balls
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B41/00Hollow inflatable balls
    • A63B41/08Ball covers; Closures therefor
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • A63B2071/0694Visual indication, e.g. Indicia
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2243/00Specific ball sports not provided for in A63B2102/00 - A63B2102/38
    • A63B2243/0025Football

Definitions

  • a variety of inflatable sport balls such as a soccer ball, conventionally exhibit a layered structure that includes a casing, an intermediate structure, and a bladder.
  • the casing forms an exterior portion of the sport ball and is generally formed from a plurality of durable and wear-resistant panels joined together along abutting edge areas (e.g., with stitching or adhesives).
  • panel configurations may vary significantly, the casing of a traditional soccer ball includes thirty-two panels, twelve of which have a pentagonal shape and twenty of which have a hexagonal shape.
  • the intermediate structure forms a middle portion of the sport ball and is positioned between the casing and the bladder.
  • the intermediate structure may provide a softened feel to the sport ball, impart energy return, and restrict expansion of the bladder.
  • the intermediate structure or portions of the intermediate structure may be bonded, joined, or otherwise incorporated into the casing as a backing material.
  • the intermediate structure or portions of the intermediate structure may be bonded, joined, or otherwise incorporated into the bladder.
  • the bladder which has an inflatable configuration, is located within the intermediate structure to provide an interior portion of the sport ball.
  • the bladder In order to facilitate inflation (i.e., with pressurized air), the bladder generally includes a valved opening that extends through each of the intermediate structure and casing, thereby being accessible from an exterior of the sport ball.
  • US 2012/0277044 A1 and US 2013/148946 A1 which are cited in the ISR, relate to a spherical sport ball which includes a casing that includes a first and second substantially hemispherical panel components.
  • a sport ball may include indentations in the casing of the ball, which are arranged to form predetermined patterns in the casing.
  • the patterns may extend across seams to multiple panels.
  • the indentations may resemble seams between panels of the casing.
  • the indentations may be formed by compressing and heating a multi-layer casing to join an outer layer to an inner layer through a foam intermediate layer.
  • fixedly attached shall refer to two components joined in a manner such that the components may not be readily separated (for example, without destroying one or both of the components).
  • exemplary modalities of fixed attachment may include joining with permanent adhesive, rivets, stitches, nails, staples, welding or other thermal bonding, and/or other joining techniques.
  • two components may be "fixedly attached” by virtue of being integrally formed, for example, in a molding process.
  • welding or variants thereof (such as “thermal bonding”) is defined as a technique for securing two elements to one another that involves a softening or melting of a polymer material within at least one of the elements such that the materials of the elements are secured to each other when cooled.
  • welding or variants thereof (e.g., “thermal bond”) is defined as the bond, link, or structure that joins two elements through a process that involves a softening or melting of a polymer material within at least one of the elements such that the materials of the elements are secured to each other when cooled.
  • welding may involve (a) the melting or softening of two panels that include polymer materials such that the polymer materials from each panel intermingle with each other (e.g., diffuse across a boundary layer between the polymer materials) and are secured together when cooled and (b) the melting or softening a polymer material in a first panel such that the polymer material extends into or infiltrates the structure of a second panel (e.g., infiltrates crevices or cavities formed in the second panel or extends around or bonds with filaments or fibers in the second panel) to secure the panels together when cooled.
  • Welding may occur when only one panel includes a polymer material or when both panels include polymer materials. Welding generally produces a heat affected zone in which the materials of the two joined components are intermingled. For purposes of this disclosure, this heat affected zone shall be considered a "weld" or "thermal bond.”
  • welding does not generally involve the use of stitching or adhesives, but involves directly bonding components to each other with heat. In some situations, however, stitching or adhesives may be utilized to supplement the joining of components through welding.
  • Sport Sport ball casings may be formed of a plurality of panels.
  • the panels may be joined to each other using welding to form the seams between the casing panels.
  • the peripheral edges of the panels may be folded to form flange portions.
  • the flange portions of adjacent panels may be welded to one another in a similar position as panels of a sewn ball casing.
  • the majority of the seams may be formed by welding the panels to one another, forming the casing inside out. Once the majority of the seams are welded, the casing may be turned right side out through an opening between two or more panels that are not joined together. After the casing has been turned right side out, additional components may be inserted into the casing.
  • a bladder configured to retain a pressurized gas may be inserted into the casing.
