EP0523913B1 - Striking implements - Google Patents

Striking implements Download PDF

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Publication number
EP0523913B1
EP0523913B1 EP92306298A EP92306298A EP0523913B1 EP 0523913 B1 EP0523913 B1 EP 0523913B1 EP 92306298 A EP92306298 A EP 92306298A EP 92306298 A EP92306298 A EP 92306298A EP 0523913 B1 EP0523913 B1 EP 0523913B1
Authority
EP
European Patent Office
Prior art keywords
striking
vibration
damping material
striking implement
formations
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.)
Expired - Lifetime
Application number
EP92306298A
Other languages
German (de)
French (fr)
Other versions
EP0523913A1 (en
Inventor
Robert Christopher Haines
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.)
Dunlop Ltd
Original Assignee
Dunlop Ltd
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Filing date
Publication date
Application filed by Dunlop Ltd filed Critical Dunlop Ltd
Publication of EP0523913A1 publication Critical patent/EP0523913A1/en
Application granted granted Critical
Publication of EP0523913B1 publication Critical patent/EP0523913B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • A—HUMAN NECESSITIES
    • A63—SPORTS; GAMES; AMUSEMENTS
    • A63B—APPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B60/00—Details or accessories of golf clubs, bats, rackets or the like
    • A63B60/54—Details or accessories of golf clubs, bats, rackets or the like with means for damping vibrations
    • A—HUMAN NECESSITIES
    • A63—SPORTS; GAMES; AMUSEMENTS
    • A63B—APPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B60/00—Details or accessories of golf clubs, bats, rackets or the like
    • A63B60/06—Handles
    • A63B60/08—Handles characterised by the material
    • A—HUMAN NECESSITIES
    • A63—SPORTS; GAMES; AMUSEMENTS
    • A63B—APPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2102/00—Application of clubs, bats, rackets or the like to the sporting activity ; particular sports involving the use of balls and clubs, bats, rackets, or the like
    • A63B2102/20—Cricket

