US3556524A - Method of manufacturing rackets - Google Patents

Method of manufacturing rackets Download PDF

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Publication number
US3556524A
US3556524A US557023A US3556524DA US3556524A US 3556524 A US3556524 A US 3556524A US 557023 A US557023 A US 557023A US 3556524D A US3556524D A US 3556524DA US 3556524 A US3556524 A US 3556524A
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tube
holes
frame
edges
cover
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US557023A
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William C Carlton
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Carlton Sports Co Ltd
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Carlton Sports Co Ltd
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B49/12Frames made of metal
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B49/00Stringed rackets, e.g. for tennis
    • A63B49/02Frames
    • A63B49/022String guides on frames, e.g. grommets
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B60/00Details or accessories of golf clubs, bats, rackets or the like
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B60/00Details or accessories of golf clubs, bats, rackets or the like
    • A63B60/50Details or accessories of golf clubs, bats, rackets or the like with through-holes

Definitions

  • a solid metal extrusion is used instead of a hollow tube, holes are drilled in the extrusion at suitable intervals for the strings, eyelets are fitted in said holes to cover the sharp edges of the holes, then the same process is followed to put a nylon coat on the outside of the extrusion and on the eyelets.
  • This invention relates to rackets, for example to Badminton, Tennis and Squash rackets, which incorporate a strung frame, and to methods of manufacturing such rackets.
  • frame means the looped portion of a racket within which the stringing is carried out, as distinct from the shaft of the'racket which connects the frame to a handle.
  • Rackets with metal frames are known but'it has been found that such rackets suffer from the disadvantage that when the metal frame is apertured and stringing is applied to the frame through the apertures, the sharp edges of the metal around the apertures frequently sever the strings, either during the actual stringing process or during subsequent use of the racket.
  • a racket having a suitable metal frame for stringing, characterized in a coating on said frame of a plastics material which has been formed by the application of powdered plastics material to the heated surface of the frame prior to the application of stringing to the frame.
  • a method of manufacturing a racket having a metal frame for stringing characterized in applying to the heated surface of said frame powdered plastics material so that said material melts and forms a plastics coating on said frame, prior to the applications of stringing to the frame.
  • FIG. I is an elevation of a badminton racket to which the invention is to be applied;
  • FIG. 2 is an elevation on an enlarged scale of a part of the frame portion of the racket to which the invention is to be applied;
  • FIG. 3 shows, on the same scale as FIG. 2, a longitudinal section through the part of the racket frame illustrated in FIG. 2 but after the invention has been applied;
  • FIG. 4 shows a section on line IV-lV of FIG. 2 but after the invention has been applied
  • FIG. 5 is an elevation of a racket having a frame of difi'erent cross section to which the invention is to be applied.
  • FIG. 6 shows, on an enlarged scale a section on line VI-VI of FIG. 5 but after the invention has been applied.
  • the looped portion or frame I of the racket is made, in this instance of tubular steel, the shaft 2 is also made of steel, and joined to the frame I by welding or integral with it.
  • the handle 3 is suitably connected to the shaft 2.
  • the tubular section I has on the outside a hollow or groove 6 in which the strings may nest.
  • the tube is provided with a number of holes 4 on opposite walls, the edges of these holes being provided with flanges 5, the free edges of which are towards the inside of the tube.
  • the holes 4 and flanges 5 are so positioned that the strings may pass straight through them from the inside to the outside of the frame.
  • the metal frame is preferably lightly etched and is then heated to, in this instance, a temperature of about 425 C. and is then immediately plunged into a heap of a suitable nylon powder through which air is passing. The frame is then agitated and a nylon coat 7 will cover and adhere to the surface of the frame and particularly the flanges and the edges of the holes.
  • the coating 7 around the holes achieves two results, first it enables a tapered spike to be used to fix the strings in place during the stringing or restringing operation, and secondly it covers the sharp edges of the metal around the holes and provides a surface upon which the strings bed and alleviates the breakage of the strin s.
  • the frame I is, in this instance, made of a solid extrusion, shown in cross section in FIG. 6. Holes 4 are provided for the strings and into these holes are fitted eyelets 5 which cover the sharp edges of the holes.
  • the extrusion is so designed that a recess 6' is provided in which the strings may nest and are to some extent protected from accidental damage.
  • the frame is then given its nylon coat 7' in similar manner to the previously described example. The nylon coats the eyelets as well as the frame and achieves a similar result to that in the previous example.
  • the invention is not limited to the types of racket frames described and other suitable metal frames may be used.
  • a method of manufacturing a badminton, tennis or squash racket frame which comprises starting with a length of tubular steel; forming a hollow or groove on the side of the tube which is to be outside of the frame, said hollow or groove being suitably formed so that the strings of the racket may nest therein; forming a plurality of holes in opposite walls of the tube in such a manner that the edges of each of the holes are provided with flanges whose free edges are inside the tube; heating the tube to an elevated temperature then plunging the tube into a mass of a suitable nylon powder through which air is constantly passing; agitating the tube to cause a nylon coat to cover and adhere to all the outer surfaces of the tube and said flanges including the free edges thereof, thereby to cover the sharp edges of the metal around the holes; and removing the tube and preparing it for stringing.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Laminated Bodies (AREA)
  • Mounting, Exchange, And Manufacturing Of Dies (AREA)
  • Shaping Metal By Deep-Drawing, Or The Like (AREA)