  • an intermediate layer having a limited degree of stretch may be inserted between the bladder and the casing.
  • One advantage of utilizing a welding process to form the seams relates to the overall mass of the ball. Whereas approximately ten to fifteen percent of the mass of a conventional sport ball may be from the seams between panels, welding casing panels to one another to form the seams may reduce the mass by eliminating stitching and/or adhesives from the seam. The mass that would otherwise be imparted by the stitching and/or adhesives may be utilized for other structural elements that enhance the performance properties (e.g., energy return, sphericity, mass distribution, durability, aerodynamics) of the ball. Another advantage relates to manufacturing efficiency. Stitching each of the seams of a conventional sport ball may be a relatively time-consuming process, particularly when hand stitching is utilized. By welding panels together to form the seams between panels, the time necessary for forming the casing may be reduced, thereby increasing the overall manufacturing efficiency.
  • sport ball casing panels may include a polymer material that may be utilized to secure the panels to each other.
  • suitable polymer materials for the casing may include thermoplastic and/or thermoset polyurethane, polyamide, polyester, polypropylene, and polyolefin.
  • the casing may incorporate filaments or fibers that reinforce or strengthen the casing.
  • casing 20 may have a layered structure that includes an outer layer of the polymer material and an inner layer formed from a textile, polymer foam, or other material that is bonded with the polymer material.
  • the polymer materials within the casing panels transition from a solid state to either a softened state or a liquid state, particularly when a thermoplastic polymer material is utilized. When sufficiently cooled, the polymer materials then transition back from the softened state or the liquid state to the solid state. Based upon these properties of polymer materials, welding processes may be utilized to form a weld that joins peripheral portions of panels to each other.
  • a sport ball 10 having the general configuration of a soccer ball is depicted in Figs. 1-3 .
  • Ball 10 exhibits a layered structure having (a) a casing 20 that forms an exterior portion of ball 10, (b) an intermediate structure 30 located within casing 20, and (c) an inflatable bladder 40 that forms an interior portion of ball 10.
  • bladder 40 induces ball 10 to take on a substantially spherical shape. More particularly, pressure within bladder 40 causes bladder 40 to place an outward force upon intermediate structure 30. In turn, intermediate structure 30 places an outward force upon casing 20.
  • a portion of intermediate structure 30 may have a limited degree of stretch.
  • bladder 40 places an outward force upon intermediate structure 30, but the stretch characteristics of intermediate structure 30 effectively prevent the outward force from inducing significant tension in casing 20. Accordingly, intermediate structure 30 restrains pressure from bladder 40, while permitting outward forces to induce a spherical shape in casing 20, thereby imparting a spherical shape to ball 10.
  • Casing 20 is formed from various panels 21 that are joined together along abutting side or edge areas to form a plurality of seams 22.
  • panels 21 are depicted as having the shapes of twelve equilateral pentagons, panels 21 may have non-equilateral shapes, concave or convex edges, or a variety of other shapes (e.g., triangular, square, rectangular, hexagonal, trapezoidal, round, oval, non-geometrical) that combine in a tessellation-type manner to form casing 20.
  • ball 10 may have twelve pentagonal panels 21 and twenty hexagonal panels 21 to impart the general configuration of a traditional soccer ball.
  • Selected panels 21 may also be formed of unitary (i.e., one piece) construction with adjacent panels 21 to form bridged panels that reduce the number of seams 22.
  • seams 22 may be formed by joining the abutting edge areas of panels 21 with stitching (e.g., hand or machine stitching), seams 22 may also be formed through adhesive bonding or welding.
  • stitching e.g., hand or machine stitching
  • seams 22 may also be formed through adhesive bonding or welding.
  • An example of welded seams is disclosed in U.S. Patent Application Publication 2010/0240479 to Raynak, et al. .
  • Casing 20 defines an exterior surface 23 and an opposite interior surface 24. Exterior surface 23 faces outward and forms an exterior surface of ball 10. Interior surface 24 is located opposite exterior surface 23 and faces inward and toward intermediate structure 30. In many configurations of ball 10, interior surface 24 contacts intermediate structure 30.
  • a plurality of indentations 25 and 26 are formed in casing 20 and extend toward a central area of casing 20, as depicted in Figs. 1-3 . Whereas indentations 25 are formed in exterior surface 23, indentations 26 are formed in interior surface 24. Indentations 25 are generally located opposite indentations 26. Indentations 25 and 26 impart various advantages to ball 10. For example, indentations 25 may have a design or appearance that enhances the aesthetics of ball 10.