Definitions

  • This invention relates to a handheld striking implement which includes a vibration-damping element isolating the portion which is held from the portion used for striking.
  • the present invention provides a striking implement such as a tennis racket which has a discontinuity between the part gripped in use and the part used to strike. It incorporates features in which elements extending from each of the separate parts of the implement overlap in a unique manner and are bonded where they overlap by a vibration-damping material such that the parts are strongly joined together and yet are mechanically isolated one from another so that shock waves and vibration passing from the striking part to the gripping part are substantially absorbed.
  • the product is strong but light and is easy to manufacture.
  • the present invention provides a striking implement which comprises a hollow handle portion and a striking portion, in which the striking implement is discontinuous in that it comprises two parts one part including the striking portion and the other part including at least a part of the hollow handle portion, the said two parts having complementary formations which are assembled to overlap axially with a vibration-damping material interposed therebetween characterised in that the vibration-damping material is bonded to said formations and is in substantially mutually perpendicular planes parallel to the longitudinal axis of the handle portion, whereby said formations are inseparably connected together but mechanically isolated one from another by the vibration-damping material.
  • complementary formations assemble so as to constitute a substantially identical cross-section to that of the remainder of the handle portion.
  • Examples of complementary formations are:
  • the axial overlap of the complementary formations means that the confronting faces extend in planes angled to each other and in a preferred embodiment these planes are substantially perpendicular to each other.
  • the complementary formations are substantially identical but merely rotated through 90° in the final assembly it is possible and convenient to mould in one piece hollow handle portions with formations, cut through the formations, rotate one of the handle portions 90° and then assemble the complementary formations. The assembly must be suitably jigged to align the components prior to the vibration-damping material being injected to fill the gap between the said complementary formations.
  • the vibration-damping material may suitably be a thermosetting or a thermoplastics material and especially an injectable material, for example a polyurethane resin.
  • a suitable material may be based upon an elastomeric material compounded to produce the properties of a vibration-damping material.
  • a preferred polyurethane resin comprises an injectable thermosetting elastomeric material particularly in the form of a two-part, curable polyurethane which is mixed in liquid form and can therefore be readily injected and subsequently cures in situ .
  • a material is available from Compounding Ingredients Limited as CILCAST 101 (which is cured by the addition of CILCURE B).
  • CILCAST and CILCURE are Registered Trade Marks. (The hardness and resilience of the vibration-damping materials are measured according to British Standards (B.S.) tests which are internationally available and familiar to the skilled artisan).
  • Such a material has the properties desirable for the vibration-damping material of the present invention being of a hardness greater than 60° SHORE A measured according to BS 2782 Part 3 "Indentation Hardness by Durometer (Shore A)" and resilience below 20% when measured according to BS 903 Part A8 Method B "Method for Rebound Resilience". More preferably the vibration-damping material has a hardness in the range 70 to 95° SHORE A measured according to BS 2782 Part 3 "Indentation Hardness by Durometer (Shore A)", the preferable resilience for the vibration-damping material being in the range 5 to 15% measured according to BS 903 Part A8 Method B "Method for Rebound Resilience".
  • the vibration-damping material is self-bonding to the complementary formations of the two parts of the striking implement i.e. no separate adhesive is required.
  • the aforementioned two-part curable polyurethanes have this desirable property.
  • the handle portion includes only one discontinuity according to the present invention but the handle portion itself may be joined to the striking portion rather than being integral therewith.
  • the present invention is particularly applicable for use in a cricket bat where it is important for the handle to be light, strong and able to absorb at least some of the shock received when the striking portion (i.e. the blade) strikes a cricket ball.