Abstract

A frame for a badminton, squash or tennis racket is made by forming a hollow metal tube with a recess or groove extending longitudinally so that the strings of the racket may nest therein; forming a plurality of holes in opposite walls of the tube, with the edges of each of the holes having flanges whose free edges are inside the tube; heating the tube, then plunging the tube into a mass of a suitable nylon powder through which air is constantly passing; agitating the tube to cause a nylon coat to cover and adhere to all the outer surfaces of the tube and the flanges including the free edges thereof, thereby to cover the sharp edges of the metal around the holes; and removing the tube and preparing it for stringing. In a modification, a solid metal extrusion is used instead of a hollow tube, holes are drilled in the extrusion at suitable intervals for the strings, eyelets are fitted in said holes to cover the sharp edges of the holes, then the same process is followed to put a nylon coat on the outside of the extrusion and on the eyelets.

Description

United States Patent [72] lnventor William C. Carlton Fitches, F inchingt'ield, England [21] App]. No. 557,023 [22] Filed June 13, 1966 [45] Patented Jan. 19, 1971 [73] Assignee Carlton Sports Company Limited London, England [32] Priority Mar. 18, 1966 [33] Great Britain [31] No. 12,055/66 [54] METHOD OF MANUFACTURING RACKETS 1 Claim, 1 Drawing Fig.
[52] US. Cl 273/73, 1 17/132 [51] Int. Cl A63b 49/00 [50] Field otSearch 273/73(4),
[56] References Cited UNlTED STATES PATENTS 1,541,828 6/1925 Lamed 273/738 3,240,744 3/1966 Kusiak 117/132X 3,331,891 7/1967 Baltimore et a1. 117/132X 1,960,477 5/1934 Cowdery 125/23 2,742,289 4/1956 Allward 273/738 3,086,777 4/1963 Lacoste 273/738 Assistant ExaminerTheatrice Brown AttorneyStevens, Davis, Miller & Mosher ABSTRACT: A frame for a badminton, squash or tennis racket is made by forming a hollow metal tube with a recess or groove extending longitudinally so that the strings of the racket may nest therein; forming a plurality of holes in opposite walls of the tube, with the edges of each of the holes having flanges whose free edges are inside the tube; heating the tube, then plunging the tube into a mass of a suitable nylon powder through which air is constantly passing; agitating the tube to cause a nylon coat to cover and adhere to all the outer surfaces of the tube and the flanges including the free edges thereof, thereby to cover the sharp edges of the metal around the holes; and removing the tube and preparing it for stringing. In a modification, a solid metal extrusion is used instead of a hollow tube, holes are drilled in the extrusion at suitable intervals for the strings, eyelets are fitted in said holes to cover the sharp edges of the holes, then the same process is followed to put a nylon coat on the outside of the extrusion and on the eyelets.
METHOD OF MANUFACTURING RACKETS This invention relates to rackets, for example to Badminton, Tennis and Squash rackets, which incorporate a strung frame, and to methods of manufacturing such rackets.
In this specification the term frame" means the looped portion of a racket within which the stringing is carried out, as distinct from the shaft of the'racket which connects the frame to a handle.
Rackets with metal frames are known but'it has been found that such rackets suffer from the disadvantage that when the metal frame is apertured and stringing is applied to the frame through the apertures, the sharp edges of the metal around the apertures frequently sever the strings, either during the actual stringing process or during subsequent use of the racket.
It is an object of this invention to provide in a racket having a suitable metal frame a means whereby the above indicated disadvantage can be alleviated.
According to one feature of the invention there is provided a racket having a suitable metal frame for stringing, characterized in a coating on said frame of a plastics material which has been formed by the application of powdered plastics material to the heated surface of the frame prior to the application of stringing to the frame.
