Method and apparatus for tool holder with increased surface area
A textured surface in an outer surface of a tool holding section of a tool holder for increasing a surface area of the outer surface for dissipating heat from the tool holding section. The textured surface can comprise grooves around the outer surface of the tool holding section with a height and a width. Notches can be provided in sides of the grooves to further increase the surface area of the outer surface for dissipating heat from the tool holding section.
1. A tool holder comprising a first section adapted to be connected to a machining center and a tool holding section for receiving and holding a shank of a tool therein, the tool holding section comprising:
a front face that extends perpendicular to an axis of rotation of the tool holding section;
a retaining bore extending from the front face into the tool holding section for receiving and holding the shank of the tool therein with a working end of the tool extending from the front face; and
an outer surface concentric with a portion of the retaining bore where the shank of the tool is held, the outer surface being a textured surface for increasing a surface area of the outer surface for dissipating heat from the tool holding section, wherein the textured surface comprises of a plurality of grooves cut into the outer surface of the tool holding section with each groove being defined by nominal surfaces with a plurality of notches cut into the nominal surfaces of each groove of the plurality of grooves.
2. The tool holder of claim 1 , wherein the textured surface extends from the front face of the tool holder.
3. The tool holder of claim 1 , wherein the grooves formed within the outer surface comprise a height and a width.
4. The tool holder of claim 3 , wherein the height and the width of the grooves comprise a consistent ratio for determining a rate of dissipation of the heat from the tool holding section.
5. The tool holder of claim 4 , wherein the consistent ratio of the depth and the width of the grooves for determining the rate of dissipation of the heat from the tool holding section is one of 8:4, 7:4.3, 5:2.6, 6:3.5, and 7:4.3.
6. The tool holder of claim 1 , the tool holder further comprising a coating over the textured surface to improve dissipation of the heat from the tool holding section without filling in the textured surface.
7. The tool holder of claim 6 , wherein the coating is a black coating over the textured surface.
8. A tool holder adapted for holding a shank of a tool therein, for rotating about an axis of rotation, and for connecting to a machining center, the tool holder comprising:
a first section adapted to be connected to the machining center;
a tool holding section for receiving and holding the shank of the tool therein,
a front face of the tool holding section that is perpendicular to the axis of rotation of the tool holding section;
a retaining bore extending from the front face into the tool holding section for receiving and holding the shank of the tool therein with a working end of the tool extending out from the front face;
an outer surface concentric with a portion of the retaining bore where the shank of the tool is held, the outer surface being a textured surface for increasing a surface area of the outer surface for dissipating heat from the tool holding section, wherein the textured surface comprises of a plurality of grooves cut into the outer surface of the tool holding section with each groove being defined by nominal surfaces with a plurality of notches cut into the nominal surfaces of each groove of the plurality of grooves.
9. The tool holder of claim 8 , wherein the textured surface extends back from the front face of the tool holder.
10. The tool holder of claim 8 , wherein the grooves formed within the outer surface comprise a height and a width with a ratio for determining a rate of dissipation of the heat from the tool holding section.
11. The tool holder of claim 10 , wherein the ratio of the depth and the width of the grooves for determining the rate of dissipation of the heat from the tool holding section is one of 8:4, 7:4.3, 5:2.6, 6:3.5, and 7:4.3.
12. The tool holder of claim 8 , the tool holder further comprising a coating over the textured surface to improve dissipation of the heat from the tool holding section without filling in the textured surface.
13. The tool holder of claim 12 , wherein the coating is a black coating over the textured surface.