  • the part which includes the handle portion is designed so that the formations are substantially in a plane perpendicular to the face of the striking portion (blade) and thus the formations of the part which includes the blade are in a plane substantially parallel to the face of the blade. This arrangement will improve shock absorbency of the final product.
  • the formation of one part consists of 2 or more fingers which interdigitate with the corresponding 2 or more fingers of the other part it may be preferable to provide a web between the fingers of one said part to reduce bending of the formations when the implement is used for striking and thus to reduce the strain imposed on the bond between the complementary formations.
  • the web should be provided between the formations, the free ends of which will be nearer to the striking portion when the striking implement is in use.
  • Preferred materials for the handle portion are of fibres e.g. of carbon or glass impregnated with a thermosetting or thermoplastics resin. Such compositions can be moulded to give hollow, and thus light, strong handle portions. Particularly for striking implements where there is a high degree of shock in use, e.g. a cricket bat or hockey stick, the fibres may be of material with increased shock absorbency properties e.g. aramid or polyethylene fibres.
  • a part handle portion 1 has formations (fingers) 2 and 3.
  • the part handle portion 1 is hollow and made by wrapping layers of resin impregnated fibre in fabric or 'warp sheet' form around an inflation tube and then moulding under heat and internal pressure, as is well known to those skilled in the art of making hollow articles from polymer composite materials.
  • the inflation tube may be replaced by a plastic material capable of expanding under the action of heat to produce the necessary internal consolidating pressure.
  • Fibre alignment of the wrapping layers is chosen to produce the desirable directional strength in the handle portion, and the fibre type may be chosen to produce desirable properties of enhanced shock absorbency over and above that provided by the vibration-damping material interposed between the complementary formations.
  • a part handle portion 4 is made in the same way and has formations 5 and 6 (which lies behind formation 3 in Figure 3).
  • the complementary formations (fingers) of these two part handle portions are assembled so as to interdigitate and vibration-damping material 7 is injected between the said formations. When the vibration-damping material 7 sets it bonds to the formations.
  • the part handle portions are mechanically isolated but strongly bonded by the vibration-damping material.
  • Such an assembly may be used e.g. as part of a games racket.
  • a cricket bat which incorporates a further embodiment of the present invention consists of a part handle portion 8 with formations 9, 10 assembled with and bonded via a vibration-damping material 11 to complementary formations 12, 13 of part handle portion 14.
  • the handle assembly is hollow and of consolidated resin impregnated fibre composite and is bonded to a wooden blade 15.
  • the main direction in which a cricket ball will strike is shown by the arrow F in Figure 10.
  • the formations 9, 10 of the part handle portion 8 are in a plane perpendicular to the face of the bat and thus there will be improved shock absorbency compared to an arrangement where the formations 9, 10 are in a plane parallel to the face of the bat.
  • the part handle portion 16 has hollow fingers 17 and 18 joined along part of their length by an integral web 19.
  • the part handle portion 20 has hollow fingers 21 and 22 (22 lies behind 21).
  • the complementary formations (fingers) of the two part handle portions shown in Figures 11 and 12 are assembled so as to interdigitate as shown in Figure 13.
  • Vibration-damping material 23 is injected between the said formations including transversely 24 of the longitudinal axis of the striking implement and then set to bond to the formations as shown in Figure 14.
  • the arrow F indicates the direction of the force which will be experienced by the striking implement, whether it be a cricket bat or tennis racket, during use.
  • the web 19 resists the opening of the fingers 17 and 18 which would otherwise occur during use of the striking implement.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Golf Clubs (AREA)
  • Stringed Musical Instruments (AREA)
  • Percussion Or Vibration Massage (AREA)
  • Curing Cements, Concrete, And Artificial Stone (AREA)
  • Lock And Its Accessories (AREA)
  • Disintegrating Or Milling (AREA)
  • Vibration Prevention Devices (AREA)
  • Lining Or Joining Of Plastics Or The Like (AREA)
  • Percussive Tools And Related Accessories (AREA)
  • Laminated Bodies (AREA)

