Golf equipment formed from castable formulation with unconventionally low hardness and increased shear resistance
Golf equipment including compositions including castable formulations that have low material hardness and increased shear resistance. The compositions may be used in any layer of a golf ball including cores, intermediate layers, and covers and result in high spin rates.
1. A golf ball comprising:
a core; and
a cover having a hardness of about 40 Shore D to about 55 Shore D, wherein the cover is formed from a castable material comprising:
a prepolymer formed from the reaction product of at least one isocyanate-containing component and at least one isocyanate-reactive component; and
a polyether diol having a molecular weight of about 400 to about 2500 and having the following structure:
wherein n is the chain length from 2 to 30;
wherein the castable material has a hardness of about 8 Shore D to about 16 Shore D, and wherein the golf ball has a half-wedge spin rate of about 7,000 rpm or greater and a COR of about 0.800 or greater at 125 ft/s.
2. The golf ball of claim 1 , wherein the COR of the golf ball is about 0.810 or greater at 125 ft/s.
3. The golf ball of claim 1 , wherein the prepolymer comprises a reaction product of diphenyl methane diisocyanate and polytetramethylene ether glycol.
4. The golf ball of claim 1 , wherein the golf ball has an 8-iron spin rate of about 10,000 rpm or greater.
5. The golf ball of claim 1 , wherein the castable material comprises a ratio of prepolymer to polyether diol of about 1:0.95.
6. A golf ball comprising:
a core;
an inner cover layer disposed about the core; and
an outer cover layer disposed about the inner cover layer, wherein the outer cover layer has a hardness of about 30 Shore D to about 60 Shore D and is formed from a castable material comprising:
a prepolymer formed from the reaction product of at least one isocyanate and polytetramethylene ether glycol, wherein the NCO content of the prepolymer ranges from about 5 percent to about 7 percent; and
a polyether diol having a molecular weight of about 400 to about 2500 and having the following structure:
wherein n is the chain length from 2 to 30;
wherein the castable material has a hardness of about 8 Shore D to about 20 Shore D, and wherein the golf ball has a half-wedge spin rate of about 7,000 rpm or greater and a COR of about 0.800 or greater at 125 ft/s.
7. The golf ball of claim 6 , wherein the composition comprises a ratio of prepolymer to polyether diol of about 1:0.95.
8. The golf ball of claim 6 , wherein the material hardness is about 8 Shore D to about 12 Shore D, and wherein the COR is about 0.810 or greater at 125 ft/s.
9. The golf ball of claim 6 , wherein the prepolymer has an NCO content of about 6 percent to about 6.5 percent.
10. The golf ball of claim 6 , wherein the difference between the flexural moduli of the inner cover layer and outer cover layer is about 5,000 psi or less.
11. A golf ball comprising:
a core;
a cover; and
an intermediate layer disposed between the core and the cover,
wherein the cover has a hardness of about 40 Shore D to about 55 Shore D and is formed from a castable material comprising:
a prepolymer formed from at least one aromatic diisocyanate and at least one polyol, wherein the NCO content of the prepolymer ranges from about 5 percent to about 7 percent; and
a polyether diol having the following structure:
wherein n is the chain length from 2 to 30;
wherein the castable material has a hardness of about 10 Shore D to about 12 Shore D, and wherein the golf ball has a half-wedge spin rate of about 7,000 rpm or greater and a COR of about 0.810 or greater at 125 ft/s.
12. The golf ball of claim 11 , wherein the flexural modulus of the intermediate layer is about 2,000 psi to about 200,000 psi.
13. The golf ball of claim 11 , wherein the driver spin rate is about 5,000 rpm or greater.