Device for Positioning a Thread in a Workpiece
20170304919 · 2017-10-26
Inventors
Cpc classification
B23G3/005
PERFORMING OPERATIONS; TRANSPORTING
B23G2240/40
PERFORMING OPERATIONS; TRANSPORTING
B23G1/46
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23G1/46
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device (44) for forming a thread in a workpiece has a housing and a plurality of tool receptacles (2) rotatably and displaceably mounted in or on the housing for a respective thread-forming tool, wherein a linear drive and a rotary drive for the tool receptacles (2) are integrated into the housing.
Claims
1. Device (44) for forming a thread in a workpiece having a housing and a plurality of tool receptacles (2) which are rotatably and displaceably mounted in or on the housing for a thread-forming tool, characterized in that a linear drive and a rotary drive for the tool receptacle(s) (2) are integrated into the housing.
2. Device (44) according to claim 1, characterized in that the housing has integration means for detachable integration of the device (44) into a receptacle device.
3. Device (44) according to claim 2, characterized in that the integration means comprise a bearing surface to support the weight of the device (44) in its operating position and/or a contact surface to support a torque generated by the rotary drive.
4. Device (44) according to claim 1, characterized in that the tool receptacles (2) are arranged evenly divided around a rotational axis (36) of the rotary drive.
5. Device (44) according to claim 1, characterized in that the linear drive is operated pneumatically and/or the rotary drive is operated electrically.
6. Device (44) according to claim 1, characterized in that the rotary drive turns a driving wheel for the tool receptacles (2) via a central driven gear in each case.
7. Device (44) according to claim 6, characterized in that the driving wheels are non-rotationally connected to cylinder barrels (5) of the tool receptacles (2), wherein piston rods (4) run in the cylinder barrels (5), which at one end located outside the associated cylinder barrel (5) have one of the tool receptacles (2) in each case.
8. Device (44) according to claim 7, characterized in that the piston rods (4) non-rotationally run in a feed-through (17) of the associated cylinder barrel (5) in each case.
9. Device (44) according to claim 1, characterized in that the housing has first housing part (32) and second housing part, wherein the first housing part (32) and the second housing part (33) are connected to one another with relative mobility, wherein a relative motion of the housing parts (32, 33) leads to deformation of one or more spring elements (35).
10. Device (44) according to claim 9, characterized in that the first housing part (32) encloses the tool receptacles (2) and the second housing part (33) has a contact area (38) for contact of a punch (30) in a production line.
11. Device (44) according to claim 1, characterized by one or more plug-in connectors (41, 42) for forming one or more plug-in connections with one or more mating connectors (43) of an energy supply for the linear drive and/or the rotary drive.
12. Device (44) according to claim 1, characterized by a linear drive for each of the respective tool receptacles (2).
13. Device (44) according to claim 11, characterized by a plug-in connector for each of the respective linear drives and the rotary drive.
14. Production line for a workpiece with a device (44) according to claim 1 and a receptacle device designed to accommodate the device (44).
15. Production line according to claim 14, characterized by a punch (30) which can be moved by means of a drive (31).
Description
[0022] The invention is described in detail below on the basis of an exemplary embodiment illustrated in the drawings, wherein
[0023]
[0024]
[0025]
[0026] The exemplary embodiment of an inventive device 44 for forming a thread in a workpiece (not shown), illustrated in the drawings, comprises a multipart housing, within which four accommodation spaces 1 in total are arranged for a respective tool receptacle 2 for a thread-generating tool in the form of a thread-forming tool 3 or a thread cutter. In
[0027] This tool receptacle 2, in which a thread-forming tool 3 is held, is non-rotationally fastened to an end of a piston rod 4 of a pneumatic linear drive. This end of the piston rods 4 and thus the tool receptacle 2 are arranged in each position of the piston rod 4 outside a cylinder barrel 5 of the linear drive. At the distal end of the piston rods 4—in relation to the tool receptacle 2—a piston 6 is arranged, which runs in a sealed way inside the cylinder barrel 5. The multipart piston 6 and the piston rod 4 are connected together by a screw connection 7. On the side turned away from the tool receptacle 2 the piston 6 together with the adjacent section of the cylinder barrel 5 and cover 8 enclosing the cylinder barrel 5 on this side forms a pressure chamber 9, which can be filled with a pressurized gas, especially compressed air, via an associated pressure pipe 10 as a result of which the piston 6 together with the piston rod 4, the tool receptacle 2 and the thread-forming tool 3 held therein are driven towards an outlet 11 of the housing, so that the head of the thread-forming tool 3 is moved from the housing. The piston 6 and thus the thread-forming tool 3 are returned by means of a spring element 46. For simple fabrication the pressure pipes 10 are implemented in the form of drilled holes running in a straight line inside the housing.
[0028] Apart from a respective linear drive for each of the four tool receptacles 2, the device 44 also comprises a rotary drive with an electric motor 12, for example in the form of a direct current servo actuator, the rotor of which turns all four tool receptacles 2 at the same time via a power take-off flange 13 and a centrally driven gear wheel 14. For this purpose four driving gear wheels 15, which are integrated (in one piece) into the cylinder barrels 5, engage the driven gear wheel 14, as a result of which the cylinder barrels 5, which are rotatably mounted within the housing by means of roller bearings 16, can be turned by the electric motor 12. Such a rotation of a cylinder barrel 5 is transmitted via the piston rod 4 and the associated tool receptacle 2 to the corresponding thread-forming tool 3 and thus in combination with a movement induced by the linear drive permits a thread to form in a workpiece (sheet metal component) lying adjacent to the outlet 11. A torque can be transmitted between the cylinder barrel 5 and the piston rod 4 as a result of longitudinal gearing interlinking the piston rod 4 and a feed-through 17 of the cylinder barrel 5.