Abstract

A striking implement comprises a handle portion (8) and a striking portion, in which the striking implement is discontinuous in that it comprises two parts (9,10) one part including the striking portion and the other part including the handle portion (8) or a part thereof, the said two parts (9,10) having complementary formations (12,13) which are assembled to overlap axially with a vibration-damping material (11) interposed between and bonded to said formations (12,13), whereby the two parts are inseparably connected together but the vibration-damping material (11) mechanically isolates one from the other. <IMAGE>

Description

  • This invention relates to a handheld striking implement which includes a vibration-damping element isolating the portion which is held from the portion used for striking.
  • Various attempts have been made to manufacture sports implements e.g. tennis rackets or cricket bats which incorporate some form of vibration-damping mechanism to minimise the risk of injury to the player. Problems in making such articles are that intricate multi-component manufacturing steps are often necessary whereas relatively unskilled labour is required to keep costs down. Also, any feature which adds weight to the final product is undesirable.
  • In British Patent Application No. 2149311A (Tarr) a novel racket is described in which the handle is discontinuous and the two parts are adjustably held together by a tensioning means (e.g. a spring, rod and screw assembly) and between the said two parts is a damping means.
  • The present invention provides a striking implement such as a tennis racket which has a discontinuity between the part gripped in use and the part used to strike. It incorporates features in which elements extending from each of the separate parts of the implement overlap in a unique manner and are bonded where they overlap by a vibration-damping material such that the parts are strongly joined together and yet are mechanically isolated one from another so that shock waves and vibration passing from the striking part to the gripping part are substantially absorbed. The product is strong but light and is easy to manufacture.
  • Although the present invention will be described with particular reference to a games racket or a cricket bat it is not to be construed as limited thereto as it is applicable equally to other striking implements such as sports equipment e.g. hockey sticks, golf clubs, baseball bats, hurley sticks, polo sticks, croquet mallets, and also batons, truncheons and shillelaghs.
  • The present invention provides a striking implement which comprises a hollow handle portion and a striking portion, in which the striking implement is discontinuous in that it comprises two parts one part including the striking portion and the other part including at least a part of the hollow handle portion, the said two parts having complementary formations which are assembled to overlap axially with a vibration-damping material interposed therebetween characterised in that the vibration-damping material is bonded to said formations and is in substantially mutually perpendicular planes parallel to the longitudinal axis of the handle portion, whereby said formations are inseparably connected together but mechanically isolated one from another by the vibration-damping material.
  • Preferably the complementary formations assemble so as to constitute a substantially identical cross-section to that of the remainder of the handle portion. Examples of complementary formations are:
    • (i) two, three or more fingers which interdigitate when assembled,
    • (ii) a cone and socket, and
    • (iii) a pin and socket.
  • The axial overlap of the complementary formations means that the confronting faces extend in planes angled to each other and in a preferred embodiment these planes are substantially perpendicular to each other. Where the complementary formations are substantially identical but merely rotated through 90° in the final assembly it is possible and convenient to mould in one piece hollow handle portions with formations, cut through the formations, rotate one of the handle portions 90° and then assemble the complementary formations. The assembly must be suitably jigged to align the components prior to the vibration-damping material being injected to fill the gap between the said complementary formations.
  • The vibration-damping material may suitably be a thermosetting or a thermoplastics material and especially an injectable material, for example a polyurethane resin. A suitable material may be based upon an elastomeric material compounded to produce the properties of a vibration-damping material.
  • A preferred polyurethane resin comprises an injectable thermosetting elastomeric material particularly in the form of a two-part, curable polyurethane which is mixed in liquid form and can therefore be readily injected and subsequently cures in situ. Such a material is available from Compounding Ingredients Limited as CILCAST 101 (which is cured by the addition of CILCURE B). The words CILCAST and CILCURE are Registered Trade Marks. (The hardness and resilience of the vibration-damping materials are measured according to British Standards (B.S.) tests which are internationally available and familiar to the skilled artisan). Such a material has the properties desirable for the vibration-damping material of the present invention being of a hardness greater than 60° SHORE A measured according to BS 2782 Part 3 "Indentation Hardness by Durometer (Shore A)" and resilience below 20% when measured according to BS 903 Part A8 Method B "Method for Rebound Resilience". More preferably the vibration-damping material has a hardness in the range 70 to 95° SHORE A measured according to BS 2782 Part 3 "Indentation Hardness by Durometer (Shore A)", the preferable resilience for the vibration-damping material being in the range 5 to 15% measured according to BS 903 Part A8 Method B "Method for Rebound Resilience".
  • Preferably the vibration-damping material is self-bonding to the complementary formations of the two parts of the striking implement i.e. no separate adhesive is required. The aforementioned two-part curable polyurethanes have this desirable property.
  • Preferably the handle portion includes only one discontinuity according to the present invention but the handle portion itself may be joined to the striking portion rather than being integral therewith.
