IP Library Granted Patent US 10,195,484
Granted Patent B2
US 10,195,484 · App. 15/912,467 · Granted Feb 5, 2019

Golf ball dimple plan shape

Inventors: Nicholas M. Nardacci (Barrington, RI); Michael R. Madson (Easton, MA)
Assignee: Acushnet Company
A63B37/0007A63B37/002A63B37/0012A63B37/0016A63B37/0019A63B37/0021A63B37/0015A63B37/0074A63B37/08A63B2037/087
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Quick Facts
Patent No.
US 10,195,484
App. No.
15/912,467
Granted
Feb 5, 2019
Kind
B2
Abstract

The present invention is directed to golf balls having improved aerodynamic performance due, at least in part, to the selection of the plan shapes of the dimples thereon. In particular, the present invention is directed to a golf ball that includes at least a portion of its dimples having a plan shape defined by low frequency periodic functions along a closed simple path. In addition, the present invention provides methods for designing dimples having a plan shape defined by a low frequency periodic function along a closed simple path.

Claims (164)

1. A golf ball having a generally spherical surface and comprising a plurality of dimples on the spherical surface, wherein at least a portion of the plurality of dimples have a non-circular plan shape defined by a low frequency periodic function mapped along a circular simple closed path resulting in the following function:

Q ( x )= F path ( l,scl,x )* F periodic ( s,a,p,x )

where F path is a circular function of length l, with scale factor scl, defined along the vertices x; and F periodic is selected from a periodic square wave function defined by the equation:

f

(

x

)

=

s

+

a

π

(

sin

(

π

px

)

+

1

3

sin

(

3

π

px

)

+

1

5

sin

(

5

π

px

)

+

1

7

sin

(

7

π

px

)

)

 and a periodic sawtooth function defined by the equation:

f

(

x

)

=

s

-

a

π

(

sin

(

π

px

)

+

1

2

sin

(

2

π

px

)

+

1

3

sin

(

3

π

px

)

+

1

4

sin

(

4

π

px

)

)

,

with sharpness factor s, amplitude a, and period p defined at the vertices x, and period p is about 15 or less and amplitude a is about 1 or less; and

wherein each one of the dimples having a non-circular plan shape defined by a low frequency periodic function mapped along a circular simple closed path comprises a first dimple profile and a second dimple profile, the first dimple profile having a first edge angle (Φ EDGE1 ) and a second edge angle (Φ EDGE2 ) and the second dimple profile having a third edge angle (Φ EDGE3 ) and a fourth edge angle (Φ EDGE4 ), wherein at least two of Φ EDGE1 , Φ EDGE2 , Φ EDGE3 and Φ EDGE4 have different values.

2. The golf ball of claim 1 , wherein at least two of Φ EDGE1 , Φ EDGE2 , Φ EDGE3 and Φ EDGE4 have values that differ by 0.5° to 3.0°.

3. The golf ball of claim 1 , wherein:

Φ EDGE1 =Φ EDGE2 ,

Φ EDGE3 =Φ EDGE4 , and

Φ EDGE1 ≠Φ EDGE3 .

4. The golf ball of claim 1 , wherein:

Φ EDGE1 ≠Φ EDGE2 ,

Φ EDGE3 =Φ EDGE4 .

5. The golf ball of claim 4 , wherein Φ EDGE1 =Φ EDGE3 .

6. The golf ball of claim 4 , wherein Φ EDGE1 ≠Φ EDGE3 .

7. The golf ball of claim 1 , wherein:

Φ EDGE1 ≠Φ EDGE2 ,

Φ EDGE3 ≠Φ EDGE4 ,

Φ EDGE1 =Φ EDGE3 , and

Φ EDGE2 ≠Φ EDGE4 .

8. The golf ball of claim 1 , wherein:

Φ EDGE1 ≠Φ EDGE2 ,

Φ EDGE3 ≠Φ EDGE4 ,

Φ EDGE1 ≠Φ EDGE3 , and

Φ EDGE2 ≠Φ EDGE4 .

9. The golf ball of claim 1 , wherein, for each one of the dimples having a non-circular plan shape defined by a low frequency periodic function mapped along a circular simple closed path, the average of the edge angles of all of the dimple profiles of that dimple is 11° to 16°.

10. The golf ball of claim 1 , wherein, for each one of the dimples having a non-circular plan shape defined by a low frequency periodic function mapped along a circular simple closed path, the difference between the maximum edge angle and the minimum edge angle of all of the dimple profiles of that dimple is 0.50° to 3.00°.

11. The golf ball of claim 1 , wherein, for each one of the dimples having a non-circular plan shape defined by a low frequency periodic function mapped along a circular simple closed path, the difference between the maximum edge angle and the average of the edge angles of all of the dimple profiles of that dimple is 1.50° or less.

12. The golf ball of claim 1 , wherein at least a portion comprises about 50 percent or more of the dimples on the golf ball.

13. The golf ball of claim 1 , wherein at least a portion comprises about 80 percent or more of the dimples on the golf ball.

14. The golf ball of claim 1 , wherein the low frequency periodic function has a period of about 10 or less.

15. The golf ball of claim 1 , wherein the low frequency periodic function has a period of about 8 or less.

16. The golf ball of claim 1 , wherein the low frequency periodic square wave function has a period of about 5 or less.

17. The golf ball of claim 1 , wherein the circular path has a radius of from about 0.025 inches to about 0.150 inches.

18. The golf ball of claim 1 , wherein the maximum distance at any point on the plan shape from the circular path is from about 0.001 inches to about 0.015 inches.

19. The golf ball of claim 18 , wherein the maximum distance at any point on the plan shape from the circular path is from about 0.002 inches to about 0.008 inches.

Assignments (4)
ASSIGNMENT OF SECURITY INTEREST IN PATENTS (ASSIGNS 051618-0777) Recorded Aug 3, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS RESIGNING ADMINISTRATIVE AGENT
To: JPMORGAN CHASE BANK, N.A., AS SUCCESSOR ADMINISTRATIVE AGENT
Reel/Frame 061069/0731 →
SECURITY INTEREST Recorded Aug 3, 2022
From: ACUSHNET COMPANY
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 061099/0236 →
SECURITY INTEREST Recorded Jan 15, 2020
From: ACUSHNET COMPANY
To: WELLS FARGO BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 051618/0777 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2018
From: NARDACCI, NICHOLAS M.; MADSON, MICHAEL R.
To: ACUSHNET COMPANY
Reel/Frame 045128/0159 →
Continuity (6)
Continuation In Part 14948252 · Nov 21, 2015
Continuation In Part 14941841 · Nov 16, 2015
Continuation In Part 15912467 · Mar 5, 2018
Continuation In Part 14948251 · Nov 21, 2015
Continuation In Part 14941841 · Nov 16, 2015
Related Publication 20180193703A1 · Jul 12, 2018
Cited By (1)
US 12,527,994