[0029] Such processing of a workpiece by means of the device 44 takes place on a production line, as shown in
[0030] The tool bar 18 is designed as a fork, i.e. it comprises a first bar 20 and a second bar 21, between which a receptacle slot 22 for the workpiece is formed. In this case the two bars 20, 21 are connected together only at one of their ends by a distance piece 23.
[0031] Each of the receptacles 19 comprises a passage 24 in the first bar 20, which serves to accommodate the outer side of a section of the housing of the device 44 as play-free as possible. Furthermore each of the receptacles 19 comprises a plurality of supporting bolts 25, resiliently mounted and arranged evenly divided around the passage 24. Springs 26 for the supporting bolts 25 are arranged in a respective blind drilled hole. These blind drilled holes at their open ends are enclosed by means of an annular bezel 28, in which the individual supporting bolts 25 are displaceably guided. The annular bezel 28 also has in addition a protrusion 27. In the case of the device 44 (or punching machine 45) integrated into a receptacle 19 the housing of the device 44 (or punching machine 45) with a bearing surface formed by an annular shoulder 29 of the housing rests on the outer lying front faces of the supporting bolts 25, as a result of which the weight of the device 44 (or punching machine 45) is supported. Furthermore the protrusion 27 of the annular bezel 28 then engages a matching recess (not shown) of the housing, a torque on the tool bar 18, generated by the electric motor 12, being supported.
[0032] In order to form a thread in a workpiece arranged within the receptacle slot 22 of the tool bar 18, the entire device 44 is first moved by means of a punch 30 only schematically suggested in
[0033] Each of the linear drives of the device 44 is individually connected to an external compressed air- and therefore energy supply. This enables a selected linear drive to be controlled and therefore the associated thread-forming tool 3 to be used for forming a thread in the workpiece through an external control unit (not shown), which for this purpose releases the corresponding compressed air supply for the selected linear drive. This allows integration of a corresponding control unit into the device 44 itself to be dispensed with, as a result of which this can be designed with a relatively simple structure and therefore cost-efficiently.
[0034] Generally it is proposed at the same time not to use a plurality of the total four thread-forming tools 3 available by means of the device 44, which may have different diameters and/or thread forms. In fact for a thread to be formed next first the thread-forming tool 3 suitable for this is identified, then by corresponding displacement of the workpiece within the receptacle slot 22 of the tool bar 18 the place of the workpiece intended for the thread is positioned below the outlet 11 belonging to the identified thread-forming tool 3 and thereupon the corresponding linear drive and the rotary drive are activated, as a result of which the head of the thread-forming tool 3 penetrates the material of the workpiece and thus at the same time generates an opening and on the inside of the opening the intended thread by cold forming the material. All tool receptacles 2 and possibly thread-forming tools 3 held therein are turned by means of the rotary drive.
[0035] As a result of the proposed pluggable integration of the device 44 into the tool bar 18 the device 44 can be simply and quickly dismantled/assembled. This allows the tool bar 18 and therefore the production line to be equipped with one or more inventive devices 44 according to requirements. This may also be proposed in combination with punching machines 45, for which reason the punching machines 45 have matching integration means. Punching machines 45 thereby can be especially designed so that the stroke movements, with which their cuttings are made in the workpiece, are generated by the punch 30.
[0036] In order to guarantee particularly simple dismantling/assembly of the device 44 also with respect to the connections with the external energy sources, it is proposed to integrate all four pneumatic connections 40 of the housing into a combi plug-in connector 41 which comprises four individual plug-in connectors for the four pneumatic connections 40 and which must only be plugged together with a matching mating connector 42 of the compressed air supply and locked for example by a partial turn about the quick-release spindle. The electric motor 12 is likewise connected to a current source via two plug-in connectors 43, which are plugged together with matching mating connectors (not shown) of the electrical power supply.
REFERENCE SYMBOL LIST
[0037] 1 accommodation space [0038] 2 tool receptacle [0039] 3 thread-forming tool [0040] 4 piston rod [0041] 5 cylinder barrel [0042] 6 piston [0043] 7 screw connection [0044] 8 cover [0045] 9 pressure chamber [0046] 10 pressure pipe [0047] 11 outlet [0048] 12 electric motor [0049] 13 power take-off flange [0050] 14 driven gear wheel [0051] 15 driving gear wheel [0052] 16 roller bearing [0053] 17 feed-through [0054] 18 tool bar [0055] 19 receptacle [0056] 20 first bar [0057] 21 second bar [0058] 22 receptacle slot [0059] 23 distance piece [0060] 24 passage [0061] 25 supporting bolt [0062] 26 spring [0063] 27 protrusion [0064] 28 annular bezel [0065] 29 shoulder [0066] 30 punch [0067] 31 drive [0068] 32 first housing part [0069] 33 second housing part [0070] 34 guide screws [0071] 35 spring element [0072] 36 rotational axis of electric motor, longitudinal axis of device and movement axis of punch [0073] 37 movement axis of a linear drive [0074] 38 contact area [0075] 39 upper end face of the electric motor [0076] 40 pneumatic connection [0077] 41 plug-in connector of the pneumatic connection [0078] 42 mating connector [0079] 43 plug-in connector of the electric motor [0080] 44 device [0081] 45 punching machine [0082] 46 spring element