Machining unit for a machine tool and such a machine tool
10480124 ยท 2019-11-19
Assignee
Inventors
Cpc classification
H02G11/00
ELECTRICITY
H02G11/006
ELECTRICITY
B23Q1/0009
PERFORMING OPERATIONS; TRANSPORTING
D07B7/14
TEXTILES; PAPER
F16G13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B23Q1/00
PERFORMING OPERATIONS; TRANSPORTING
H02G11/00
ELECTRICITY
D07B7/14
TEXTILES; PAPER
F16G13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A machining unit for use on a machining tool has a head carrier that is attachable to the machine tool and has a head carrier housing, a swivel head that is provided to swivel relative to the head carrier about a swivel head rotation axis and has a swivel head housing, a spindle head that is attached to the swivel head and has a working spindle, and a cable run that extends inside the head carrier housing to the swivel head and has a plurality of members that are arranged in succession along the cable run and are connected movably together. Adjacent members are in this case able to rotate and swivel relative to one another and each member has a central piece and a sheathing spaced apart therefrom. The central piece is connected to the sheathing via one or more connection elements.
Claims
1. A machining unit for use on a machining tool, the machining unit comprising: a head carrier that is attachable to the machine tool, the head carrier having a head carrier housing; a swivel head that is provided to swivel relative to the head carrier about a swivel head rotation axis, the swivel head having a swivel head housing; a spindle head that is attached to the swivel head, the spindle head having a working spindle; and a cable run that extends inside the head carrier housing to the swivel head, the cable run including a structure having a plurality of structural members that are arranged in a chain succession, adjacent structural members of the plurality of structural members being movably connected together so as to rotate and swivel relative to one another, wherein each structural member of the plurality of structural members has a central piece and a sheathing spaced apart from the central piece, the central piece being connected to the sheathing via one or more rib connection elements, which extend from the central piece to the sheathing.
2. The machining unit according to claim 1, wherein one or more cables are arranged in the cable run and respectively run along the plurality of structural members between the central piece and the sheathing.
3. The machining unit according to claim 1, wherein connecting surfaces of the sheathing of each of the adjacent structural members are movable relative to one another.
4. The machining unit according to claim 1, wherein the central pieces of respective adjacent structural members are connected to one another via a hinged connection, the hinged connection is configured to enable the respective adjacent members to be rotated and/or swiveled relative to one another via the hinged connection.
5. The machining unit according to claim 1, wherein the cable run is configured to be attached to the head carrier and the swivel head via one or more respective flanges, the head carrier and the swivel head being configured to be rotatable towards one another by a rotation angle ranging at least from +180 to 180, the cable run being attached via the one or more flanges follows rotary motion of the swivel head as a result of movement of the structural members.
6. The machining unit according to claim 5, wherein at least one of the one or more flanges is arranged on a side of the swivel head in such a way that an axis of the at least one flanges of the one or more flanges is arranged parallel to the swivel head rotation axis.
7. The machining unit according to claim 1, wherein the cable run includes at least N structural members which are hingedly connected to one another, ends of the cable run are configured to be rotatable towards one another by a rotation angle ranging at least from +180 to 180.
8. The machining unit according to claim 7, wherein in the case of N structural members, two connected structural members are configured to be rotated by more than 360/N.
9. The machining unit according to claim 1, wherein the adjacent structural members of the cable run are respectively configured to be swiveled towards each other by a swivel angle ranging at least from +10 to 10.
10. The machining unit according to claim 1, wherein the central piece of each structural member of the plurality of structural members is connected to the sheathing via at least three separate rib connection elements.
11. The machining unit according to claim 1, wherein the central piece of each structural member of the plurality of structural members has a hinge ball and a hinge socket for the connection to the respective adjacent structural members.
12. The machining unit according to claim 1, wherein the central piece of each structural member of the plurality of structural members has a channel configured to receive a flexible cable and so as to connect respective central pieces of the adjacent structural members via the flexible cable.
13. The machining unit according to claim 1, wherein the sheathing of each structural member of the plurality of structural members includes a swiveling segment, the swiveling segment being configured to be swiveled in a radial direction.