  • indentations 25 may also form indicia identifying the manufacturer of ball 10 or conveying information as to the features of ball 10. Additionally, indentations 25 may enhance the aerodynamics of ball 10 or provide an individual with greater control over ball 10 during kicking, dribbling, or passing, for example.
  • Intermediate structure 30 is positioned between casing 20 and bladder 40 and may be formed to include one or more of a compressible foam layer that provides a softened feel to the sport ball, a rubber layer that imparts energy return, and a restriction layer to restrict expansion of bladder 40.
  • the overall structure of intermediate structure 30 may vary significantly.
  • the restriction layer may be formed from (a) a thread, yarn, or filament that is repeatedly wound around bladder 40 in various directions to form a mesh that covers substantially all of bladder 40, (b) a plurality of generally flat or planar textile elements stitched together to form a structure that extends around bladder 40, or (c) a plurality of generally flat or planar textile strips that are impregnated with latex and placed in an overlapping configuration around bladder 40.
  • intermediate structure 30 may be formed as a substantially seamless and curved (e.g., hemispherical or spherical) textile, as disclosed in U.S. Patent Application Publication 2009/0325746 to Raynak, et al. .
  • intermediate structure 30 or portions of intermediate structure 30 may also be bonded, joined, or otherwise incorporated into bladder 40, or intermediate structure 30 may be absent from ball 10. Accordingly, the structure of intermediate structure 30 may vary significantly to include a variety of configurations and materials.
  • Bladder 40 has an inflatable configuration and is located within intermediate structure 30 to provide an inner portion of ball 10. When inflated, bladder 40 exhibits a rounded or generally spherical shape. In order to facilitate inflation, bladder 40 may include a valved opening (not depicted) that extends through intermediate structure 30 and casing 20, thereby being accessible from an exterior of ball 10, or bladder 40 may have a valveless structure that is semi-permanently inflated. Bladder 40 may be formed from a rubber or carbon latex material that substantially prevents air or other fluids within bladder 40 from diffusing to the exterior of ball 10. In addition to rubber and carbon latex, a variety of other elastomeric or otherwise stretchable materials may be utilized for bladder 40. Bladder 40 may also have a structure formed from a plurality of joined panels, as disclosed in U.S. Patent Application Publication 2009/0325745 to Rapaport, et al. .
  • An individual panel 21 is depicted in Figs. 4-6 and has a layered structure that includes a first or outer layer 51, a second or middle layer 52, and a third or inner layer 53.
  • Outer layer 51 forms a portion of exterior surface 23
  • middle layer 52 is positioned inward and adjacent to outer layer 51
  • inner layer 53 is positioned inward and adjacent to middle layer 52.
  • middle layer 52 is positioned between layers 51 and 53. That is, layers 51 and 53 effectively form cover layers (i.e., outer and inner layers) located on opposite sides of middle layer 52.
  • outer layer 51 may be formed from polymer materials that impart a durable and wear-resistant exterior surface for ball 10.
  • suitable polymer materials for panels 21 include polyurethane, polyvinylchloride, polyamide, polyester, polypropylene, and polyolefin.
  • outer layer 51 may be formed from a synthetic leather material.
  • Middle layer 52 may be formed from a polymer foam material, such as polyurethane or ethylvinylacetate. In some configurations, middle layer 52 may include layers (e.g., three layers) of polymer foam material having different densities.
  • inner layer 53 may be formed from a textile material (e.g., a woven or knit textile). More particularly, the textile material of inner layer 53 may formed from polyester, cotton, nylon, rayon, silk, spandex, or a variety of other materials. The textile material may also include multiple materials, such as a polyester and cotton blend. In some configurations, one or more layers 51-53 may incorporate filaments or fibers that reinforce or strengthen casing 20.
  • a textile material e.g., a woven or knit textile. More particularly, the textile material of inner layer 53 may formed from polyester, cotton, nylon, rayon, silk, spandex, or a variety of other materials. The textile material may also include multiple materials, such as a polyester and cotton blend. In some configurations, one or more layers 51-53 may incorporate filaments or fibers that reinforce or strengthen casing 20.