  • The present invention is particularly applicable for use in a cricket bat where it is important for the handle to be light, strong and able to absorb at least some of the shock received when the striking portion (i.e. the blade) strikes a cricket ball. Preferably the part which includes the handle portion is designed so that the formations are substantially in a plane perpendicular to the face of the striking portion (blade) and thus the formations of the part which includes the blade are in a plane substantially parallel to the face of the blade. This arrangement will improve shock absorbency of the final product.
  • Particularly where the formation of one part consists of 2 or more fingers which interdigitate with the corresponding 2 or more fingers of the other part it may be preferable to provide a web between the fingers of one said part to reduce bending of the formations when the implement is used for striking and thus to reduce the strain imposed on the bond between the complementary formations. To take advantage of this potential improvement the web should be provided between the formations, the free ends of which will be nearer to the striking portion when the striking implement is in use.
  • Preferred materials for the handle portion are of fibres e.g. of carbon or glass impregnated with a thermosetting or thermoplastics resin. Such compositions can be moulded to give hollow, and thus light, strong handle portions. Particularly for striking implements where there is a high degree of shock in use, e.g. a cricket bat or hockey stick, the fibres may be of material with increased shock absorbency properties e.g. aramid or polyethylene fibres.
  • The present invention will be illustrated merely by way of examples in the following description and with reference to the accompanying drawings in which:-
  • Figure 1
    is a side elevation of part of a handle portion with two fingers according to one embodiment of the present invention;
    Figure 2
    is a sectional view along the line A-A of Figure 1;
    Figure 3
    is a side elevation of the part handle portion of Figure 1 assembled with and bonded to its complementary part handle portion;
    Figure 4
    is a sectional view along the line B-B of Figure 3;
    Figure 5
    is a side elevation of part of a handle portion with three fingers according to a second embodiment of the present invention;
    Figure 6
    is a sectional view along the line C-C of Figure 5;
    Figure 7
    is a side elevation of the part handle portion of Figure 5 assembled with and bonded to the complementary handle portion;
    Figure 8
    is a sectional view along the line D-D of Figure 7;
    Figure 9
    is a front elevation of a cricket bat according to a further embodiment of the present invention;
    Figure 10
    is a sectional view along the line E-E of Figure 9.
    Figure 11
    is a side elevation of part of a handle portion with two fingers joined partly by a web according to a further embodiment of the present invention;
    Figure 12
    is a side elevation of part of a striking portion with formations complementary to those of the part handle portion of Figure 11; and
    Figures 13 and 14
    are side elevations of the part handle portion of Figure 11 assembled with, and in Figure 14 bonded to, the part striking portion of Figure 12.
  • Referring to Figures 1, 2, 3 and 4 a part handle portion 1 has formations (fingers) 2 and 3. The part handle portion 1 is hollow and made by wrapping layers of resin impregnated fibre in fabric or 'warp sheet' form around an inflation tube and then moulding under heat and internal pressure, as is well known to those skilled in the art of making hollow articles from polymer composite materials. Alternatively the inflation tube may be replaced by a plastic material capable of expanding under the action of heat to produce the necessary internal consolidating pressure. Fibre alignment of the wrapping layers is chosen to produce the desirable directional strength in the handle portion, and the fibre type may be chosen to produce desirable properties of enhanced shock absorbency over and above that provided by the vibration-damping material interposed between the complementary formations. Such fibres with good shock absorbency are glass fibres, aramid fibres and polyethylene fibres, and such fibres may be used in combination with each other or with carbon fibres to achieve the desirable properties. A part handle portion 4 is made in the same way and has formations 5 and 6 (which lies behind formation 3 in Figure 3). The complementary formations (fingers) of these two part handle portions are assembled so as to interdigitate and vibration-damping material 7 is injected between the said formations. When the vibration-damping material 7 sets it bonds to the formations. Thus the part handle portions are mechanically isolated but strongly bonded by the vibration-damping material. Such an assembly may be used e.g. as part of a games racket.
  • Referring to Figures 5 to 8, the construction is of a very similar principle to that shown in Figures 1 to 4 but uses instead complementary formations of three fingers each.
  • Referring to Figures 9 and 10, a cricket bat which incorporates a further embodiment of the present invention consists of a part handle portion 8 with formations 9, 10 assembled with and bonded via a vibration-damping material 11 to complementary formations 12, 13 of part handle portion 14. The handle assembly is hollow and of consolidated resin impregnated fibre composite and is bonded to a wooden blade 15.
  • The main direction in which a cricket ball will strike is shown by the arrow F in Figure 10. In this arrangement the formations 9, 10 of the part handle portion 8 are in a plane perpendicular to the face of the bat and thus there will be improved shock absorbency compared to an arrangement where the formations 9, 10 are in a plane parallel to the face of the bat.
  • Referring to Figure 11, the part handle portion 16 has hollow fingers 17 and 18 joined along part of their length by an integral web 19. Referring to Figure 12, the part handle portion 20 has hollow fingers 21 and 22 (22 lies behind 21). The complementary formations (fingers) of the two part handle portions shown in Figures 11 and 12 are assembled so as to interdigitate as shown in Figure 13. Vibration-damping material 23 is injected between the said formations including transversely 24 of the longitudinal axis of the striking implement and then set to bond to the formations as shown in Figure 14. The arrow F indicates the direction of the force which will be experienced by the striking implement, whether it be a cricket bat or tennis racket, during use. Thus the web 19 resists the opening of the fingers 17 and 18 which would otherwise occur during use of the striking implement.

