EP2136886A1 - A new kind of football with improved roundness - Google Patents

A new kind of football with improved roundness

Info

Publication number
EP2136886A1
EP2136886A1 EP08734808A EP08734808A EP2136886A1 EP 2136886 A1 EP2136886 A1 EP 2136886A1 EP 08734808 A EP08734808 A EP 08734808A EP 08734808 A EP08734808 A EP 08734808A EP 2136886 A1 EP2136886 A1 EP 2136886A1
Authority
EP
European Patent Office
Prior art keywords
parts
less
sphere
sides
follow
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.)
Withdrawn
Application number
EP08734808A
Other languages
German (de)
French (fr)
Inventor
Pieter Huybers
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.)
HYPERBALL Co
Original Assignee
HYPERBALL Co
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
Application filed by HYPERBALL Co filed Critical HYPERBALL Co
Publication of EP2136886A1 publication Critical patent/EP2136886A1/en
Withdrawn legal-status Critical Current

Links

Classifications

    • 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
    • A63B2243/00Specific ball sports not provided for in A63B2102/00 - A63B2102/38
    • A63B2243/0025Football

Definitions

  • the invention relates to a proposal for improvements to an existing design for a new kind of football as described in the Dutch Patent Nr. 1021303, dated 20 August 2007, which has been filed by Pieter Huybers, De Lier, who also is the applicant of the present proposal.
  • This new proposal implies two commutations that lead to a closer approximation of the pursued spherical form than is found following the existing patent.
  • the dies that are needed to cut the panels, that comprise the outer skin of the football are easier to make.
  • the derivation of the original geometry of the spherical surface is amply described in the aforementioned patent; this will hereby be used as the starting point and be assumed as to be generally of common knowledge.
  • a soccer ball consists generally of an inflatable bladder from a flexible material and of an exterior skin from a leathery material which is constructed of smaller parts according a certain geometric pattern.
  • two different basic patterns for the construction of the outer skin are discerned that respectively consist of 32 or 14 parts.
  • the mathematical figures or polyhedra, from which they are derived originally consist of 62 and 26 parts respectively and are called in mathematics:
  • Rhombicosidodecahedron composed of twelve equilateral pentagons, twenty equilateral triangles and thirty squares.
  • Rhombicuboctahedron composed of eighteen squares and eight equilateral triangles. The dimensions of these figures are determined by the fact, that in both cases all vertices lie on a circumscribed sphere. The centres of the parts are at a certain distance from this sphere, which is different for all kinds of polygons that occur in such a mathematical figure. If one however wishes to create a situation where all centres of the parts have the same distance from the sphere, in the first case all squares are transformed into rectangles where the triangles and the pentagons obtain a form of which all corners are chamfered, and in the second case twelve of the eighteen squares convert to rectangles where the remaining six squares and the triangles become chamfered.
  • Isodistant Rhombicosidodecahedron and Isodistant Rhombicuboctahedron, where the adjective ⁇ isodistant' refers to the fact that all panel centres lie at the same distance from the centre of the whole polyhedron, the system centre, and therefore also from the sphere surface.
  • ⁇ isodistant' refers to the fact that all panel centres lie at the same distance from the centre of the whole polyhedron, the system centre, and therefore also from the sphere surface.
  • the rectangles are subdivided in two isosceles triangles and two isosceles trapezia.
  • Fig. 1. shows the rhombicosidodecahedron 1, consisting of twelve flat equilateral pentagons, twenty flat equilateral triangles and thirty flat squares.
  • Fig. 2. shows the isodistant version 2 of the rhombicosidodecahedron 1, of which all faces have the same distance from the system centre.
  • Fig. 3. shows the three kinds of faces that compose the isodistant rhombicosidodecahedron: thirty rectangles 3, twelve chamfered pentagons 4 and twenty chamfered triangles 5.
  • Fig. 4. shows a subdivision of the rectangles 3 into four parts: two isosceles triangles 6 with apices, that are indicated here as P and Q respectively, and two isosceles trapezia 7. These four parts are added to adjacent faces following a special arrangement, so that two new panel shapes are formed: twelve more or less pentagonal parts 8 and twenty more or less hexagonal parts 9, with which according to the existing patent a soccer ball of the new type can be generated.
  • the parts 8 have five slightly kinked sides 10 where the parts 9 have alternatively three kinked sides 10 and three shorter, straight sides 11.
  • the position of the points P and Q on the rectangular sides 3 is chosen such, that the twisted sides 10 of the parts 8 and 9 are identical.
  • the total sewing length is almost equal to that of the commonly used soccer ball that is composed of twelve equilateral pentagons and twenty equilateral hexagons.
  • Fig. 5. shows an isometric view 12 of the isodistant rhombicosidodecahedron 2, of which the rectangular parts 5 are subdivided.
  • Fig. 6. shows the rhombicuboctahedron 13, consisting of eight equilateral triangles and eighteen squares.
  • Fig. 7. shows the isodistant version 14 of the rhombicuboctahedron 13, in which all faces have the same distance from the system centre and hence from the sphere surface.
  • Fig. 8. shows the different parts that comprise the isodistant rhombicuboctahedron 14: twelve rectangles 15, eight chamfered triangles 16 and six chamfered squares 17.
  • Fig. 9. shows that the rectangles 15 also can be subdivided in four parts: two isosceles triangles 18 with apices, that as in the previous case are indicated as P and Q respectively, and two isosceles trapezia 19. These four parts are added to adjacent faces following a special arrangement, so that two new panel shapes are formed: six more or less square parts 20 and eight more or less hexagonal parts 21.
  • the parts 20 have four slightly kinked sides 22 where the parts 21 have alternatively three kinked sides 22 and three shorter, straight sides 23.
  • the describing circles of the sides 10 and 22 are different and their centres N lie at a considerable distance outside the respective planes 8 and 9 or 20 and 21, of which the centre of the circumscribed circles is indicated as M.
  • An extra advantage is, that in a relatively simple way from the centre N of the newly found circle arcs, that replace the kinked sides 10 and 22, the positions of the drilling holes for the punching pins can be destined. This method is considerably simpler than the drilling method that must be followed in the case of the kinked sides.
  • Fig. 12. shows a scheme of the rectangular parts 3 or 15, where the points P and Q, lying in these planes are lifted to the new positions P' and Q' on the sphere surface.
  • the circle arc trough V, P', Q' and W has the same radius as the sphere. This adaptation will therefore also lead to a better approximation to the sphere form.
  • Fig. 13. shows the embodiment 25 of the ball according the invention based on the isodistant rhombicosidodecahedron 12, in inflated state.
  • Fig. 14. shows the embodiment 26, which is based on the isodistant rhombicuboctadron 24, in inflated state.

