FIELD OF THE INVENTION
The present invention relates to a novel solid golf ball.
BACKGROUND OF THE INVENTION
Solid golf balls are golf balls other than wound golf balls which contain a center wound with elastic rubber thread, including one-piece solid golf balls which are produced by integrally molding, and two-piece solid golf balls which are composed of a solid core and a cover covering the solid core. The solid core of the two-piece solid golf balls may be composed of two or more layers, which are often called multi-piece solid golf ball. Any solid golf balls integrally or partially have resilient portions which are prepared by vulcanizing and molding a rubber composition.
In order to improve impact resilience of the resilient portion, many investigations have been made on ingredients to be formulated into a rubber composition, vulcanizing conditions and the like.
Japanese Kokai (unexamined) Publications 275356/1988 and 89750/1987 suggest to employ a polybutadiene which has a higher Mooney viscosity than a polybutadiene conventionally used for golf balls. Since the suggested polybutadiene contains high molecular weight fractions in a large quantity, the impact resilience and durability of the solid golf balls are improved.
Although it is considered to employ a untra-high molecular weight polybutadiene which has very high molecular weight far from the convention polybutadiene, it has some disadvantages in processability. Thus, the ultra-high molecular weight polybutadiene is very difficult to mix with other ingredient.
SUMMARY OF THE INVENTION
The present invention provides a solid golf ball containing the ultra-high molecular weight polybutadiene which is formulated therein in a solution form. The golf ball has very improved impact resilience and durability. Thus, the present invention provides a solid golf ball having at least a resilient portion therein formed from a rubber composition which comprises a base rubber, a crosslinking agent and a co-crosslinking agent, wherein said base rubber comprises a solid polybutadiene prepared by mixing the following components in solution form
(a) 5 to 50% by weight of a ultra-high molecular weight polybutadiene rubber which has a cis-1,4-bond of at least 80% and a number average molecular weight of 40.times.10.sup.4 or more, and
(b) 95 to 50% by weight of a polybutadiene rubber which has a cis-1,4-bond of at least 80% and a number average molecular weight of less than 40.times.10.sup.4.
DETAILED DESCRIPTION OF THE INVENTION
The untra-high molecular weight polybutadiene rubber of the present invention has a cis-1,4-bond of 80% or more, preferably 95% or more, and has a number average molecular weight of 40.times.10.sup.4 or more, preferably 40.times.10.sup.4 to 70.times.10.sup.4. Molecular weights of less than 40.times.10.sup.4 do not impart high impact resilience and durability. If a molecular weight is more than 70.times.10.sup.4, the mixing dispersibility of the rubber composition becomes gradually poor.
The polybutadiene rubber to be mixed with the ultra-high molecular weight polybutadiene has a cis-1,4-bond of at least 80 or more and a number average molecular weight of less than 40.times.10.sup.4, preferably 10.times.10.sup.4 to 25.times.10.sup.4. The polybutadiene is called herein "ordinary polybutadiene rubber". The ordinary polybutadiene rubber preferably has a Mooney viscosity (ML.sub.1+4 100.degree. C.) of 40 to 70, preferably 40 to 60. The ordinary polybutadiene rubber has been used for the solid golf balls in the field.
The both polybutadienes are mixed in solution form. Mixing is generally carried out by dissolving each polybutadiene rubber in a solvent and then mixing them. Examples of the solvents are those dissolving respective polybutadiene, such as (toluene, xylene and the like). The both polybutadienes may be prepared by solution polymerization. The solution polymerized polybutadienes may be mixed intact without dissolving in the solvent. The ultra-high molecular weight polybutadiene rubber is present in the obtained mixed solid polybutadiene in an amount of 5 to 50% by weight, preferably 10 to 30. Amounts of less than 5% by weight do not impart the technical effects of the present invention and those of more than 50% by weight deteriorate processability in mixing and provide scattering of final products.
