The present invention relates to a drill for producing a deep hole in a cylinder block, a crankshaft, and the like of an engine.
One example of a drilling tool is proposed in each of the following documents.
Japanese Utility Model Publication No. Hei 6.18710 discloses a tapping screw having a drill cutting edge provided at the tip section and an end mill cutting edge formed next to the drill cutting edge. In this prior art, the tip section of the drill cutting edge is formed to cause the core section to protrude in the axial direction.
Japanese Utility Model Publication No. Hei 6-254711 discloses an end mill of which the tool body is provided with first and second flutes, wherein the first flute is provided with a first peripheral tip and a central tip, while the second flute is provided with a second peripheral tip. In this prior art, the cutting edge lines of a tip section of the first and second peripheral tips are formed to be depressed toward the tool core.
The difference between the drill and the end mill is now clarified. The drill has the cutting edge only on the tip and is used for drilling and chamfering operations. On the other hand, the end mill has an end cutting edge and a peripheral cutting edge and can be used for drilling, grooving and a side cutting operation, but a shallow hole can only be made because the tip room is narrow.
Japanese Utility Model Publication No. Hei 7-40118 discloses a drill of which the spiral angle of the cutting edge is gradually decreased toward a shank. In this prior art, it is shown that the tip edge line of the cutting edge is depressed.
On the other hand, when the tip section of the cutting edge is formed to have a depressed shape, the bending can be reduced because the tip section does not follow the lower hole in the case of cutting and the rectilinear propagation is good. However, bending is readily generated when the hole to be cut is deep because there is still a difference in the radial force.
To solve the above-mentioned problem, according to the present invention, there is provided a drill for making a deep hole in which the edge line of a tip section of a spiral cutting edge is depressed toward the core of the drill and a guide section is provided on a heel side on the same circumference as that on which the outer end section of the cutting edge passes in the tip section of the drill.
In this manner, by providing the guide section, the drill is supported at four points including the cutting edges and as a result, bending in the case of making the deep hole can be controlled. It is also possible to provide the guide section with a diamond edge.
Further, to improve the rectilinear propagation of the drill without following the lower hole, it is desirable that the concave angle of the tip section of the cutting edge be between 0 and 10 degrees, for example, be about 5 degrees.
Still further, the standard core thickness of the drill having a general outside dimension of 7.4 mm (=D) is 1.48 mm or less (0.2 D). However, in this case, the core thickness is overcome or affected by the radial force produced in the case of producing the deep hole and as a result, bending is readily produced. It is therefore desirable that the core thickness be 2.22 mm (0.3 D) or more, for example, be about 2.96 mm (0.4 D).
Preferred embodiments of the present invention will now be described with reference to the accompanying drawings.
A drill for producing a deep hole comprises a drill body 1 and a shank 2. The drill body 1 is spirally provided with a pair of cutting edges 3. The cutting edges 3 are formed at opposing positions spaced apart by about 180 degrees around a core 1a of the drill and the edge lines of the tip section of the cutting edges 3 are depressed toward the core 1a of the drill. An angle formed between the edge line 3a (the edge line of the cutting edges 3 in the outer end section) and the line perpendicular to the core 1a is 5 degrees. In the figure shown here, the core thickness (t) is 2.96 mm (0.4 D).
The drill according to the present invention is further provided with a guide section 4 for preventing bending in the case of cutting. The guide section 4 is provided on a heel side on the same circumference as that on which the outer end section of the cutting edges 3, 3 passes. In this manner, a stable cutting operation can be performed by four point support of the cutting edges 3, 3 and the guide sections 4, 4.
As described above, the drill according to the present invention is provided with the guide section so that the drill can have a self-guide function and the tip section of the cutting edge is depressed toward the core so as not to follow the lower hole for smooth rectilinear propagation. Further, since the core thickness is increased for higher rigidity, generation of bending can be prevented even though a difference is caused in the radial force by the displacement between the center of the lower hole and the core of the drill when a deep hole is made in a crank shaft, a cylinder block and the like.
Number | Date | Country | Kind |
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2003-059035 | Mar 2003 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2004/002339 | 2/27/2004 | WO | 00 | 10/3/2005 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2004/078393 | 9/16/2004 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2332295 | Bouchal | Oct 1943 | A |
2652083 | Emmons | Sep 1953 | A |
3977807 | Siddall | Aug 1976 | A |
3991454 | Wale | Nov 1976 | A |
4756650 | Wakihira et al. | Jul 1988 | A |
5046902 | Zubov et al. | Sep 1991 | A |
5272940 | Diskin | Dec 1993 | A |
5486075 | Nakamura et al. | Jan 1996 | A |
5846035 | Karafillis et al. | Dec 1998 | A |
6113321 | Mulroy et al. | Sep 2000 | A |
6132149 | Howarth et al. | Oct 2000 | A |
6443674 | Jaconi | Sep 2002 | B1 |
6857832 | Nygård | Feb 2005 | B2 |
Number | Date | Country |
---|---|---|
57156109 | Sep 1982 | JP |
60-114407 | Jun 1985 | JP |
60177807 | Sep 1985 | JP |
61-28654 | Aug 1986 | JP |
62-188613 | Aug 1987 | JP |
02-237710 | Sep 1990 | JP |
05-253718 | Oct 1993 | JP |
6-18710 | Mar 1994 | JP |
06-254711 | Sep 1994 | JP |
07-040118 | Feb 1995 | JP |
7-33516 | Jun 1995 | JP |
Number | Date | Country | |
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20060099042 A1 | May 2006 | US |