The invention relates to self feed bits and more particularly to a self feed bit having a plurality of cutting edges.
Self feed bits for cutting large diameter holes in wood for pipe, conduit and other applications are known. These types of bits include a shank that has one end adapted to be connected to a chuck of a rotary tool such as a drill or power driver. The opposite end of the shank supports a cutting head having an annular cutting edge. A screw tip is provided for feeding the cutting member into and through the wood. A cutting member is disposed between the cutting edge and the tip. The bit is rotated at high speed such that the teeth score the edge of the hole and the cutting member bores the interior of the hole.
An improved self-feed bit is desired.
A drill bit comprises a shank defining an axis of rotation. A cutting head is attached to the shank. A plurality of cutting blades defining a plurality of cutting edges extend from adjacent the axis of rotation to the edge of the cutting head. The cutting edges are disposed at different angles to a plane perpendicular to the axis of rotation.
Referring to the Figures an embodiment of a drill bit is shown generally at 1 and comprises a shank 2 having a quick coupling 4 disposed at a first end thereof. The quick connect coupling 4 may comprise a plurality flat faces 4a adapted to be received and retained in a chuck of a rotary tool such as a power screwdriver, drill or other power driver. A recess 4b may be formed around the circumference of the shank to be releasably engaged by the quick connect coupler of the rotary tool. Other configurations of shank 2 may also be used for coupling the drill bit to a rotary drive tool.
A generally cylindrical, cup shaped cutting head 6 is formed on the opposite end of shank 2 from quick connect coupling 4. The cutting head 6 comprises an annular wall comprising three wall portions 10a, 10b and 10c connected to shank 2 by a base 12. Each of the wall portions 10a, 10b, and 10c have an arcuate profile that together form a circular cutting edge. While the wall portions each define a portion of the circular cutting edge, it is to be understood that when the drill bit rotates the wall portions circumscribe and cut a round hole. Formed on the distal edges of the wall portions 10a, 10b and 10c are a plurality of teeth 14 that create the cutting edge. When the drill bit 1 is rotated about the rotational axis B-B the teeth 14 score the material being cut to create a clean cut around the periphery of the hole being drilled. A screw tip 15 is formed along the rotational axis B-B of the bit that engages the material being cut to feed the bit through the material.
The screw tip 15 may be made removable from the remainder of the bit. The screw tip 15 may include a relatively long stem 15a as shown in
A plurality of cutting blades or lifters 20a, 20b and 20c are formed on the cutting head 6. When the drill bit is rotated at high speed in the direction of arrow A, the cutting blades 20a, 20b, and 20c lift the material from the interior of the hole being drilled. Troughs 21a, 21b and 21c are formed between wall portions 10a, 10b and 10c and in base 12 in front of the cutting blades 20a, 20b and 20c to create open areas for the wood chips to be ejected from the drill bit during the drilling operation. The troughs 21a, 21b and 21c comprise gaps in the base 12 and gaps between the wall portions 10a, 10b and 10c. The troughs are located in front of the leading or cutting edges of cutting blades 20a, 20b and 20c, the leading edges or cutting edges being the forward edges of the cutting blades as the blades rotate in the direction of arrow A. In one embodiment, three such cutting blades are provided offset from one another 120° such that the cutting blades are evenly spaced about axis B-B. The cutting blades are arranged such that the inner portions of each of the blades at least partially circumscribe screw 15.
Referring to
When the bit is rotated the screw thread 15 feeds the bit 1 through the material being cut, the teeth 14 score the circumference of the hole being cut to create a smooth edge and the cutting blades 20a, 20b and 20c cut or lift material from the interior of the hole being cut. Using three blades distributes the cutting forces more equally around the bit. Also, by grinding the blades to have the orientations previously described with respect to
Specific embodiments of an invention are disclosed herein. One of ordinary skill in the art will recognize that the invention has other applications in other environments. Many embodiments are possible. The following claims are in no way intended to limit the scope of the invention to the specific embodiments described above.
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