Rotary cutting tool
US-2017120349-A1 · May 4, 2017 · US
US11623286B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11623286-B2 |
| Application number | US-201817254585-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 22, 2018 |
| Priority date | Jun 22, 2018 |
| Publication date | Apr 11, 2023 |
| Grant date | Apr 11, 2023 |
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A tapered end mill includes an outer circumferential cutting edge, a flute is disposed such that a flute bottom radius defined as a distance between a flute bottom and the tool axis decreases from a shank side toward the tool tip side, the flute bottom radius linearly changes at a predetermined gradient angle in the tool axis direction, the gradient angle changes at a predetermined change point to become smaller on the tool tip side as compared to the shank side, and a gradient angle θ 1 on the tool tip side relative to the change point is equal to or larger than 0° and smaller than a taper half angle α of a cutting portion provided with the outer circumferential cutting edge, and a gradient angle θ 2 on the shank side relative to the change point is larger than the taper half angle α.
Opening claim text (preview).
The invention claimed is: 1. A tapered end mill including an outer circumferential cutting edge disposed along a flute extending in a tool axis direction with a diameter of the outer circumferential cutting edge reduced toward a tool tip side, wherein the flute is disposed such that a flute bottom radius defined as a distance between a flute bottom and the tool axis decreases from a shank side toward the tool tip side, wherein the flute includes (i) a tool-tip-side portion extending away from a tool tip to a predetermined change point and (ii) a shank-side portion extending from the change point to a shank-side end of the flute, wherein the flute bottom radius linearly changes at a first predetermined gradient angle θ 1 in the tool axis direction in the tool-tip-side portion of the flute, and linearly changes at a second predetermined gradient angle θ 2 in the tool axis direction in the shank-side portion of the flute, wherein the gradient angle θ 1 in the tool-tip-side portion of the flute is smaller than the gradient angle θ 2 in the shank-side portion of the flute, and wherein the gradient angle θ 1 in the tool-tip-side portion of the flute is equal to or larger than 0° and smaller than a taper half angle α of a cutting portion provided with the outer circumferential cutting edge, and the gradient angle θ 2 in the shank-side portion of the flute is larger than the taper half angle α. 2. The tapered end mill according to claim 1 , wherein the flute is one of a plurality of flutes disposed around the tool axis at equal angle intervals, while the outer circumferential cutting edge is one of a plurality of outer circumferential cutting edges disposed along the plurality of flutes, respectively, wherein the flute is a helical flute twisted around the tool axis, and wherein a helical direction of the helical flute is determined such that chips cut out by the outer circumferential cutting edge are discharged toward the shank side when the tapered end mill is rotationally driven around the tool axis. 3. The tapered end mill according to claim 1 , wherein the gradient angle θ 1 is within a range of 0°≤θ 1 ≤30°. 4. The tapered end mill according to claim 1 , wherein when D is a tip tool diameter, the change point is defined within a range of 1 D to 10 D from the tool tip in the tool axis direction. 5. The tapered end mill according to claim 1 , wherein when L is a cutting edge length of the tapered end mill the change point is defined within a range of 0.2 L to 0.7 L from the tool tip in the tool axis direction. 6. The tapered end mill according to claim 1 , wherein the gradient angle smoothly changes in the vicinity of the change point. 7. The tapered end mill according to claim 1 , wherein a rake angle of the outer circumferential cutting edge is constant over the entire length of the outer circumferential cutting edge.
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