  • Layers 51 and 53 are generally spaced from each other by middle layer 52. In the areas of indentations 25 and 26, however, layers 51 and 53 bow inward and are bonded or otherwise secured to each other. That is, indentations 25 and 26 are located opposite each other and extend into panel 21 at corresponding locations, where the portions of layers 51 and 53 that respectively form indentations 25 and 26 are secured to each other.
  • layers 51 and 53 may be thermal bonded to one another. Whereas a majority of outer layer 51 is spaced from inner layer 53, layers 51 and 53 extend through middle layer 52 in the areas of indentations 25 and 26 to bond or otherwise be secured to each other. As such, middle layer 52 may part, form an aperture, or otherwise be absent in the areas of indentations 25 and 26. In some configurations, middle layer 52 may compress significantly in the areas of indentations 25 and 26, thereby forming a polymer layer that separates the portions of layers 51 and 53 that form indentations 25 and 26.
  • indentations 25 and 26 may vary considerably. As depicted, indentations 25 and 26 extend parallel to a plurality of edges 27 of panel 21. In this configuration, indentations 25 and 26 form a pentagonal shape that is spaced inward from edges 27. In further configurations of panel 21, however, indentations 25 and 26 may be located in other areas or may impart different shapes or arrangements.
  • Fig. 7A depicts a configuration wherein indentations 25 form concentric pentagons that are connected by radial portions.
  • indentations 25 respectively have circular and triangular configurations, but may also be square, rectangular, hexagonal, or any other regular or non-regular shape.
  • indentations 25 exhibit a radial configuration.
  • indentations 25 may have a graphic appearance, as in Fig. 7E , or may impart information, as in Fig. 7F .
  • indentations 25 may also form the shape of a company logo or trademark.
  • indentations 25 may have a design or appearance that enhances the aesthetics of ball 10, form indicia identifying the manufacturer of ball 10, convey information as to the features of ball 10, enhance the aerodynamics of ball 10, or provide an individual with greater control over ball 10.
  • the indentations may be spaced from the seams of the sport ball. This may facilitate manufacturing by providing substantially smooth surfaces at the peripheral edges of the panels that are joined to one another. In addition, spacing the indentations from the seams may provide performance benefits, such as aerodynamics and ball feel.
  • Figs. 7A-7C , 7E, and 7F illustrate configurations in which indentations 25 are spaced from seams 22. ( See also, Figs. 1-5 .)
  • the indentations may extend to edges of the panels. This may facilitate manufacturing, since multiple panels may be indented simultaneously, for example, by indenting a sheet of casing material, and then cutting the sheet into a plurality of panels. This may also enable patterns to be carried across multiple panels, bridging seams between the panels.
  • Fig. 7D illustrates a configuration in which indentations 25 extend to peripheral edges of panel 21.
  • indentations 25 and 26 may also vary considerably. Referring to Fig. 6 , indentations 25 and 26 each have a generally rounded configuration that extends to an approximate midpoint of panel 21. In another configuration, as depicted in Fig. 8A , indentations 25 may extend through more of the thickness of panel 21 than indentations 26. Referring to Fig. 8B , indentations 25 extend through substantially all of the thickness of panel 21. As also shown in Fig. 8B , in some embodiments, interior surface 24 of inner layer 53 may have a substantially planar configuration opposite indentation 25 in exterior surface 23 of panel 21.
  • indentations 25 and 26 may be spaced from each other such that a portion of middle layer 52 extends between indentations 25 and 26.
  • middle layer 52 has (a) a first thickness between indentations 25 and 26 and (b) a second thickness in an area spaced from indentations 25 and 26, the first thickness being less than the second thickness.
  • indentations 25 and 26 may also exhibit substantially squared configurations.
  • the indentations may have substantially squared cross-sectional configurations.
  • Such substantially squared cross-sectional configurations may have a more distinct appearance than indentations having substantially rounded cross-sectional configurations.
  • substantially squared indentations may also provide performance benefits such as aerodynamics, ball feel, and water channeling.
  • panel 21 may include two opposing indentations having substantially squared cross-sectional configurations, as depicted in Fig. 8D .
  • panel 21 may include a substantially-squared indentation on only one side.
  • indentation 25 may extend through substantially all of a thickness of panel 21.
  • interior surface 24 of inner layer 53 may have a substantially planar configuration opposite indentation 25 in exterior surface 23 of panel 21.
  • outer layer 51 may be bonded (e.g., thermal bonded) to inner layer 53 of the casing panel 21 in a bonded region 28.