14. The machining unit according to claim 13, wherein the swiveling segment is detachably arranged on one of the one or more connection elements.
15. The machining unit according to claim 13, wherein the swiveling segment is connected to one of the one or more rib connection elements via a hinge attached to an end region of the respective rib connection element.
16. The machining unit according to claim 1, wherein the sheathing of each structural member of the plurality of structural members at least partly encases one or more cables, and the structural members overlap in such a way that a region enclosed by the sheathing, opposite a region outside the sheathing, is configured to be sealed.
17. The machining unit according to claim 1, wherein surfaces of the sheathings of the adjacent structural members overlap at least partly.
18. The machining unit according to claim 1, wherein the one or more rib connection elements extend from the central piece in a radial direction to the sheathing.
19. A machine tool having the machining unit according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE PRESENT INVENTION
(11) Embodiments of the present invention are described in detail below by means of the exemplary drawings. The features of the embodiments can be combined in whole or in part, and the present invention is not limited to the described embodiments.
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(13) The head carrier K shown in
(14) The rotation is effected via sprockets which are driven via an adjusting motor. The driven sprockets mesh with a gear wheel of the swivel head SW (adjusting gear wheel SW2). The rotation of the gear wheel of the swivel head SW thus effects a rotation of the entire swivel head SW and the spindle head SP attached thereto.
(15) The spindle head SP also comprises a motor (or spindle drive) having a drive shaft and a connection region.
(16) Cables are provided between the swivel head SW and the head carrier K and are accommodated in a cable run L. These cables comprise e.g. control cables and drive cables for the spindle head SP for driving and for controlling the spindle SP1. The cable run L is attached to the head carrier K via a connection A1 on the side of the head carrier. The cable run L is here made like a hinge-like tube and protectively encloses the cables. When the swivel head SW is rotated about the swivel axis, the cables and the cable run are correspondingly carried along. Therefore, the cables are co-rotated with each rotation of the swivel head SW and are thus structurally burdened. The cables are favorably arranged in the region of the swivel axis so as to reduce the movement radius in the rotary motion and thus to reduce the structural load of the cables and in particular of the protective cover of the cables and the cable run. This serves in particular to increase the service life of the cables.
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(19) The cable run L is composed of a plurality of cable run members (members 1), wherein connection elements A1 and A2 are provided at the ends of the cable run L and are flanged to the carrier head K and/or the swivel head SW.
(20) The sheathing 31, 32 preferably consists of a polymer material, wherein the outer surface of the sheathing which faces away from the central piece 2 in the radial direction can have a rounding.
(21) The sheathing also has a connection portion 32. The individual members 1 are fitted into one another via this connection portion of the sheathing to form the sheathing of the cable run L.
(22) The sheathing 31 is spaced apart from a central piece 2 via the connection elements 4. The connection elements 4 are provided as rib-like elements which extend from the central piece 2 in a radial direction to the sheathing 31. The connection elements 4 are attached and fixed in mountings of the sheathing via attachment means 41, such as pins or screws. Polymers can also preferably be used as a material of the connection elements. The sheathing can be composed of segments of a circle. In particular, the circular sheathing 31 with associated connection portion 32 can thus be composed of various segments of a circle depending on the respective embodiment. The sheathing is favorably composed of two semi-circular sheathing sections which, when assembled, result in the circular shape of the sheathing 31 as shown in
(23) A further embodiment of a cable run member 1 is shown in
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(25) The sheathing 31 and the connection portion 32 of the sheathing are connected to the central piece 2 via the connection element 4. In order to connect the lateral surfaces of adjacent members 1, the sheathing 31 is provided with a front connection surface 33 and the connection portion 32 of the sheathing is provided with a rear connection surface 34.
(26) The central piece 2 of the embodiment of member 1 that is shown in
(27) The central piece 2 can additionally have a channel 5, as shown in
(28) The inner region, which is enclosed by the sheathing and is disposed between the central piece 2 and the sheathing 31, 32, accommodates cables of the machining unit.
(29) The central piece 2 and the connection elements 4 can be made as a single piece such that the number of the required components can be reduced, as shown in
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(32) As shown in
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