Peeling machine
09895749 ยท 2018-02-20
Assignee
Inventors
Cpc classification
International classification
Abstract
To provide a peeling machine being able to easily and swiftly conduct production process and preparation work, excellent in durability, and able to certainly prevent movement of a tool holder to a radial inner side by self weight, a peeling machine is provided with a rotation cylinder 1 to which a work W of round rod is inserted, a tool holder 22 attached to the rotation cylinder 1 as to freely slide along a radial direction R of the rotation cylinder 1, and a pressing member 3 attached to the rotation cylinder 1 as to freely slide along an axial direction X of the rotation cylinder 1; and constructed as that a pressing face 32a of the pressing member 3 and a pressure-receiving face 22a of the tool holder 22 are made sliding with inclination on a longitudinal face parallel to a sliding direction Y of the tool holder 22, and the tool holder 22 is made sliding to a radial inner side Rb on the longitudinal face by sliding the pressing member 3 to an axial outer side Xa; and, a hook member 6, hitching the tool holder 22 as to prevent sliding of the tool holder 22 to the radial inner side Rb by self weight, is attached to the pressing member 3.
Claims
1. A peeling machine provided with a rotation cylinder (1) to which a work (W) of round rod is inserted, a tool holder (22) attached to the rotation cylinder (1) as to slide along a radial direction (R) of the rotation cylinder (1), and a pressing member (3) attached to the rotation cylinder (1) as to slide along an axial direction (X) of the rotation cylinder (1); and constructed so that a pressing face (32a) of the pressing member (3) and a pressure-receiving face (22a) of the tool holder (22), provided on a base end side of the tool holder (22), slide with inclination on a plane cut on a longitudinal face parallel to a sliding direction (Y) of the tool holder (22) an including an axis (La) of the rotation cylinder (1) wherein the tool holder (22) slides to a radial inner side (Rb) of the rotational cylinder on the longitudinal face by sliding the pressing member (3) to an axial outer side (Xa) of the rotational cylinder; characterized by that: a hook member (6) is attached to the pressing member (3), the hook member (6) hitching the tool holder (22) so as to prevent it from sliding to the radial inner side (Rb) of the rotational cylinder by self weight.
2. The peeling machine as set forth in claim 1, wherein the tool holder (22) has a hitched face (22e) hitched to the hook member (6) parallel to the pressure-receiving face (22a) on the longitudinal face.
3. The peeling machine as set forth in claim 1, wherein the hook member (6) has a hitching face (62e) hitched to the tool holder (22) and parallel to the pressing face (32a) of the pressing member (3) on the longitudinal face.
4. The peeling machine as set forth in claim 2, wherein the hook member (6) has a hitching face (62e) hitched to the tool holder (22) and parallel to the pressing face (32a) of the pressing member (3) on the longitudinal face.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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EMBODIMENTS OF THE INVENTION
(8) The present invention is described with an embodiment shown in accompanying drawings.
(9) A peeling machine relating to the present invention, as shown in
(10) The cutting device 10, as shown in
(11) The cutter head 2 is provided with plural tool holders 22 to each of which a cutting tip 23 to cut the work W of round rod is attached, a pair of slide guiding members 25 to hold each of the tool holders 22 as to freely slide (freely position-adjustable in the diameter direction) along a radial direction R of the rotation cylinder 1 and prevent the tool holder 22 from moving in the axial direction X of the rotation cylinder 1, and a base member 21 of ring attached to an end face of an end portion 1a of the rotation cylinder 1 to which the slide guiding members 25 are attached.
(12) The end portion 1a is an end portion to which the work W is inserted, or an end portion on an upstream side of work feeding direction. The radial direction R of the rotation cylinder 1 is also the radial direction R of the work W and the radial direction R of the cutter head 2.
(13) On the cutter head 2, a cutting unit 20, provided with one tool holder 22 and one pair of slide guiding members 25, is disposed on 4 positions with uniform intervals on the base member 21 in a peripheral direction N around the rotation axis La.
(14) The tool holder 22 is inserted to a dovetail guiding groove formed along the radial direction R with the pair of slide guiding members 25 and the base member 21 as to freely slide.
