TOOL POT
20220288735 ยท 2022-09-15
Assignee
Inventors
Cpc classification
B23Q2003/15527
PERFORMING OPERATIONS; TRANSPORTING
B23Q2003/15532
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Provided is a tool pot overcoming a problem that dirt adhered to the tool pot is transferred to a contact face of a tool. A pull stud holder includes a pusher that moves in a direction orthogonal to an axis of the tool whereby a tapered face provided at a distal end of the pusher pushes a tapered face of a pull stud in an axial direction of the tool. A base member includes a pull stud receiver that receives an end face of the pull stud. The pusher and the pull stud receiver prevent rotation of the pull stud and movement thereof in the axial direction of the tool. A flange holder includes a key that fits into a keyway of a flange, thereby preventing rotation of the flange.
Claims
1. A tool pot configured to hold a tool in a machine tool having an automatic tool changing function, the tool pot comprising: a pull stud holder configured to hold a pull stud of the tool; a base member; and a flange holder configured to hold a flange of the tool, wherein the pull stud holder includes a pusher configured to move in a direction orthogonal to an axis of the tool whereby an abutment part provided at a distal end of the pusher pushes a tapered face provided at the pull stud in an axial direction of the tool, the base member includes a pull stud receiver configured to receive an end face of the pull stud, and the pusher and a pull stud receiver prevent rotation of the pull stud and movement of the pull stud in the axial direction of the tool, and the flange holder includes a key configured to fit into a keyway provided at the flange of the tool, and the key prevents rotation of the flange holder.
2. The tool pot according to claim 1, wherein the flange holder, comprising: the key; and a pair of supports both located at positions 90 degrees or more away from the key clockwise and counterclockwise, respectively, and facing an outer peripheral part of the flange, is configured to hold the flange from an outer diameter side thereof at three locations, i.e., at the key and the pair of supports.
3. The tool pot according to claim 2, wherein the key and the supports of the flange holder are provided on an opposed member facing the base member provided with the pull stud receiver, the opposed member has a circular through hole through which a tapered shank of the tool is inserted, and the through hole has an opening that is open toward a direction orthogonal to the axis of the tool.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
DESCRIPTION OF EMBODIMENTS
[0023] The embodiments of the present invention will be described below, with reference to the drawings. In the following description, the right side and the left side of
[0024]
[0025] The tool (1) has: a tapered shank (2) whose outer peripheral face is a tapered face; a pull stud (3) provided at a small-diameter-side end of the tapered shank (2); and a flange (4) provided at a large-diameter-side end of the tapered shank (2).
[0026] The pull stud (3) consists of: a small-diameter portion (5) adjacent to a distal end of the tapered shank (2); and a large-diameter portion (6) adjacent to the small-diameter portion (5). The large-diameter portion (6) consists of: a small-diameter-side tapered part (6a) adjacent to the small-diameter portion (5); a cylindrical part (6b) adjacent to the small-diameter-side tapered part (6a); and an end-face-side tapered part (6c) adjacent to the cylindrical part (6b). The end-face-side tapered part (6c) has an end face (6d) orthogonal to the axial direction of the tool.
[0027] The flange (4) is provided with an annular V-groove (4a) having a V-shaped cross section, and a pair of keyways (4b). The pair of keyways (4b) are arranged at locations away from each other at 180 degrees so as to be parallel to the axis.
[0028] The tool pot (11) includes: a base member (12) located on a base end side (rear side) thereof; a pull stud holder (13) provided at the base member (12); an opposed member (14) facing the base member (12) and located on a distal end side (front side) thereof; a flange holder (15) provided on the opposed member (14); and a connecting member (16) connecting the base member (12) and the opposed member (14).
[0029] The base member (12) has a rectangular parallelepiped block shape, and has a front face (a face facing the opposed member (14)) where a recess (21) accommodating the pull stud (3) is formed so as to be open frontward.
[0030] The pull stud holder (13) includes: an air cylinder (22) provided at the left side surface of the base member (12); and a pusher (23) provided at a distal end of a rod (22a) of the air cylinder (22) and configured to push the pull stud (3). The rod (22a) of the air cylinder (22) is capable of advancing and retreating in the left-right direction, and the base member (12) is provided at the left side surface thereof with a recess (24) that allows the pusher (23) to advance and retreat and is open leftward.