  • a shoulder 29 of outer layer 51 may have a minimal radius, as shown in Fig. 8E .
  • a larger radius may be used at shoulder 29, as shown in Fig. 8F , in which indentation 25 also has a substantially squared cross-sectional configuration.
  • the use of a minimal radius or a larger radius shoulder may be selected to facilitate manufacturing as well as for performance reasons, such as aerodynamics and ball feel.
  • panels 21 incorporate indentations 25 and 26, which may have a design or appearance that enhances the aesthetics of ball 10.
  • indentations 25 may also form indicia identifying the manufacturer of ball 10 or conveying information as to the features of ball 10. Additionally, indentations 25 may enhance the aerodynamics of ball 10 or provide an individual with greater control over ball 10 during kicking, dribbling, or passing, for example.
  • FIGs. 9A-9C and 10A-10C A variety of manufacturing processes may be utilized to form indentations 25 and 26 in panels 21.
  • An example of a manufacturing process is depicted in Figs. 9A-9C and 10A-10C .
  • one of panels 21 is located on a platen 61.
  • a press plate 62 is positioned above platen 61 and includes a protrusion 63 having a pentagonal shape (e.g., a shape of indentations 25 and 26). Press plate 62 then translates toward platen 61 and compresses panel 21, as depicted in Figs. 9B and 10B . More particularly, protrusion 63 presses into and heats the areas of panel 21 forming indentations 25 and 26.
  • press plate 62 and protrusion 63 (a) soften a portion of middle layer 52, which may be formed form a polymer foam material and (b) bond outer layer 51 to inner layer 53. As depicted in Figs. 9C and 10C , press plate 62 then moves away from panel 21 to substantially complete the formation of indentations 25 and 26.
  • the polymer materials within panels 21 transition from a solid state to either a softened state or a liquid state, particularly when a thermoplastic polymer material is utilized. When sufficiently cooled, the polymer materials then transition back from the softened state or the liquid state to the solid state. Based upon these properties, (a) the polymer material of outer layer 51 may soften to form a bond with the textile material of inner layer 53 and (b) the polymer foam material of middle layer 52 may melt, soften, part, collapse, or form an aperture that permits layers 51 and 53 to contact and bond with each other.
  • bonding apparatus 62 may emit heat when in contact with panel 21.
  • resistive heating elements may be incorporated into pres plate 62 to raise the temperature of panel 21 in the areas of indentations 25 and 26.
  • high-frequency (HF) heating, radio frequency (RF) heating, or ultrasonic heating elements may be incorporated into press plate 62 and protrusion 63 to raise the temperature of panel 21 in the areas of indentations 25 and 26.
  • protrusion 63 presses into the side of panel 21 that includes outer layer 51.
  • press plate 62 compresses outer layer 51 against inner layer 53, which lies against platen 61, indentation 26 forms in inner layer 53.
  • outer layer 51 is effectively placed in tension by the pressure from press plate 62.
  • the tension in outer layer 51 pulls inner layer 53 toward the center of panel 21.
  • protrusion 63 only presses into one side of panel 21, both indentations 25 and 26 are formed due to an equalization of forces in panel 21. Accordingly, both of indentations 25 and 26 may be formed by pressing into only one side of panel 21 with press plate 62.
  • FIG. 11 and 12 Another sport ball 70 is depicted in Figs. 11 and 12 as including a casing 71, an intermediate structure 72, and a bladder 73.
  • casing 71 has a layered configuration that includes an outer layer 81, a middle layer 82, and an inner layer 83. Additionally, layers 81 and 83 respectively form indentations 74 and 75 in areas of casing 71.
  • casing 20 included various panels 21 that were joined by seams 22
  • casing 71 has a substantially uniform or unbroken configuration that does not include panels or includes fewer panels.
  • indentations 74 and 75 are located in areas that correspond with the positions of seams 22 in ball 10. That is, indentations 74 and 75 impart the appearance of seams in ball 70.
  • Some indentations are arranged to correspond with one another across the seams between the panels.
  • the indentations may extend proximate the seam on adjacent panels.
  • the indentations may extend to the edge of the panel, and thus continue across the seam.
  • the indentations of adjacent panels may be arranged to form a pattern, such as polygonal shapes.
  • the indentations may be arranged to continue a pattern of the seams between panels.
  • the indentations may be aligned with seams.