(15) The cutting tip 23 is attached to a forth end side (a radial inner side Rb of the rotation cylinder 1) of the tool holder 22, and the edge of the cutting tip 23 is moved in the radial direction R when the tool holder 22 is moved in a sliding direction Y along the radial direction R.
(16) And, the base end side (a radial outer side Ra of the rotation cylinder 1) of the tool holder 22 has an inclined pressure-receiving face 22a on a longitudinal face parallel to the sliding direction Y of the tool holder 22 as shown in
(17) The pressing member 3, provided with a cylindrical sliding member 31 mounted to the rotation cylinder 1 as to freely slide in the axial direction X and to which rotational force of the rotation cylinder 1 is transmitted by keys 50 fixed to the rotation cylinder 1, and a pressing ring 32 of ring attached to an end portion 31a of the sliding member 31 and concentric with the base member 21 of the cutter head 2, is attached to the peripheral face of the end portion 1a of the rotation cylinder 1.
(18) The pressing ring 32 has a pressing face 32a inclined on the longitudinal face parallel to the holder sliding direction Y. In other words, the pressing ring 32 has a tapered inner peripheral face diminishing toward the axial inner side Xb, and the pressing face 32a is formed with the tapered inner peripheral face.
(19) The pressing face 32a and the pressure-receiving face 22a of the tool holder 22 are sliding with inclination on the longitudinal face parallel to the holder sliding direction Y (refer to
(20) And, as shown in
(21) Two hook members 6 are disposed on both sides (on left and right sides) of the base end portion 22d of the tool holder 22 in the peripheral direction N as one pair. That is to say, a first hook member 6A on one side in the peripheral direction and a second hook member 6B on another side Nb in the peripheral direction hitch the tool holder 22 in the peripheral direction N.
(22) The base end portion 22d of the tool holder 22 is formed T-shaped in front view having hitched portions 22f protruding in the peripheral direction N to be hitched to the hook member 6.
(23) The hitched portion 22f has a hitched face 22e formed parallel to the pressure-receiving face 22a on the longitudinal face parallel to the holder sliding direction Y shown in
(24) That is to say, on the longitudinal face, an inclination angle (first inclination angle) a between a standard face at right angles with the longitudinal face and the pressure-receiving face 22a is set to be the same as an inclination angle (second inclination angle) b between the standard face and the hitched face 22e.
(25) The hitched face 22e is disposed on the radial inner side Rb to the pressure-receiving face 22a on the longitudinal face.
(26) The hook member 6 is formed L-shaped in front view having an attachment portion 61 attached to an end face (front face) 32b of the pressing ring 32 and a hitching portion 62 hitching to the hitched face 22e of the tool holder 22.
(27) The hitching portion 62 of the hook member 6 contacts the hitched portion 22f of the tool holder 22 from the radial inner side Rb. That is to say, the hitching portion 62 contacts the hitched portion 22f from the lower side to support by suspension in a posture in which the sliding direction Y of the tool holder 22 is vertical and the base end portion 22d is on the upper position.
(28) The hook member 6 stops the movement of the tool holder 22 on the upper position by self weight toward the radial inner side Rb in a state that the rotation cylinder stays still.
(29) The tool holder 22 on the upper position means the tool holder 22 in which the edge of the cutting tip 23 is disposed on an upper position than a horizontal face including the rotation axis La.
(30) The hitching portion 62 of the hook member 6 has a hitching face 62e formed parallel to the pressing face 32a of the pressing member 3 (the tapered inner peripheral face of the pressing ring 32) on the longitudinal face (refer to
(31) That is to say, on the longitudinal face, an inclination angle (third inclination angle) c between the standard face at right angles with the longitudinal face and the pressing face 32a is set to be the same as an inclination angle (fourth inclination angle) d between the standard face and the hitching face 62e.
(32) The hitching face 62e of the hook member 6 and the hitched face 22e of the tool holder 22 slide with inclination on the longitudinal face parallel to the holder sliding direction Y, and contact straight on the cross-sectional face parallel to the holder sliding direction Y.
(33) Further, on the longitudinal face parallel to the holder sliding direction Y, the pressing face 32a of the pressing member 3, the pressure-receiving face 22a and the hitched face 22e of the tool holder 22, and the hitching face 62e of the hook member 6 are set to be parallel. That is to say, the first inclination angle a, the second inclination angle b, the third inclination angle c, and the fourth inclination angle d are set to be the same angle.