Landscapes

  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Toys (AREA)

Abstract

Ball, composed of an inflatable inner ball from a thin rubbery material and of an outer skin from a leathery material, usually a fibre reinforced flexible plastic, composed in balls of the first type of twelve more or less pentagonal parts and twenty more or less hexagonal parts and in balls of the second type of six more or less square parts and eight more or less hexagonal parts, where most of the edges do not have a kinked form as indicated in the Dutch Patent Nr. 1021303 but follow a circular course, so that they follow accurately the curvature of the sphere. An even better approximation of the sphere form is obtained, if the dimensions of the parts are changed in such a way that all corners of these parts are lifted towards the sphere surface and do not lie slightly under this surface as in the aforementioned patent.

Description

A new kind of football with improved roundness
The invention relates to a proposal for improvements to an existing design for a new kind of football as described in the Dutch Patent Nr. 1021303, dated 20 August 2007, which has been filed by Pieter Huybers, De Lier, who also is the applicant of the present proposal. This new proposal implies two commutations that lead to a closer approximation of the pursued spherical form than is found following the existing patent. Moreover, the dies that are needed to cut the panels, that comprise the outer skin of the football, are easier to make. The derivation of the original geometry of the spherical surface is amply described in the aforementioned patent; this will hereby be used as the starting point and be assumed as to be generally of common knowledge. At the present state of art, a soccer ball consists generally of an inflatable bladder from a flexible material and of an exterior skin from a leathery material which is constructed of smaller parts according a certain geometric pattern. In the aforementioned patent two different basic patterns for the construction of the outer skin are discerned that respectively consist of 32 or 14 parts. HHowever, the mathematical figures or polyhedra, from which they are derived, originally consist of 62 and 26 parts respectively and are called in mathematics:
1. Rhombicosidodecahedron, composed of twelve equilateral pentagons, twenty equilateral triangles and thirty squares.
2. Rhombicuboctahedron, composed of eighteen squares and eight equilateral triangles. The dimensions of these figures are determined by the fact, that in both cases all vertices lie on a circumscribed sphere. The centres of the parts are at a certain distance from this sphere, which is different for all kinds of polygons that occur in such a mathematical figure. If one however wishes to create a situation where all centres of the parts have the same distance from the sphere, in the first case all squares are transformed into rectangles where the triangles and the pentagons obtain a form of which all corners are chamfered, and in the second case twelve of the eighteen squares convert to rectangles where the remaining six squares and the triangles become chamfered. The thus found figures can respectively be called: Isodistant Rhombicosidodecahedron and Isodistant Rhombicuboctahedron, where the adjective Λisodistant' refers to the fact that all panel centres lie at the same distance from the centre of the whole polyhedron, the system centre, and therefore also from the sphere surface. In order to reduce the sewing length so that the skin is more easily to construct, in the formerly mentioned patent the rectangles are subdivided in two isosceles triangles and two isosceles trapezia. These are combined with adjacent parts following a special pattern to form new entities so that in the first case twelve parts are generated that roughly have the form of a pentagon and twenty parts with roughly the form of a hexagon, and so that in the second case six parts roughly obtain the form of a square and eight parts roughly that of a hexagon. In both cases most of the sides have a form with two slight kinks in length direction. The two bending points of these lines lie at the sphere surface so that these kinked sides more or less follow the curvature of the sphere. This new patent however indicates a way to let the connection lines between the end points and the bending points of these slightly kinked lines follow an exact circular course. The lines in question thus obtain a more smooth curvature than the respective sides in the old patent and hence follow the curvature of the sphere more closely.
Yet another improvement of the original patent can be accomplished, if all corners of the panels, that basically lie in the plane of the rectangles and thus lie below the sphere surface, are lifted to the level of this sphere. This can easily be realized by a small adaptation of these panels.