The base rubber of the present invention may contain another rubber component in addition to the polybutadiene rubber. Examples of the rubber components are EPDM, styrene-butadiene rubber, polyisoprene rubber, natural rubber and the like. The other rubber component may be present in the base rubber in an amount of not more than 40% by weight.
The crosslinking agent of the present invention is generally an organic peroxide, such as dicumyl peroxide, 1,1-bis(t-butylperoxy)-3,3,5-trimethylcyclohexane, 2,5-dimethyl-2,5-di(t-butylperoxy)hexane, 2,5-dimethyl-2,5-di(t-butylperoxy)hexane-3, di-t-butyl peroxide and the like. The crosslinking agent may preferably be present in the rubber composition in an amount of 0.5 to 3.0 parts by weight, preferably 1.0 to 2.5 parts by weight, based on 100 parts by weight of the base rubber.
The co-crosslinking agent of the present invention is an unsaturated carboxylic acid and/or a metal salt thereof. Examples of the unsaturated carboxylic acids are methacrylic acid, acrylic acid and the like. The metal to be form the metal salt of the unsaturated carboxylic acids includes divalent metal, such as zinc, calcium and the like. An amount of the co-crosslinking agent is within the range of 15 to 60 parts by weight, preferably 25 to 40, based on 100 parts by weight of the base rubber.
Since the golf balls are standardized in size and weight according to JIS S-7005-1955, a filler is generally added to the rubber composition to meet the weight standard. Examples of the fillers are barium sulfate, zinc oxide, calcium carbonate, silicate hydrate and the like. The rubber composition may further contain an antioxidant, a chain transfer agent, a stabilizer and the like.
The rubber composition is generally prepared by mixing the above mentioned components, i.e. the base rubber, the crosslinking agent, a co-crosslinking agent and the like. Mixing may be carried out using a roll, a kneader, a Banbury mixer and the like. Other mixing conditions are known to the art.
The rubber composition is generally vulcanized in a mold at 140 to 170.degree. C. for 20 to 40 minutes. In the one-piece solid golf ball, the rubber composition is vulcanized to form the golf ball. In the two-piece solid golf ball, the rubber composition is vulcanized to form a spherical solid core which is then covered with a cover resin (e.g. ionomer resin).
In the base rubber of the present invention, the untra-high molecular weight polybutadiene rubber is uniformly mixed with the ordinary polybutadiene rubber even in molecular order. Accordingly, the rubber composition prepared from the base rubber has good processability because of the properties of the ordinary polybutadiene rubber. The obtained solid golf balls have superior impact resilience and durability because of the properties of the ultra-high molecular weight polybutadiene rubber.
EXAMPLES
The present invention is illustrated by the following examples which, however, are not to be construed as limiting the present invention to their details.
EXAMPLES 1 TO 6 AND COMPARATIVE EXAMPLES 1 to 3
Table 1 shows the characteristics and manufactures of polybutadiene rubbers which were employed in the Examples.
The ingredients shown in Table 2 were mixed using a roll and molded at 145.degree. C. for 40 minutes under pressure to obtain a solid core having a diameter of about 38.5 mm. In case where two polybutadiene rubbers were employed, mixing was conducted as the foot note (2).
The obtained solid core was covered with a cover resin composition which contained 100 parts by weight of an ionomer resin (Himilan 1707) and 2 parts by weight of titanium oxide to obtain a large size two piece solid golf ball. The obtained golf ball was subjected to an evaluation of compression, impact resilience and durability. The results are shown in Table 2.
EXAMPLES 7 TO 12 AND COMPARATIVE EXAMPLES 4 TO 6
The ingredients shown in Table 3 were mixed using a roll and molded at 170.degree. C. for 25 minutes under pressure to obtain a large size one-piece solid golf ball. In case where two polybutadiene rubbers were employed, mixing was conducted as the foot note (2).
The obtained golf ball was subjected to an evaluation of compression, impact resilience and durability. The results are shown in Table 3.