  • such indentations may be configured to define simulated panels of the casing. That is, by having the appearance of seams, indentations in the casing may be arranged to define portions of a panel that have the appearance of an entire panel. Further, in some embodiments, the indentations may be arranged in the pattern of a logo.
  • Fig. 13 shows a portion of a sport ball casing 1300.
  • Casing 1300 may be formed of a plurality of panels, including a first panel 1305 and a second panel 1310.
  • First panel 1305 may be joined to second panel 1310 at a seam 1325.
  • Seam 1325 may be formed using any suitable method of joining first panel 1305 and second panel 1310. Exemplary such methods include stitching, use of adhesives, and welding.
  • first panel 1305 includes a first central panel portion 1315 and first flange areas 1320 at the peripheral edges of first panel 1305.
  • second panel includes a second central panel portion 1321 and second flange areas 1322.
  • the flange areas may be joined to flange areas of other panels to form casing 1300 by forming seams, such as seam 1325.
  • First panel 1305 includes a first indentation 1330, a second indentation 1331 , and a third indentation 1332.
  • first panel 1305 may include indentations arranged to form a logo 1355.
  • Portions of first indentation 1330 have an elongate configuration and extend proximate to seam 1325.
  • first indentation 1330 may define a pattern that simulates seams of casing 1300.
  • the first indentation 1330 includes a plurality of elongate portions arranged to demarcate a first central simulated panel portion 1333, which may resemble a panel of casing 1300.
  • Second panel 1310 includes a second (fourth) indentation 1335. Portions of second (fourth) indentation 1335 have an elongate configuration and extend proximate to seam 1325. In addition, second (fourth) indention 1335 defines a second central simulated panel portion 1350.
  • First central simulated panel portion 1333 and second central simulated panel portion 1350 may have any suitable configurations. For example, as shown in Fig. 13 , the central simulated panel portions may have a polygonal shape, such as a pentagonal shape, resembling a soccer ball panel.
  • Second (fourth) indentation 1335 is configured to correspond with first indentation 1330 and second indentation 1331 of first panel across seam 1325.
  • first panel 1305 may also include a first mating panel portion 1340 defined by first indentation 1330 and second indentation 1331.
  • Second panel 1310 may include a second mating panel portion 1345 defined by fourth indentation 1335.
  • first mating panel portion 1340 may mate with second mating panel portion 1345 to form a pattern across seam 1325.
  • first mating panel portion 1340 and second mating panel portion 1345 may combine to form a hexagonal casing portion that has the appearance of a hexagonal casing panel.
  • seam 1325 may include an indentation.
  • the exterior surface of casing 1300 may be substantially smooth across seam 1325.
  • one or more of the indentations may continue a pattern formed by the plurality of seams joining panels of the casing.
  • second indentation 1331 may be arranged in alignment with the edge of second panel 1310 and, therefore, may continue the pattern of a seam formed between second panel 1310 and an adjacent panel (not shown).
  • Fig. 14 shows portions of a casing 1400, including a first panel 1405 and a second panel 1410, which may be joined to first panel 1405 at a seam 1425.
  • First panel may include a first exterior surface 1415 and second panel 1410 may include a second exterior surface 1420.
  • First panel 1405 and second panel 1410 may include indentations in first exterior surface 1415 and second exterior surface 1420, in which the indentations are arranged in the pattern shown in Fig. 7D .
  • first panel 1405 may include a first indentation 1430
  • second panel 1410 may include a second indentation 1435.
  • the indentations of first panel 1405 and second panel 1410 may have any of the configurations described above with respect to other disclosed embodiments.
  • first indentation 1430 and second indentation 1435 may be arranged to form a pattern extending across seam 1425.
  • first indentation 1430 and second indentation 1435 may each have an elongate configuration.
  • first indentation 1430 and second indentation 1435 may be in substantial alignment with one another across seam 1425.