Claims (18)

  1. A striking implement comprises a hollow handle portion and a striking portion, in which the striking implement is discontinuous in that it comprises two parts, one part including the striking portion and the other part including the hollow handle portion or a part thereof, the said two parts having complementary formations which are assembled to overlap axially with a vibration-damping material interposed therebetween characterised in that the vibration-damping material (11) is bonded to said formations (9,10 and 13,12), and is in substantially mutually perpendicular planes parallel to the longitudinal axis of the handle portion, whereby said formations (9,10 and 13,12) are inseparably connected together but mechanically isolated one from another by the vibration-damping material (11).
  2. A striking implement according to Claim 1 characterised in that the complementary formations (9,10 and 13,12) each consist of at least two fingers which interdigitate when assembled.
  3. A striking implement according to Claim 1 or 2, characterised in that the vibration-damping material (11) is a thermosetting material.
  4. A striking implement according to any preceding claim, characterised in that the vibration-damping material (11) is an injectable material.
  5. A striking implement according to any preceding claim, characterised in that the vibration-damping material (11) comprises an elastomer.
  6. A striking implement according to any preceding claim, characterised in that the vibration-damping material (11) comprises a polyurethane.
  7. A striking implement according to any preceding claim, characterised in that the vibration-damping material (11) has a hardness greater than 60° SHORE A measured according to B.S. 2782 Part 3 "Indentation Hardness by Durometer (Shore A)" and resilience below 20% when measured according to B.S. 903 Part A8 Method B "Method for Rebound Resilience".
  8. A striking implement according to Claim 7, characterised in that the vibration-damping material (11) has a hardness in the range 70 to 95° SHORE A measured according to B.S. 2782 Part 3 "Indentation Hardness by Durometer (Shore A)".
  9. A striking implement according to Claim 7 or 8, characterised in that the vibration-damping material (11) has a resilience in the range 5 to 15% measured according to B.S. 903 Part A8 Method B "Method for Rebound Resilience".
  10. A striking implement according to Claim 1,2,3,4,5,6,8 and 9, characterised in that the vibration-damping material (11) comprises an injectable, thermosetting polyurethane elastomer and has a hardness of 70 to 95° SHORE A measured according to BS. 2782 Part 3 "Indentation Hardness by Durometer (Shore A)" and a resilience in the range 5 to 15% measured according to B.S. 903 Part A8 Method B "Method for Rebound Resilience".
  11. A striking implement according to any preceding claim characterised in that the striking implement consists of two parts having complementary formations (9,10 and 12,13) connected by means of vibration-damping material (11).
  12. A striking implement according to any preceding claim characterised in that the vibration-damping material (11) is self-bonded to the complementary formations (9,10 and 12,13) without a separate adhesive.
  13. A striking implement according to any preceding claim. characterised in that the complementary formations each consist of at least two fingers (17,18 and 21,22) which interdigitate when assembled and one of the complementary formations of at least two fingers (17,18) has a web (19) connecting the fingers partially along the length thereof.
  14. A striking implement according to any preceding claim characterised in that the vibration-damping material (11) is interposed between and bonded to said formations (9,10 and 12,13) in two substantially mutually perpendicular planes intersecting on the axis of symmetry of said assembled two parts (8,14).
  15. A striking implement according to Claim 14 characterised in that at least one of the mutually perpendicular planes passes through the longitudinal axis of the striking implement.
  16. A method of making a striking element comprises providing a hollow handle portion (8) and a striking portion (14,15), effecting complementary formations (9,10 and 12,13) in the hollow handle portion and the striking portion, assembling axially the complementary formations, providing a vibration-damping material (11) between the complementary formations in substantially mutually perpendicular planes and causing or allowing the vibration-damping material (11) to bond said complementary formations so that the hollow handle portion and the striking portion are mechanically isolated one from the other but are inseparably joined together.
  17. A method according to Claim 16 characterised in that the hollow handle portion and the striking portion are moulded in one piece which is then cut through, the resulting hollow handle portion (8) and the striking portion (14,15) having complementary formations (9,10 and 12,13) are then rotated with respect to each other and the said complementary formations are assembled axially so as to interdigitate with each other.
  18. A striking implement according to any of Claims 1 to 15 characterised in that the vibration-damping material also extends transversely (24) of the longitudinal axis of the striking implement.
EP92306298A 1991-07-18 1992-07-09 Striking implements Expired - Lifetime EP0523913B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB9115559 1991-07-18
GB919115559A GB9115559D0 (en) 1991-07-18 1991-07-18 Striking implements

Publications (2)

Publication Number Publication Date
EP0523913A1 EP0523913A1 (en) 1993-01-20
EP0523913B1 true EP0523913B1 (en) 1996-04-17

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EP92306298A Expired - Lifetime EP0523913B1 (en) 1991-07-18 1992-07-09 Striking implements

