Process for manufacturing a bi-material shaft
A process for manufacturing a putter with a bi-material shaft is disclosed herein. The putter comprises a putter head, the bi-material shaft, a mass member and a grip. The bi-material shaft comprises a body with a tip end and a butt end. The body comprises a metal section extending from the tip end to a connection point, and a composite section extending from the butt end to the connection point. The mass member is positioned within an opening at the butt end of the shaft. Mass from the shaft is transferred to the club head and the mass member in the butt end of the shaft.
1. A method for manufacturing a bi-material shaft for a golf club, the method comprising:
preparing a mix of adhesive and glass beads wherein a ratio of glass beads to adhesive is 0.15 gram of glass beads to 2 grams of adhesive;
bonding a cleaned cut steel shaft to a prepared graphite shaft with the mix of adhesive and glass beads to form an uncured bi-material shaft;
curing the uncured bi-material shaft to form a cured bi-material shaft;
trimming a ferrule of the cured bi-material shaft; and
finishing the cured bi-material shaft.
2. The method according to claim 1 further comprising aligning the uncured bi-material shaft.
3. The method according to claim 1 wherein the cured bi-material shaft comprises a graphite section which is from 60 to 80 percent of the length of the cured bi-material shaft and the graphite section is less than 50 percent of a mass of the cured bi-material shaft.
4. The method according to claim 1 wherein the cured bi-material shaft comprises a graphite section which is from 60 to 80 percent of the length of the cured bi-material shaft and the graphite section is less than 25 percent of a mass of the cured bi-material shaft.
5. The method according to claim 1 wherein curing the uncured bi-material shaft to form a cured bi-material shaft comprises curing in a blower for 10 to 15 minutes at a temperature ranging from 200 to 250 degrees Fahrenheit.