Technical Field
A golf putting aid comprising a pair of golf balls connected to form a unitary apparatus in which surfaces of each ball can be struck by the face of a putter at precisely the same time so that each ball moves in the same direction at the same speed.
Background of Invention
The score of a person playing golf is the total of shots required to move the ball from the tee along the fairway, shots required to chip the ball onto the green and shots required to putt the ball into the cup. For an average golfer, shots required to putt the ball into the cup, after the green has been reached, accounts for more than one-half of the total strokes on each hole.
The primary emphasis of golf ball manufacturers is to provide a ball which travels the maximum distance along a predictable path when it is struck with a golf club. Golf balls are disclosed in U.S. Pat. No. 4,783,078; U.S. Pat. No. 4,921,255 and U.S. Pat. No. 5,020,803, the disclosures of which are incorporated herein by reference. The golf balls disclosed in these patents are generally referred to as a wound or three-piece golf ball comprising a cover molded about a core that has been built up from a center around which elastic thread has been wound.
One-piece golf balls are sometimes formed of a homogeneous mass of thermoset or thermoplastic material. Two-piece golf balls are generally formed from a solid homogeneous core around which a cover is molded.
The preference of individual golfers for one-piece, two-piece or wound golf balls varies from one golfer to another. However, all golfers strive to minimize the number of strokes required to put the ball in the hole.
Blanchard U.S. Pat. No. 3,357,705 discloses a golf practice projectile for use in practicing tee and fairway shots. The device is intended for use by golfers to practice and improve their abilities at the game of golf. However, such devices do not generally improve the golfer's putting skills.
A long felt need exists for a device to aid the golfer in perfecting putting skills. Golf club manufacturers provide putters having club heads of various designs and shafts of varying lengths. Lines are formed on some putters to aid the golfer in aligning the face of the putter, the ball and the hole in an effort to improve putting efficiency.
Summary of Invention
The golf putting aid disclosed herein is formed by joining two golf balls to provide a unitary device which travels in a straight line when both balls are struck simultaneously by a golf club. If the club head contacts one ball before it contacts the other ball, the device will tend to spin about an axis extending vertically. However, if both balls are struck at precisely the same time, both balls will rotate in the same direction about a horizontal axis at the same speed so that the unitary apparatus moves in a straight line.
In a preferred embodiment of the invention, opposite ends of a rod are secured in passages formed in two golf balls for supporting the golf balls such that adjacent surfaces are positioned in a juxtaposed relationship. This allows the balls to be struck simultaneously with the face of a putter.
Description of Drawings
Drawings of a preferred embodiment of the invention are annexed hereto so that the invention may be better and more fully understood, in which:
FIG. 1 is a top plan view of the golf putting aid diagrammatically illustrating the relationship between the golf putting aid and the head of a putter when the device is in use;
FIG. 2 is a side elevational view thereof; and
FIG. 3 is an exploded elevational view, parts being broken away to more clearly illustrate details of construction.
Numeral references are employed to designate like parts throughout the various figures of the drawing.
Description of a Preferred Embodiment
Referring to FIG. 1 of the drawing, the numeral 10 generally designates a golf putting aid comprising first and second golf balls 12 and 14 joined by a connector 15.
Referring to FIG. 3 of the drawing, each golf ball 12 and 14 is of substantially identical construction. Wound, or three-piece golf balls are shown in the illustrated embodiment. However, golf balls 12 and 14 may be one-piece balls made of a homogeneous mass of material or two-piece balls made from a solid, homogeneous core around which a cover is molded.
In the illustrated embodiment, each ball 12 and 14 has a center 30. Center 30 in the illustrated embodiment is formed by a thin walled envelope 32 filled with liquid 34. Liquid 34 is typically corn syrup, adjusted for specific gravity by the addition of an inert filler so that the size of center 30 is in a range from about 1" to 11/8". Center 30 may be formed of a solid homogeneous mass of resilient material such as polybutadiene or natural rubber.
Elastic thread 36 is wound around center 30 and enclosed in a hard cover 38 having a dimpled outer surface 40. The hard cover 38 is typically formed of balata, gutta percha, Surlyn.RTM., polyurethane or a combination of these materials. Balata covered three-piece golf balls generally have a higher spin rate than either Surlyn.RTM. covered three-piece balls or Surlyn.RTM. covered two-piece balls. One-piece balls, two-piece balls and wound balls formed of various combinations of materials generally have varying spin rates ranging from about 2200 rpm to about 3700 rpm.
As best illustrated in FIG. 3 of the drawing, passages 16 and 18 are formed in golf balls 12 and 14, respectively. In the illustrated embodiment, passages 16 and 18 are drilled through cover 38 and into the resilient elastic wound portion 36 of the ball. If balls 12 and 14 have liquid filled centers 30, it is important that passages 16 and 18 not pierce the envelope 32 of center 30.
In the illustrated embodiment, connector 15 is a rod having threads formed on the outer surface thereof. A first end 15a of rod 15 is screwed into passage 16 formed in ball 12 and a second end 15b of connector 30 is screwed into passage 18 formed in ball 14.
While a threaded metal rod 15 is illustrated in the preferred embodiment, it should be readily apparent that connector 15 may be formed of other structures and that passages 16 and 18 may be formed by other processes. For example, passages 16 and 18 may be formed by melting or dissolving a portion of balls 12 and 14 and opposite ends 15a and 15b of connector 15 may be bonded or otherwise secured in passages 16 and 18. Further, if balls 12 and 14 are one-piece, two-piece or solid center wound balls, passages 16 and 18 may extend all the way through each ball 12 and 14 and connector 15 may have a length that is substantially equal to two times the diameter of a single golf ball. However, in the illustrated embodiment connector 15 has a length that is less than the diameter of a single golf ball.
Referring to FIG. 1 of the drawing, a generally horizontally disposed central axis 35 extends through the center of golf balls 12 and 14 and is aligned with the central axis of connector rod 15.
A conventional putter, diagrammatically illustrated in FIGS. 1 and 2 of the drawing, has a face 20 on a club head 25. If the face 20 on club head 25 of the putter engages tangent points 12a and 14a on golf balls 12 and 14 at precisely the same time and at the same elevation, each golf ball 12 and 14 will move in the same direction at the same speed along spaced parallel lines of travel 42 and 44 and the unitary golf putting aid 10 will travel in a direction indicated by arrow 45, which is in alignment with a line of sight L.
However, if face 20 of putter head 25 engages golf ball 12 prior to the time that it engages golf ball 14, the initial movement of golf ball 12 will be along an arcuate path around the center 14c of golf ball 14 and the line of travel 45 of golf putting aid 10 will not be in alignment with the line of sight L along which the golfer intended for the golf putting aid to move.
The face 20 of a typical putter has a length in a range between about 21/2" and about 41/2", with a typical length being about 31/4". Surfaces 40 on golf balls 12 and 14 may be spaced apart; however, tangent points 12a and 14a are never spaced apart a distance greater than the length of the face 20 on heads 25 of the putter.
If the club head 25 has an alignment mark 22 passing through the "sweet spot" or center of gravity of club head 25, marker 22 preferably passes through the tangent points between golf balls 12 and 14 and is in alignment with the line of sight L so that the golfer "sees" the same alignment that he will use when striking a conventional golf ball. Thus the golfer positions golf putting aid 10 on the green and positions club head 25 such that marker 22 and line of sight L point toward the hole. The golfer then swings the club head 25 and attempts to contact balls 12 and 14 simultaneously to cause golf putting aid 10 to move such that the line of travel 42 and 44 of each ball is parallel to the line of sight L.