(34) As shown in
(35) The sliding mechanism 5 is constructed as that the worm wheel 53 is rotated around the rotation axis La by rotation of the worm member 54, the cylindrical member 52 is moved in the axial direction X by screwing process, and the pressing member 3 (the sliding member 31 and the pressing ring 32) is slid in the axial direction X by transmission of the force in the axial direction X to the pressing member 3 (the sliding member 31) through the bearing 51.
(36) And, in the rotating state of the rotation cylinder 1, the pressing member 3 and an inner ring of the bearing rotate, the outer ring of the bearing 51, the cylindrical member 52, the worm wheel 53, and the worm member 54 do not receive the rotational force from the rotation cylinder (not rotate).
(37) Next, the function of the peeling machine of the present invention is described.
(38) When the pressing member 3 is moved to the axial outer side Xa by the sliding mechanism 5, the pressing face 32a of the pressing member 3 (the pressing ring 32) slides on the pressure-receiving face 22a of the tool holder 22, further, the pressing face 32a presses the pressure-receiving face 22a to the radial inner side Rb. And, although the hook member 6 is moved unitedly (together) with the pressing member 3 to the axial outer side Xa and the hitching face 62e of the hook member 6 slides on the hitched face 22e of the tool holder 22, pressing force is not generated.
(39) On the longitudinal face parallel to the holder sliding direction Y, the sliding force to the axial outer side Xa is converted to the pressing force to the radial inner side Rb by the sliding of the pressing face 32a of the pressing member 3 and the pressure-receiving face 22a of the tool holder 22 with inclination (taper) to move the tool holder 22 to the radial inner side Rb. In other words, the tool holder 22 (the edge of the cutting tip 23 attached to the tool holder 22) is moved close to the rotation axis La or the work W.
(40) When the pressing member 3 is moved to the axial inner side Xb by the sliding mechanism 5, the hook member 6 is also moved together to the axial inner side Xb, the hitching face 62e of the hook member 6 slides on the hitched face 22e of the tool holder 22, further, the hitching face 62e presses the hitched face 22e to the radial outer side Ra. And, although the pressing face 32a of the pressing member 3 slides on the pressure-receiving face 22a of the tool holder 22, pressing force is not generated.
(41) On the longitudinal face parallel to the holder sliding direction Y, the sliding force to the axial inner side Xb is converted to the pressing force to the radial outer side Ra by the sliding of the hitching face 62a of the hook member 6 and the hitched face 22e of the tool holder 22 with inclination to move the tool holder 22 to the radial outer side Ra. In other words, the tool holder (the edge of the cutting tip 23 attached to the tool holder 22) is moved apart from the rotation axis La or the work W.
(42) And, as shown in
(43) In the present invention, being modifiable, although two hook members 6 are hitched to one tool holder 22 in figures, only one hook member 6 may be hitched to the tool holder 22. And, although four cutting units 20 (the tool holders 22) are disposed on the base member 21, more than four units, for example, six units may be disposed. The construction of the sliding mechanism 5, not restricted to the above-described worm type, may be a construction with actuators.
(44) As described above, in comparison with the conventional elastic pressing type using the spiral spring 99 as shown in
(45) And, the tool holder 22 can be smoothly slid without torsion because the tool holder 22 has the hitched face 22e hitched to the hook member 6 parallel to the pressure-receiving face 22a on the longitudinal face. Positional deviation by stagger of the tool holder 22 in the sliding direction Y is prevented, and the edge position of the cutting tip 23 can be adjusted with high accuracy.
(46) And, the tool holder 22 is held in the sliding direction Y, positional deviation by stagger of the tool holder 22 in the sliding direction Y is prevented, and the edge position of the cutting tip 23 can be adjusted with high accuracy because the hook member 6 has the hitching face 62e hitched to the tool holder 22 and parallel to the pressing face 32a of the pressing member 3 on the longitudinal face.
EXPLANATION OF THE MARKS
(47) 1 A rotation cylinder 3 A pressing member 6 A hook member 22 A tool holder 22a A pressure-receiving face 22e A hitched face 32a A pressing face 62e A hitching face R A radial direction Rb A radial inner side W A work X An axial direction Xa An axial outer side Y A sliding direction