Method and apparatus for retaining a tool in a tool holder
Tool holder has a first section adapted to be connected to a machining center and a tool holding section comprising a bore with a surface defining an inner diameter of the bore. Dispersed around the surface of the bore and at least partially embedded in the surface of the bore is a joining compound having a Young's modulus greater than a Young's modulus of the surface of the bore.
1. A tool holder for holding a tool having a shank with an outer diameter, the tool holder comprising:
a first section adapted to be connected to a machining center and a tool holding section comprising a bore having a surface defining an inner diameter of the bore and having dispersed around the surface of the bore and at least partially embedded in the surface of the bore a joining compound having a Young's modulus greater than a Young's modulus of the surface of the bore; and
an applicator fixed temporarily in the bore of the tool holder with the surface of the bore in a state of stress from heating the tool holder to expand the bore and allowing the bore to cool onto the applicator which causes a forceful application of the joining compound into the surface of the bore.
2. The tool holder of claim 1 , wherein the joining compound is partially embedded into the surface of the bore by plastic deformation of the surface of the bore.
3. The tool holder of claim 2 , wherein the joining compound comprising a particle size greater than or equal to a difference between the inner diameter of the bore and the outer diameter of the shank of the tool.
4. The tool holder of claim 3 , wherein the joining compound comprises a particle structure.
5. The tool holder of claim 3 , wherein the joining compound comprises a hardness greater than a hardness of the surface of the bore of the tool holding section of the tool holder.
6. The tool holder of claim 5 , wherein the joining compound are selected from a group comprising diamond, aluminum oxide, silicon carbide, boron carbide, synthetic sapphire, garnet, cerium oxide, silica, and osmium.
7. The tool holder of claim 2 , and further comprising an applicator for embedding the joining compound into the surface of the bore of the tool holding section of the tool holder with a Rockwell hardness greater than a Rockwell hardness of the surface of the bore of the tool holding section of the tool holder.
8. A tool holder for holding a tool having a shank with an outer diameter, the tool holder comprising:
a first section adapted to be connected to a machining center; and
a tool holding section comprising a bore having undergone a temporary change in an inner diameter; and
a joining compound having been applied to a surface of the bore by an applicator while the inner diameter of the bore was temporarily changed and embedded in the bore by pressure between the surface of the bore and the applicator when the bore returned to its initial diameter.
9. The tool holder of claim 8 , wherein the tool holder has been heated to expand the inner diameter of the bore and allowed to return to its initial diameter.
10. The tool holder of claim 9 , wherein the joining compound comprises a particle size greater than or equal to a difference between the inner diameter of the bore minus an outer diameter of a shank of the tool.
11. The tool holder of claim 10 , wherein the joining compound comprises a particle structure.
12. The tool holder of claim 11 , wherein the joining compound comprises a hardness greater than a hardness of the surface of the bore.
13. The tool holder of claim 12 , wherein the joining compound comprises diamond.
14. The tool holder of claim 12 , wherein the bore of the tool holder was heated to a temperature that causes sufficient expansion of the inner diameter of the bore to insert the applicator before return to its initial diameter.
15. The tool holder of claim 8 , wherein the joining compound is at least partially embedded in the surface of the bore.
16. The tool holder of claim 8 , wherein the joining compound has a Young's modulus greater than a Young's modulus of a surface of the bore, wherein the joining compound comprising a particle size greater than or equal to a difference between the inner diameter of the bore and the outer diameter of the shank of the tool holder, and, wherein the joining compound comprises a hardness greater than a hardness of the surface of the bore of the tool holding section of the tool holder.
17. The tool holder of claim 8 , wherein the joining compound are selected from a group comprising diamond, aluminum oxide, silicon carbide, boron carbide, synthetic sapphire, garnet, cerium oxide, silica, and osmium.