The invention shall be explained in more detail with reference to the appended drawings, in which: Fig. 1. shows the rhombicosidodecahedron 1, consisting of twelve flat equilateral pentagons, twenty flat equilateral triangles and thirty flat squares. Fig. 2. shows the isodistant version 2 of the rhombicosidodecahedron 1, of which all faces have the same distance from the system centre.
Fig. 3. shows the three kinds of faces that compose the isodistant rhombicosidodecahedron: thirty rectangles 3, twelve chamfered pentagons 4 and twenty chamfered triangles 5. Fig. 4. shows a subdivision of the rectangles 3 into four parts: two isosceles triangles 6 with apices, that are indicated here as P and Q respectively, and two isosceles trapezia 7. These four parts are added to adjacent faces following a special arrangement, so that two new panel shapes are formed: twelve more or less pentagonal parts 8 and twenty more or less hexagonal parts 9, with which according to the existing patent a soccer ball of the new type can be generated. The parts 8 have five slightly kinked sides 10 where the parts 9 have alternatively three kinked sides 10 and three shorter, straight sides 11. The position of the points P and Q on the rectangular sides 3 is chosen such, that the twisted sides 10 of the parts 8 and 9 are identical. The total sewing length is almost equal to that of the commonly used soccer ball that is composed of twelve equilateral pentagons and twenty equilateral hexagons. Fig. 5. shows an isometric view 12 of the isodistant rhombicosidodecahedron 2, of which the rectangular parts 5 are subdivided.
Fig. 6. shows the rhombicuboctahedron 13, consisting of eight equilateral triangles and eighteen squares. Fig. 7. shows the isodistant version 14 of the rhombicuboctahedron 13, in which all faces have the same distance from the system centre and hence from the sphere surface.
Fig. 8. shows the different parts that comprise the isodistant rhombicuboctahedron 14: twelve rectangles 15, eight chamfered triangles 16 and six chamfered squares 17. Fig. 9. shows that the rectangles 15 also can be subdivided in four parts: two isosceles triangles 18 with apices, that as in the previous case are indicated as P and Q respectively, and two isosceles trapezia 19. These four parts are added to adjacent faces following a special arrangement, so that two new panel shapes are formed: six more or less square parts 20 and eight more or less hexagonal parts 21. The parts 20 have four slightly kinked sides 22 where the parts 21 have alternatively three kinked sides 22 and three shorter, straight sides 23. The position of the points P and Q on the rectangular faces 15 is chosen such, that the kinked sides 22 of the parts 20 and 21 are similar. According the existing patent with six parts 20 and eight parts 21, soccer balls can be made of a new configuration, but in this case the face centres lie a bit farther away from the sphere surface than in the previous case, so that its use can be suggested for trainings balls in soccer or as balls for other sports where lesser demands count with respect to form and shape retention. A great advantage is, that the sewing length is only one third that of the first version. Fig. 10. gives an isometric view 24 of the isodistant rhombicuboctahedron 13, but with subdivided rectangles 15. Fig. 11. shows schematically how according the present patent the slightly kinked sides 10 and 22 can be made curved by drawing a circle through the points R, S and T of the kinked side under consideration. These sides will thus follow the curvature of the sphere more precisely than in the old patent.
The describing circles of the sides 10 and 22 are different and their centres N lie at a considerable distance outside the respective planes 8 and 9 or 20 and 21, of which the centre of the circumscribed circles is indicated as M. An extra advantage is, that in a relatively simple way from the centre N of the newly found circle arcs, that replace the kinked sides 10 and 22, the positions of the drilling holes for the punching pins can be destined. This method is considerably simpler than the drilling method that must be followed in the case of the kinked sides.
Fig. 12. shows a scheme of the rectangular parts 3 or 15, where the points P and Q, lying in these planes are lifted to the new positions P' and Q' on the sphere surface. The circle arc trough V, P', Q' and W has the same radius as the sphere. This adaptation will therefore also lead to a better approximation to the sphere form. Fig. 13. shows the embodiment 25 of the ball according the invention based on the isodistant rhombicosidodecahedron 12, in inflated state.
Fig. 14. shows the embodiment 26, which is based on the isodistant rhombicuboctadron 24, in inflated state.