[0031] The pusher (23) has a tapered face (23a) as an abutment part that abuts against the small-diameter-side tapered part (6a) of the pull stud (3).
[0032] The opposed member (14) has a plate-like shape, and has a circular through hole (25) through which the tapered shank (2) is to be inserted. The through hole (25) has an opening (26) that is open leftward.
[0033] The flange holder (15) includes: a key (27) located at a position facing the opening (26) and configured to fit into one (keyway (4b) on the right) of the pair of the keyways (4b) of the tool (1); and a pair of supports (28) arranged so as to sandwich the opening (26).
[0034] The pair of supports (28) are disposed at positions 90 degrees or more (for example, on the order of 135 degrees) away from the key (27) clockwise and counterclockwise, respectively, so as to face an outer peripheral part of the flange (4). Each support (28) has a pin shape so as not to have surface contact over a large area.
[0035] The flange holder (15) is configured to hold the flange (4) from the outer diameter side at three locations, that is, at the key (27) and the pair of supports (28).
[0036] The connecting member (16) consists of a pair of plates (16a) arranged so as to sandwich the base member (12). A rear part of each of the plates (16a) is fixed to the base member (12). Each plate (16a) has a front face to which the opposed member (14) is fixed.
[0037] The recess (21) accommodating the pull stud (3) is formed to have a stepped shape consisting of: a small-diameter portion on a bottom face (21a) side of the recess (21), a large-diameter portion on an opening side, and an intermediate-diameter portion between the small-diameter portion and the large-diameter portion. The bottom face (21a) of the recess (21) is configured to receive a rear face (6d) of the large-diameter portion (6) of the pull stud (3).
[0038] The small-diameter-side tapered part (6a), the cylindrical part (6b), and the end-face-side tapered part (6c) of the pull stud (3) of the tool (1) are all formed such that their centers pass through the axis of the tool (1), whereas the pusher (23) having the tapered face (23a) is formed such that its center passes through the axis orthogonal to the axis of the tool (1).
[0039] With the tool pot (11) according to the above-described embodiment, the tool (1) is mounted and dismounted as follows. That is, firstly, in a state where the pusher (23) is located at a retreat position as shown in
[0040] At this time, at the flange (4) of the tool (1), as shown in
[0041] In the state as shown in
[0042] In a case where the tool (1) is to be removed from the tool pot (11), firstly, the pusher (23) is moved to the retreat position as shown in
[0043] With the tool pot (11) of the above-described embodiment, the outer peripheral face of the tapered shank (2) and an outer peripheral face of the flange (4), which are used as a binding face when the tool (1) is clamped to the spindle, have contact at two locations only, i.e., at the pair of supports (28), and therefore the tool pot (11) does not have surface contact with the outer peripheral face of the tapered shank (2) and the end face of the flange (4) of the tool (1). With this configuration, even in a case where dirt exists in the tool pot (11), defective machining caused by dirt adhered when the tool (1) is mounted on the spindle is avoided.
[0044] In addition, with the tool pot (11) according to the above-described embodiment, in a state as shown in
[0045] In the above description, as an abutment part abutting against the small-diameter-side tapered part (6a) of the pull stud (3) provided at the pusher (23), the tapered face (23a) being in conformity with the corresponding small-diameter-side tapered face (6a) of the pull stud (3) is adopted. However, the abutment part of the pusher (23) may have, instead of the above configuration, other shapes such as being spherical or having a circular arc cross section. As long as the abutment part of the pusher (23) and the tapered face of the pull stud (3) are pushed against each other whereby the pull stud (3) is moved in a direction approaching the pull stud receiver (21a) of the base member (12), the abutment part of the pusher (23) may have any shape among various shapes.
REFERENCE SIGNS LIST
[0046] (1): tool [0047] (2): tapered shank [0048] (3): pull stud [0049] (4): flange [0050] (4b): keyway [0051] (6a): tapered face [0052] (11): tool pot [0053] (12): base member [0054] (13): pull stud holder [0055] (14): opposed member [0056] (15): flange holder [0057] (21a): bottom face of recess (21) (pull stud receiver) [0058] (23): pusher [0059] (23a): tapered face (abutment part) [0060] (25): through hole [0061] (26): opening [0062] (27): key [0063] (28): support