Golf club head manufacturing method
Methods of bifurcating the material properties of golf club heads, and wedges in particular, are disclosed herein. The methods of the present invention preserve the bendability and feel of certain parts of the club heads, such as hosel regions, while selectively hardening and increasing the durability of other features, such as scorelines and texturing on the face.
1. A method comprising the steps of:
manufacturing from a first, steel material a wedge-type golf club head comprising a top portion, a sole portion, a rear portion, a face, and a hosel;
masking a portion of the hosel with a layer of clay material that is at least 0.020 inch thick;
processing the face;
hardening the head;
removing the layer of clay material from the hosel;
applying a groove to a transition region proximate the hosel; and
finishing the head,
wherein the step of removing the second material from the hosel occurs after the step of hardening the head,
wherein the step of processing the face is selected from the group of steps consisting of polishing, texturing, and adding scorelines, and
wherein the step of hardening the head comprises at least one process selected from the group consisting of carburization, nitriding, carbonitriding, nitrocarburization, quenching, flame hardening, and tempering.
2. The method of claim 1 , wherein the first material has a first thermal conductivity value, wherein the second material has a second thermal conductivity value, and wherein the second thermal conductivity value is lower than the first thermal conductivity value.
3. The method of claim 1 , wherein the step of processing the face comprises the step of adding scorelines, and wherein the step of adding scorelines comprises a process selected from the group of processes consisting of stamping, machining, and lasering.
4. The method of claim 3 , wherein the step of processing the face further comprises the step of adding a secondary texture to the face proximate the scorelines.
5. The method of claim 4 , wherein the secondary texture comprises a plurality of micro-features, and wherein each of the micro-features is disposed between a pair of adjacent scorelines.
6. The method of claim 5 , wherein each of the micro-features extends at an angle with respect to the pair of adjacent scorelines.