Country Status (8)

Country Link
EP (1) EP0523913B1 (en)
JP (1) JPH05184695A (en)
CN (1) CN1050063C (en)
AT (1) ATE136802T1 (en)
AU (1) AU660989B2 (en)
DE (1) DE69209915T2 (en)
GB (2) GB9115559D0 (en)
ZA (1) ZA925356B (en)

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US7097577B2 (en) 2000-09-15 2006-08-29 Jas. D. Easton, Inc. Hockey stick
US7144343B2 (en) 2000-01-07 2006-12-05 Jas. D. Easton, Inc. Hockey stick
US7232386B2 (en) 2003-05-15 2007-06-19 Easton Sports, Inc. Hockey stick
US8216096B2 (en) 2000-09-15 2012-07-10 Easton Sports, Inc. Hockey stick

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US4881268A (en) * 1986-06-17 1989-11-14 Laurel Bank Machines Co., Ltd. Paper money discriminator
GB9205569D0 (en) * 1992-03-13 1992-04-29 Dunlop Ltd Games rackets
US6652398B2 (en) * 2001-08-27 2003-11-25 Innercore Grip Company Vibration dampening grip cover for the handle of an implement
CN2519682Y (en) * 2001-09-25 2002-11-06 厦门侨兴工业有限公司 Section structure for racket
GB2391486B (en) * 2002-08-09 2005-08-24 Timothy William Keeley Sports bat handle
GB2428585B (en) * 2005-07-25 2007-08-01 Grays Of Cambridge Ltd Cricket bat
US7914403B2 (en) 2008-08-06 2011-03-29 Easton Sports, Inc. Hockey stick
US20140243120A1 (en) * 2013-02-26 2014-08-28 Easton Sports, Inc. Multi-piece shaft for a lacrosse stick

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GB452607A (en) * 1935-07-01 1936-08-26 John Bernard Dickson Improvements in or relating to badminton rackets
GB478008A (en) * 1935-11-13 1938-01-11 Edward James Horace Brooks Improvements in handles for cricket bats and the like
FR827983A (en) * 1937-10-15 1938-05-06 Racket perfected for tennis and similar games
US4609198A (en) * 1983-11-08 1986-09-02 Tarr Robert G Racket handle assembly having vibration dampening characteristics
US4983242A (en) * 1988-11-02 1991-01-08 Roland Reed Tennis racquet having a sandwich construction, vibration-dampening frame
GB2230458B (en) * 1989-04-11 1993-04-21 Jung Ching Peng Shock absorbing racket
US5071125A (en) * 1991-05-08 1991-12-10 Walter Shen Racket

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7144343B2 (en) 2000-01-07 2006-12-05 Jas. D. Easton, Inc. Hockey stick
US7422532B2 (en) 2000-01-07 2008-09-09 Easton Sports, Inc. Hockey stick
US7097577B2 (en) 2000-09-15 2006-08-29 Jas. D. Easton, Inc. Hockey stick
US7789778B2 (en) 2000-09-15 2010-09-07 Easton Sports, Inc. Hockey stick
US7850553B2 (en) 2000-09-15 2010-12-14 Easton Sports, Inc. Hockey stick
US8216096B2 (en) 2000-09-15 2012-07-10 Easton Sports, Inc. Hockey stick
US8517868B2 (en) 2000-09-15 2013-08-27 Easton Sports, Inc. Hockey stick
US7232386B2 (en) 2003-05-15 2007-06-19 Easton Sports, Inc. Hockey stick

Also Published As

Publication number Publication date
GB9214615D0 (en) 1992-08-19
EP0523913A1 (en) 1993-01-20
AU660989B2 (en) 1995-07-13
ZA925356B (en) 1994-01-17
DE69209915T2 (en) 1996-09-19
ATE136802T1 (en) 1996-05-15
JPH05184695A (en) 1993-07-27
GB2257636B (en) 1995-08-30
AU1852692A (en) 1993-01-21
CN1050063C (en) 2000-03-08
GB9115559D0 (en) 1991-09-04
DE69209915D1 (en) 1996-05-23
CN1068511A (en) 1993-02-03
GB2257636A (en) 1993-01-20

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