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Claims (13)

  1. Sportball, umfassend:
    eine Hülle (1300), gebildet aus einer Vielzahl von Panels (1305, 1310), die an einer Vielzahl von Nähten (1325) miteinander verbunden sind, wobei die Vielzahl von Panels (1305, 1310) ein erstes Panel (1305) und ein zweites Panel (1310) umfasst, das an einer Naht (1325) mit dem ersten Panel (1305) verbunden ist; und
    eine Blase, die sich innerhalb der Hülle (1300) befindet;
    wobei das erste Panel (1305) Folgendes umfasst:
    eine erste äußere Schicht, die eine erste Einkerbung (1330) in einer ersten Außenoberfläche des ersten Panels (1305) bestimmt,
    eine erste innere Schicht, die eine erste Innenoberfläche des ersten Panels (1305) bestimmt, und
    eine erste mittlere Schicht, wobei ein Großteil der ersten äußeren Schicht des ersten Panels (1305) mittels der ersten mittleren Schicht von der ersten inneren Schicht des ersten Panels (1305) beabstandet ist und die erste äußere Schicht des ersten Panels (1305) an der ersten Einkerbung (1330) direkt an die erste innere Schicht des ersten Panels (1305) geklebt ist; und
    wobei das zweite Panel (1310) Folgendes umfasst:
    eine zweite äußere Schicht, die eine zweite Einkerbung (1335) in einer zweiten Außenoberfläche des zweiten Panels (1310) bestimmt,
    eine zweite innere Schicht, die eine zweite Innenoberfläche des zweiten Panels (1310) bestimmt, und
    eine zweite mittlere Schicht, wobei ein Großteil der zweiten äußeren Schicht des zweiten Panels (1310) mittels der zweiten mittleren Schicht von der zweiten inneren Schicht des zweiten Panels (1310) beabstandet ist und die zweite äußere Schicht des zweiten Panels (1310) an der zweiten Einkerbung (1335) direkt an die zweite innere Schicht des zweiten Panels (1310) geklebt ist;
    wobei die erste Einkerbung (1330) sich nahe der Naht (1325) erstreckt und die zweite Einkerbung (1335) sich nahe der Naht (1325) erstreckt; und
    wobei die erste Einkerbung (1330) so ausgestaltet ist, dass sie mit der zweiten Einkerbung (1335) über die Naht (1325) hinweg übereinstimmt,
    wobei die erste Einkerbung (1330) eine längliche Ausgestaltung aufweist und die zweite Einkerbung (1335) eine längliche Ausgestaltung aufweist, dadurch gekennzeichnet, dass
    die erste Einkerbung (1330), die einen ersten mittleren simulierten Panelabschnitt (1333) bestimmt, und die zweite Einkerbung (1335), die einen zweiten mittleren simulierten Panelabschnitt (1350) bestimmt, so angeordnet sind, dass sie ein Muster bilden, das sich über die Naht hinweg erstreckt (1325).
  2. Sportball nach Anspruch 1,
    wobei die zweite Einkerbung (1335) sich in Ausrichtung mit der ersten Einkerbung (1330) erstreckt.
  3. Sportball nach Anspruch 1, wobei das Muster einen oder mehrere Abschnitte eines Polygons umfasst.
  4. Sportball nach Anspruch 1, wobei die erste Einkerbung (1330) und die zweite Einkerbung (1335) ein Muster fortführen, das mittels der Vielzahl von Nähten (1325) gebildet wird.
  5. Sportball nach Anspruch 1, wobei die erste Einkerbung (1330) eine quadratische Querschnittskonfiguration aufweist.
  6. Sportball nach Anspruch 1, wobei
    die erste äußere Schicht ein Polymermaterial umfasst und so positioniert ist, dass sie einen Abschnitt einer Außenoberfläche des Balls bildet,
    die erste mittlere Schicht ein Polymerschaummaterial umfasst und innen positioniert ist und der ersten äußeren Schicht benachbart ist,
    die erste innere Schicht innen positioniert ist und der ersten mittleren zweiten Schicht benachbart ist,
    die erste Einkerbung (1330) sich durch die gesamte Dicke des ersten Panels (1305) erstreckt und
    die erste Einkerbung (1330) eine quadratische Querschnittsausgestaltung aufweist.
  7. Sportball nach Anspruch 6, wobei die erste Einkerbung (1330) von den Nähten (1325) beabstandet ist.
  8. Sportball nach Anspruch 6, wobei das erste Panel (1305) eine oder mehrere Umfangskanten aufweist, die mit Kanten benachbarter Panels der Hülle (1330) verbunden sind, um eine oder mehrere Nähte zu bilden, wobei die erste Einkerbung (1330) sich mindestens bis zu einer der einen oder mehreren Umfangskanten erstreckt.
