Magnetic drill press
US-2023234209-A1 · Jul 27, 2023 · US
US10654113B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10654113-B2 |
| Application number | US-201815868385-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 11, 2018 |
| Priority date | Jan 20, 2017 |
| Publication date | May 19, 2020 |
| Grant date | May 19, 2020 |
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A method for cutting an inner circumferential surface of a rotating hollow cylindrical workpiece includes: holding the workpiece with a chucking device such that a side surface of the workpiece on a first side in an axial direction of the workpiece is in contact with a contact surface of the chucking device; setting an intersection angle between a rotational center line of the workpiece and an imaginary straight line to an angle smaller than 45 degrees, the straight line being parallel to an axis line of a button tip and intersecting with the rotational center line; and setting a feed direction of the button tip to the inner circumferential surface to a direction from a second side in the axial direction of the workpiece toward the first side in the axial direction thereof, and cutting the inner circumferential surface by use of the button tip rotating about the axis line.
Opening claim text (preview).
What is claimed is: 1. A cutting method for cutting an inner circumferential surface of a rotating hollow cylindrical workpiece by use of a linear tool with a button tip mounted at a distal end of the linear tool, the cutting method comprising: holding the workpiece with a chucking device in a state where a side surface of the workpiece on a first side in an axial direction of the workpiece is in contact with a contact surface of the chucking device; setting an intersection angle between a rotational center line of the workpiece and an imaginary straight line to an angle smaller than 45 degrees, the imaginary straight line being parallel to an axis line of the button tip and intersecting with the rotational center line of the workpiece; and setting a feed direction of the button tip to the inner circumferential surface of the workpiece to a direction from a second side in the axial direction of the workpiece toward the first side in the axial direction of the workpiece, and cutting the inner circumferential surface of the workpiece by use of the button tip rotating about the axis line. 2. The cutting method according to claim 1 , wherein when a first region is assumed to be on one side of a vertical imaginary plane including the rotational center line of the workpiece, and a second region is assumed to be on an other side of the vertical imaginary plane, a linear shaft portion included in the linear tool is disposed so that the linear shaft portion extends from the first region to the second region and so that the distal end of the linear tool faces the second region, and the button tip mounted at the distal end of the linear tool comes in contact with the inner circumferential surface of the workpiece in the second region. 3. The cutting method according to claim 1 , wherein the button tip is rotated about the axis line with the button tip being oriented in such a direction that a rotational speed difference between the workpiece and the button tip is reduced. 4. A cutting apparatus that cuts an inner circumferential surface of a rotating hollow cylindrical workpiece, the cutting apparatus comprising: a chucking device that has a contact surface configured to contact with a side surface of the workpiece on a first side in an axial direction of the workpiece, and that is configured to hold the workpiece; a linear tool with a button tip mounted at a distal end of the linear tool; a head that has the linear tool mounted thereon such that an intersection angle between a rotational center line of the workpiece and an imaginary straight line parallel to an axis line of the button tip and intersecting with the rotational center line of the workpiece is smaller than 45 degrees, and that rotatably supports the linear tool; and a feed mechanism that includes a motor, a speed reducer that reduces a speed of a motor output of the motor, and a ball screw rotated by the motor, and configured to feed the button tip along the inner circumferential surface of the workpiece in a direction from a second side in the axial direction of the workpiece toward the first side in the axial direction of the workpiece, wherein the contact surface of the chucking device includes a recess to receive a portion of the button tip during machining of the inner circumferential surface adjacent to the first side of the workpiece. 5. The cutting apparatus according to claim 4 , wherein the linear tool includes a holder with the button tip mounted at a distal end portion of the holder and a bolt that fastens together the holder and the button tip, a through-hole through which a shaft portion of the bolt is inserted is formed along the axis line in the button tip, a screw hole for the bolt is formed in the holder, and a direction in which the bolt is tightened by rotation of the bolt into the screw hole is opposite to a direction of rotation of the button tip about the axis line during cutting work. 6. The cutting apparatus according to claim 4 , wherein the linear tool includes a holder with the button tip mounted at a distal end portion of the holder, and the holder includes an annular wall portion that is in contact with an outer circumferential surface of the button tip over a whole circumference of the button tip. 7. The cutting apparatus according to claim 4 , wherein the head includes a rotational driver configured to rotationally drive the linear tool and the button tip about the axis line of the button tip, and is configured to rotate the button tip with the button tip being oriented in such a direction that a rotational speed difference between the workpiece and the button tip is reduced. 8. The cutting apparatus according to claim 4 , wherein the feed mechanism is configured to feed the button tip in the axial direction of the workpiece from the second side of the workpiece to a position that is at least halfway between the second side of the workpiece and the first side of the workpiece. 9. The cutting apparatus according to claim 4 , wherein the feed mechanism is configured to feed the button tip in the axial direction of the workpiece from the second side of the workpiece to the first side of the workpiece. 10. A cutting apparatus that cuts an inner circumferential surface of a rotating hollow cylindrical workpiece, the cutting apparatus comprising: a chucking device that has a contact surface configured to contact with a side surface of the workpiece on a first side in an axial direction of the workpiece, and that is configured to hold the workpiece; a linear tool with a button tip mounted at a distal end of the linear tool; a head that has the linear tool mounted thereon such that an intersection angle between a rotational center line of the workpiece and an imaginary straight line parallel to an axis line of the button tip and intersecting with the rotational center line of the workpiece is smaller than 45 degrees, and that rotatably supports the linear tool; and a feed mechanism that includes a motor, a speed reducer that reduces a speed of a motor output of the motor, and a ball screw rotated by the motor, and configured to feed the button tip along the inner circumferential surface of the workpiece in a direction from a second side in the axial direction of the workpiece toward the first side in the axial direction of the workpiece, wherein a length of the linear tool with the button tip in the axial direction of the workpiece is longer than a length of the workpiece in the axial direction of the workpiece, and the linear tool when disposed inside of the workpiece does not to interfere with the inner circumferential surface of the workpiece. 11. The cutting apparatus according to claim 10 , wherein the contact surface of the chucking device includes a recess to receive a portion of the button tip during machining of the inner circumferential surface adjacent to the first side of the workpiece. 12. The cutting apparatus according to claim 10 , wherein the linear tool includes a holder with the button tip mounted at a distal end portion of the holder and a bolt that fastens together the holder and the button tip, a through-hole through which a shaft portion of the bolt is inserted is formed along the axis line in the button tip, a screw hole for the bolt is formed in the holder, and a direction in which the bolt is tightened by rotation of the bolt into the screw hole is opposite to a direction of rotation of the button tip about the axis line during cutting work. 13. The cutting apparatus according to claim 10 , wherein the linear tool includes a holder with the button tip mounted at a distal end portion of the holder, and the holder
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