According to another feature of the invention there is provided a method of manufacturing a racket having a metal frame for stringing, characterized in applying to the heated surface of said frame powdered plastics material so that said material melts and forms a plastics coating on said frame, prior to the applications of stringing to the frame.
In order that the invention may be clearly understood and carried into effect it will now be more fully described with reference to the accompanying drawings in which:
FIG. I is an elevation of a badminton racket to which the invention is to be applied;
FIG. 2 is an elevation on an enlarged scale of a part of the frame portion of the racket to which the invention is to be applied;
FIG. 3 shows, on the same scale as FIG. 2, a longitudinal section through the part of the racket frame illustrated in FIG. 2 but after the invention has been applied;
FIG. 4 shows a section on line IV-lV of FIG. 2 but after the invention has been applied;
FIG. 5 is an elevation of a racket having a frame of difi'erent cross section to which the invention is to be applied; and
FIG. 6 shows, on an enlarged scale a section on line VI-VI of FIG. 5 but after the invention has been applied.
Referring now to FIGS. 1, 2, 3, and 4, the looped portion or frame I of the racket is made, in this instance of tubular steel, the shaft 2 is also made of steel, and joined to the frame I by welding or integral with it. The handle 3 is suitably connected to the shaft 2. The tubular section I has on the outside a hollow or groove 6 in which the strings may nest. The tube is provided with a number of holes 4 on opposite walls, the edges of these holes being provided with flanges 5, the free edges of which are towards the inside of the tube. The holes 4 and flanges 5 are so positioned that the strings may pass straight through them from the inside to the outside of the frame.
After the frame I has been completed and, if theshaft 2 is being attached as in this case by welding, after the shaft 2 has been attached, and any heat treatment operations have been completed, the metal frame is preferably lightly etched and is then heated to, in this instance, a temperature of about 425 C. and is then immediately plunged into a heap of a suitable nylon powder through which air is passing. The frame is then agitated and a nylon coat 7 will cover and adhere to the surface of the frame and particularly the flanges and the edges of the holes. The coating 7 around the holes achieves two results, first it enables a tapered spike to be used to fix the strings in place during the stringing or restringing operation, and secondly it covers the sharp edges of the metal around the holes and provides a surface upon which the strings bed and alleviates the breakage of the strin s.
Referring now to IGS. 5 and the frame I is, in this instance, made of a solid extrusion, shown in cross section in FIG. 6. Holes 4 are provided for the strings and into these holes are fitted eyelets 5 which cover the sharp edges of the holes. The extrusion is so designed that a recess 6' is provided in which the strings may nest and are to some extent protected from accidental damage. The frame is then given its nylon coat 7' in similar manner to the previously described example. The nylon coats the eyelets as well as the frame and achieves a similar result to that in the previous example.
The invention is not limited to the types of racket frames described and other suitable metal frames may be used.
I claim:
I. A method of manufacturing a badminton, tennis or squash racket frame which comprises starting with a length of tubular steel; forming a hollow or groove on the side of the tube which is to be outside of the frame, said hollow or groove being suitably formed so that the strings of the racket may nest therein; forming a plurality of holes in opposite walls of the tube in such a manner that the edges of each of the holes are provided with flanges whose free edges are inside the tube; heating the tube to an elevated temperature then plunging the tube into a mass of a suitable nylon powder through which air is constantly passing; agitating the tube to cause a nylon coat to cover and adhere to all the outer surfaces of the tube and said flanges including the free edges thereof, thereby to cover the sharp edges of the metal around the holes; and removing the tube and preparing it for stringing.