  9. Sportball nach Anspruch 6, wobei
    die zweite äußere Schicht ein Polymermaterial umfasst und so positioniert ist, dass sie einen Abschnitt einer Außenoberfläche des Balls bildet,
    die zweite mittlere Schicht ein Polymerschaummaterial umfasst und innen positioniert ist und der zweiten äußeren Schicht benachbart ist, und
    die zweite innere Schicht innen positioniert ist und der zweiten mittleren Schicht benachbart ist.
  10. Sportball nach Anspruch 1, wobei
    die erste äußere Schicht ein Polymermaterial umfasst und so positioniert ist, dass sie einen Abschnitt einer Außenoberfläche des Balls bildet,
    die erste mittlere Schicht ein Polymerschaummaterial umfasst und innen positioniert ist und der ersten äußeren Schicht benachbart ist,
    die erste innere Schicht innen positioniert ist und der ersten mittleren Schicht benachbart ist,
    die erste Einkerbung von den Nähten beabstandet ist,
    die erste Einkerbung (1330) sich durch die gesamte Dicke des ersten Panels (1305) erstreckt und
    die erste innere Schicht eine zur Innenseite des Balls weisende Innenoberfläche umfasst, wobei die Innenoberfläche eine ebene Ausgestaltung gegenüber der ersten Einkerbung (1330) in der Außenoberfläche des ersten Panels (1305) aufweist.
  11. Sportball nach Anspruch 10, wobei das erste Panel (1305) eine oder mehrere Umfangskanten aufweist, die so mit Kanten benachbarter Panels der Hülle (1300) verbunden sind, dass sie eine oder mehrere Nähte bilden, wobei sich die erste Einkerbung (1330) mindestens bis zu einer der einen oder mehreren Umfangskanten erstreckt.
  12. Sportball nach Anspruch 10, wobei das erste Panel (1305) eine oder mehrere Umfangskanten hat, die mit Kanten benachbarter Panels der Hülle (1300) verbunden sind, um eine oder mehrere Nähte zu bilden, wobei die erste Einkerbung (1330) sich mindestens bis zu einer der einen oder mehreren Umfangskanten erstreckt.
  13. Sportball nach Anspruch 10, wobei
    die zweite äußere Schicht ein Polymermaterial umfasst und so positioniert ist, dass sie einen Abschnitt einer Außenoberfläche des Balls bildet,
    die zweite mittlere Schicht ein Polymerschaummaterial umfasst und innen positioniert ist und der zweiten äußeren benachbart ist, und
    die zweite innere Schicht innen positioniert ist und der zweiten mittleren Schicht benachbart ist.
EP14827685.0A 2013-12-31 2014-12-24 Sportsball mit gekerbter überzug Active EP3089795B1 (de)

Priority Applications (1)

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EP20165813.5A EP3708228B1 (de) 2013-12-31 2014-12-24 Sportball mit gekerbter hülle

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US14/145,215 US9370693B2 (en) 2010-12-03 2013-12-31 Sport ball with indented casing
PCT/US2014/072334 WO2015103071A1 (en) 2013-12-31 2014-12-24 Sport ball with indented casing

Related Child Applications (2)

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EP20165813.5A Division EP3708228B1 (de) 2013-12-31 2014-12-24 Sportball mit gekerbter hülle
EP20165813.5A Division-Into EP3708228B1 (de) 2013-12-31 2014-12-24 Sportball mit gekerbter hülle

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EP3089795B1 true EP3089795B1 (de) 2020-06-17

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WO2019067773A1 (en) * 2017-09-27 2019-04-04 Dhirmalani Anand A BALLOON THAT CAN BE DRAWN

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8192311B2 (en) 2008-06-27 2012-06-05 Nike, Inc. Sport ball with a textile restriction structure
US8210973B2 (en) 2008-06-27 2012-07-03 Nike, Inc. Sport ball bladder
US8974330B2 (en) * 2009-03-20 2015-03-10 Nike, Inc. Sport ball casing and methods of manufacturing the casing
US8608599B2 (en) 2009-03-20 2013-12-17 Nike, Inc. Sport ball casing and methods of manufacturing the casing
US8617011B2 (en) 2010-12-03 2013-12-31 Nike, Inc. Sport ball with indented casing
EP2830724B1 (de) * 2012-03-30 2017-12-06 NIKE Innovate C.V. Sportballhülle und verfahren zur herstellung der hülle

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EP3708228B1 (de) 2022-03-09
WO2015103071A1 (en) 2015-07-09
EP3089795A1 (de) 2016-11-09

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