Claims

1. Ball (25) characterized in that it is composed of twelve more or less pentagonal parts (8) and twenty more or less hexagonal parts (9), of which the sides (10) do not have a kinked form as in the Dutch Patent Nr. 1021303, d.d. 20 augustus 2002, but which follow a circular course.
2. Ball (26) characterized in that it is composed of six more or less square parts (20) and eight more or less hexagonal parts (21), of which the sides (22) do not have a kinked form as in the aforementioned Dutch Patent, but which follow a circular course.
3. Ball according claims 1 and 2 characterized in that the points P and Q, lying in the planes of the originally rectangular parts (3; 15) and that in the end result make out the corners of the parts (8) and (9) from claim 1 and of the parts (20) and (21) from claim 2, are lifted towards the sphere surface.
EP08734808A 2007-04-05 2008-03-17 A new kind of football with improved roundness Withdrawn EP2136886A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL1033647A NL1033647C1 (en) 2007-04-05 2007-04-05 Football, comprises pentagon and hexagon shaped panels with curved corners for more ball like shape
PCT/EP2008/002421 WO2008122370A1 (en) 2007-04-05 2008-03-17 A new kind of football with improved roundness

Publications (1)

Publication Number Publication Date
EP2136886A1 true EP2136886A1 (en) 2009-12-30

Family

ID=38255566

Family Applications (1)

Application Number Title Priority Date Filing Date
EP08734808A Withdrawn EP2136886A1 (en) 2007-04-05 2008-03-17 A new kind of football with improved roundness

Country Status (5)

Country Link
US (1) US20100130317A1 (en)
EP (1) EP2136886A1 (en)
BR (1) BRPI0809933A2 (en)
NL (1) NL1033647C1 (en)
WO (1) WO2008122370A1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11759681B2 (en) * 2020-02-21 2023-09-19 Nike, Inc. Sports ball with staggered surface features

Family Cites Families (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD299940S (en) * 1984-02-13 1989-02-21 Fitzgerald Jimmie M Game footbag
USD299845S (en) * 1984-02-13 1989-02-14 Gray Reed J Game footbag
USD306470S (en) * 1987-08-18 1990-03-06 Profitable Entertainment Products, Inc. Game ball with textured surface
US4830373A (en) * 1987-12-16 1989-05-16 Rudolf Dehnert Soccer ball
USD330239S (en) * 1989-07-01 1992-10-13 Gunter Obermann Combined sports and game ball
DE4434751C2 (en) * 1994-09-29 1996-10-17 Montero Jose Ball cover
USD386230S (en) * 1996-05-24 1997-11-11 Flying Clipper Game foot bag
USD422040S (en) * 1996-09-06 2000-03-28 Pastime Sports, Inc. Game footbag
DE19905046A1 (en) * 1999-02-05 2000-08-31 Faiz Shah Sports ball e.g. football of edge-joined panels comprizes first and second groups of panels all shaped to give greater seam join length for superior ball behavior.
EP1350542A1 (en) * 2000-10-10 2003-10-08 Francisco Pacheco Cover for a ball or sphere
NL1021303C1 (en) * 2002-08-20 2004-02-24 Pieter Huybers A new type of football with improved features.
DE202004011143U1 (en) * 2004-07-16 2005-12-08 Puma Aktiengesellschaft Rudolf Dassler Sport ball case
WO2008077354A2 (en) * 2006-02-09 2008-07-03 Francisco Pacheco Curve ball with magnus effect
US7862458B2 (en) * 2006-09-20 2011-01-04 Nike, Inc. Panel configuration for a game ball
US7854671B2 (en) * 2007-04-26 2010-12-21 Haresh Lalvani Sports ball
USD613354S1 (en) * 2008-11-07 2010-04-06 Adidas International Marketing B.V. Ball

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2008122370A1 *

Also Published As

Publication number Publication date
US20100130317A1 (en) 2010-05-27
WO2008122370A1 (en) 2008-10-16
NL1033647C1 (en) 2008-05-20
BRPI0809933A2 (en) 2014-10-07
NL1033647A1 (en) 2007-05-16

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