Claims (1)

1. A method of manufacturing a badminton, tennis or squash racket frame which comprises starting with a length of tubular steel; forming a hollow or groove on the side of the tube which is to be outside of the frame, said hollow or groove being suitably formed so that the strings of the racket may nest therein; forming a plurality of holes in opposite walls of the tube in such a manner that the edges of each of the holes are provided with flanges whose free edges are inside the tube; heating the tube to an elevated temperature then plunging the tube into a mass of a suitable nylon powder through which air is constantly passing; agitating the tube to cause a nylon coat to cover and adhere to all the outer surfaces of the tube and said flanges including the free edges thereof, thereby to cover the sharp edges of the metal around the holes; and removing the tube and preparing it for stringing.
US557023A 1966-03-18 1966-06-13 Method of manufacturing rackets Expired - Lifetime US3556524A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB12055/66A GB1113707A (en) 1966-03-18 1966-03-18 Improvements in or relating to racket frames and to methods of manufacturing same

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3986716A (en) * 1974-09-23 1976-10-19 Arundale Manufacturers, Inc. Composite racquet structure
JPS58101667U (en) * 1981-12-30 1983-07-11 ヤマハ株式会社 racket frame
US4891175A (en) * 1987-03-17 1990-01-02 Dunlop Limited Games racket
US5076583A (en) * 1990-08-21 1991-12-31 Sportstech Industries (U.S. Tech) Inc. Racket frame with circular cross section and variable thickness

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3990701A (en) * 1974-11-26 1976-11-09 Sung Baik Kim Tennis racket
US4119313A (en) * 1975-07-12 1978-10-10 Dunlop Limited Games racquets
EP0235777A3 (en) * 1986-03-05 1989-02-22 Maxima S.P.A. Tennis racket frame and process
DE9107934U1 (en) * 1991-06-28 1991-09-19 Tseng, Kuni, Taipeh/T'ai-Pei Composite racket for tennis, badminton, squash or similar.

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1541828A (en) * 1922-01-30 1925-06-16 Dayton Steel Racquet Company Tennis racket and the like
US1960477A (en) * 1929-03-05 1934-05-29 American Fork & Hoe Co Bow for archery
US2742289A (en) * 1953-12-09 1956-04-17 George A Allward Game racket construction
US3086777A (en) * 1960-03-30 1963-04-23 Lacoste Jean Rene Racket for lawn-tennis and similar games
US3240744A (en) * 1961-10-19 1966-03-15 Pennsalt Chemicals Corp Use of fusion aids in fluidized bed coating techniques
US3331891A (en) * 1965-10-23 1967-07-18 Fmc Corp Solid coating composition comprising diallyl phthalate prepolymer, unsaturated polyester and monomer

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1541828A (en) * 1922-01-30 1925-06-16 Dayton Steel Racquet Company Tennis racket and the like
US1960477A (en) * 1929-03-05 1934-05-29 American Fork & Hoe Co Bow for archery
US2742289A (en) * 1953-12-09 1956-04-17 George A Allward Game racket construction
US3086777A (en) * 1960-03-30 1963-04-23 Lacoste Jean Rene Racket for lawn-tennis and similar games
US3240744A (en) * 1961-10-19 1966-03-15 Pennsalt Chemicals Corp Use of fusion aids in fluidized bed coating techniques
US3331891A (en) * 1965-10-23 1967-07-18 Fmc Corp Solid coating composition comprising diallyl phthalate prepolymer, unsaturated polyester and monomer

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3986716A (en) * 1974-09-23 1976-10-19 Arundale Manufacturers, Inc. Composite racquet structure
JPS58101667U (en) * 1981-12-30 1983-07-11 ヤマハ株式会社 racket frame
US4891175A (en) * 1987-03-17 1990-01-02 Dunlop Limited Games racket
US5076583A (en) * 1990-08-21 1991-12-31 Sportstech Industries (U.S. Tech) Inc. Racket frame with circular cross section and variable thickness

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Publication number Publication date
DE1947908U (en) 1966-10-13
GB1113707A (en) 1968-05-15
MY7100207A (en) 1971-12-31
DE1578543A1 (en) 1970-11-12

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