A rotating tool for simultaneously deburring two surfaces of a workpiece is disclosed including a rotatable shaft having a first end and a second end with a first deburr surface on the first end facing towards the second end and having a first angle. A second deburr surface is formed between the fir
A rotating tool for simultaneously deburring two surfaces of a workpiece is disclosed including a rotatable shaft having a first end and a second end with a first deburr surface on the first end facing towards the second end and having a first angle. A second deburr surface is formed between the first end and the second end facing towards the first end and having a second angle. The distance between a first mid-point of the first deburr surface and a second mid-point of the second deburr surface is substantially equal to a width of the workpiece.
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What is claimed is: 1. A one-piece, high-speed rotating tool for simultaneously deburring two surfaces of a metal workpiece, the tool comprising: a rotatable shaft having a first end and a second end; a first deburr surface on the first end, facing towards the second end and having a first angle; a
What is claimed is: 1. A one-piece, high-speed rotating tool for simultaneously deburring two surfaces of a metal workpiece, the tool comprising: a rotatable shaft having a first end and a second end; a first deburr surface on the first end, facing towards the second end and having a first angle; and a second deburr surface formed between the first end and the second end, facing towards the first end having a second angle; whereby the distance between a first mid-point of the first deburr surface and a second mid-point of the second deburr surface is substantially equal to a width of the workpiece. 2. The one-piece, high-speed rotating tool of claim 1, wherein the first angle and the second angle are approximately the same angle. 3. The one-piece, high-speed rotating tool of claim 1, wherein the first angle and the second angle are approximately 45 degrees with respect to an axis of rotation of the rotatable shaft. 4. The one-piece, high-speed rotating tool of claim 1, wherein the second end is adapted to interface with a source of rotational energy. 5. The one-piece, high-speed rotating tool of claim 1, wherein the first end includes a mill end tool. 6. The one-piece, high-speed rotating tool of claim 1, wherein the first end includes a drill. 7. The one-piece, high speed rotating tool of claim 1, wherein the rotating tool is made from carbide steel. 8. A method of simultaneously deburring two surfaces of a metal workpiece, the method comprising: providing the metal workpiece having a width; providing a one-piece, high-speed rotating tool for simultaneously deburring two surfaces of the metal workpiece, the one-piece, high-speed rotating tool comprising: a rotatable shaft having a first end and a second end; a first deburr surface formed on the first end, facing towards the second end and having a first angle; and a second deburr surface formed between the first end and the second end, facing towards the first end having a second angle; whereby the distance between a first mid-point of the first deburr surface and a second mid-point of the second deburr surface is substantially equal to the width of the workpiece; rotating the one-piece, high-speed rotating tool; simultaneously contacting a top edge of the metal workpiece with the first deburr surface and contacting a bottom edge of the metal workpiece with the second deburr surface, thereby simultaneously removing burrs from the top edge of the metal workpiece and the bottom edge of the metal workpiece. 9. The method of claim 8, wherein the first angle and the second angle are approximately the same angle. 10. The method of claim 8, wherein the first angle and the second angle are approximately 45 degrees with respect to an axis of rotation of the rotatable shaft. 11. The method of claim 8, wherein the second end is adapted to interface with a source of rotational energy. 12. The method of claim 8, wherein the top edge of the metal workpiece and the bottom edge of the workpiece are outside edges of the workpiece. 13. The method of claim 8, wherein the top edge of the metal workpiece and the bottom edge of the metal workpiece are edges of a bore in the workpiece. 14. A one-piece, high-speed rotating tool for simultaneously deburring two surfaces of a metal workpiece, the one-piece, high-speed rotating tool comprising: a rotatable shaft having a first end and a second end; a first means for deburring on the first end, facing towards the second end and having a first angle; and a second means for deburring formed between the first end and the second end, facing towards the first end having a second angle; whereby the distance between a first mid-point of the first means for deburring and a second mid-point of the second means for deburring is substantially equal to a width of the metal workpiece. 15. The one-piece, high-speed rotating tool of claim 14, wherein the first angle and the second angle are approximately the same angle. 16. The one-piece, high-speed rotating tool of claim 14, wherein the first angle and the second angle are approximately 45 degrees with respect to an axis of rotation of the rotatable shaft. 17. The one-piece, high-speed rotating tool of claim 14, wherein the second end is adapted to interface with a source of rotational energy. 18. The one-piece, high-speed rotating tool of claim 14, wherein the first end includes a mill end tool. 19. The one-piece, high-speed rotating tool of claim 14, wherein the first end includes a drill. 20. The one-piece, high-speed rotating tool of claim 14, wherein the one-piece, high-speed rotating tool is made from carbide steel.
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