DEVICE AND METHOD FOR WELDING TOGETHER TWO JOINING PARTNERS BY MEANS OF FRICTION STIR WELDING, WHICH PREVENTS THE JOINING PARTNERS BEING CONTAMINATED BY THE WELDING RESIDUE
20200376590 ยท 2020-12-03
Assignee
Inventors
Cpc classification
B23K20/126
PERFORMING OPERATIONS; TRANSPORTING
B23K20/1235
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a method and to a device for welding together two joining partners by means of friction stir welding, which prevents the joining partners being contamined by welding residue. The method comprises the following features: a welding head that can be integrated into any machine, said welding head being in the form of a spindle drive driven by a drive unit, comprising a mounting flange for securing the device assisting the welding process, and a clamping system for receiving a frustoconical-shaped tool having a welding and smoothing shoe for guiding a welding pin (11), a device (17) integrated into the welding and smoothing shoe for grinding the waste produced during the welding process, the waste produced during welding is then removed by means of one inlet channels for fluid arranged in the upper and/or lower area of the frustoconical-shaped tool for the fluid (20, 18) and a suction channel (19).
Claims
1. A device for welding two joining partners by means of friction stir welding, which prevents the joining partners from being contaminated at all by welding residues, having the following features: e) a welding head which can be integrated in any machines in the form of a spindle drive (4) which is driven by a drive unit (1) having an assembly flange (5) for securing devices which support the welding process and a clamping system (8) for receiving a tool cover (9) having a welding and smoothing shoe (10) for guiding a welding pin (11), f) a device (14) which is integrated in the welding and smoothing shoe (10) for crushing the abraded material which is produced during the welding process, wherein means for removing this abraded material without contamination of the joining partners are provided, g) a device (7) which is integrated in the welding head for vertical axial adjustment of the tool cover (9), h) a temperature sensor (27) which is integrated in the tool cover (9), wherein the temperature of the tool cover (9) can be controlled by means of the supply and discharge of fluid.
2. The device as claimed in claim 1, characterized in that the crushing of the abraded material which is produced during the welding process is carried out by means of a cutting blade retention member (16) with a cutting blade (17) which is secured thereto.
3. The device as claimed in claim 1, characterized in that there is arranged below the assembly flange (5) a sensor ring (6) which carries sensors for measuring force, for measuring the direct process parameters and/or for oscillation measurement.
4. The device as claimed in claim 1, characterized in that the abraded material which is produced during the welding process is removed by means of an influx channel for fluid (20, 18) which is arranged in the upper and/or lower region of the tool cover (9) and an outlet channel (19).
5. The device as claimed in claim 1, characterized in that in the welding head at least one cable channel (22) leads to the sensors which are integrated in the welding head.
6. A method for welding two joining partners by means of friction stir welding, which prevents the joining partners from being contaminated at all by welding residues, having the following method features: c) in a welding head which can be integrated in any machines in the form of a spindle drive (4) which is driven by a drive unit (1) having an assembly flange (5) for securing devices which support the welding process and a clamping system (8) for receiving a tool cover (9) having a welding and smoothing shoe (10) for guiding a welding pin (11), it is ensured that in the welding and smoothing shoe (10) an integrated device (14) is provided for crushing the abraded material which is produced during the welding operation, d) the abraded material which is produced during the welding process is then removed by means of an influx channel for fluid (20, 18) which is arranged in the upper and/or lower region of the tool cover (9) and an outlet channel (19).
7. The method as claimed in claim 6, characterized in that the crushing of the abraded material which is produced during the welding process is carried out by means of a cutting blade retention member (16) with a cutting blade (17) which is secured thereto.
8. A computer program with a program code for implementing the method steps as claimed in claim 6, when the program is carried out on a computer.
9. A machine-readable carrier having the program code of a computer program for carrying out the method as claimed in claim 6, when the program is carried out on a computer.
Description
[0022] In the drawings:
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[0037] The term overall was selected since the entire process data acquisition and process control is integrated in the welding head. The spindle is to some degree a rotating tool retention member, wherein the welding head can be integrated in any machines. At the right-hand side, in
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[0039] In this instance, in the right-hand upper region the spindle gear 4 which extends over the cross-section and the assembly flange 5 which extends transversely relative to the spindle thread from
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[0041] In addition to the tool cover 9 with the inner tool shaft 13 and the welding pin 11 with the pin tip 15 thereof, in this instance in the welding and smoothing shoe 10 at the left and right side of the welding and smoothing shoe 10 as shown in this instance so-called lower influx channels 18 for fluid are illustrated. These lower influx channels 18 may naturally be distributed all the way around the welding and smoothing shoe 10 and serve to supply fluid for flushing away abraded material or excess process material which has been produced during the process of friction stir welding. These influx channels 18 are illustrated only schematically and by way of example. The influx channels 18 on the welding and smoothing shoe 10 also have a flow-producing function for the incoming fluid.
[0042] The device 14 shown in
[0043] At the left-hand side of the tool cover 9 an outlet channel 19 for fluid and an upper influx channel 20 for fluid can be seen.
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[0050] All the cutting blade positions illustrated can be freely combined with each other. Consequently, combinations between axial and radial cutting or crushing can also be produced.
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[0055] In addition to the surrounding welding and smoothing shoe 10 and the pin tip 15 which is supported therein, in this instance a cutting blade retention member 16 can be seen with the cutting blade 17 thereof. At the left side of the cutting blade retention member 16, a narrow gap, the gap 21 for abraded material or in general terms crushed process material, is shown, which gap results in this material being able to be introduced outward via a gap 18 by means of a lifting action in the upper region. The removal of the crushed material in the gap 21 is controlled by means of flow-influencing/producing geometries which rest at the inner side of the cover and at the outer side of the friction pin receiving member and the cutting blade retention member.
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[0057] In this instance, lowering the tool cover results in the process material which has been produced by the welding pin being able to be introduced upward and consequently via one or more of the gaps shown outward.
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LIST OF REFERENCE NUMERALS
[0059] 1 Drive unit for the spindle 12 [0060] 2 Control line and energy supply line [0061] 3 Robot [0062] 4 Spindle gear [0063] 5 Assembly flange [0064] 6 Sensor ring (force measurement, oscillation measurement) [0065] 7 Unit for axial adjustment of the tool cover [0066] 8 Clamping system for the welding tool [0067] 9 Tool cover [0068] 10 Welding and smoothing shoe [0069] 11 Welding pin [0070] 12 Spindle [0071] 13 Tool shaft (pin shaft) [0072] 14 Device for grinding or machining the abraded material [0073] 15 Pin tip [0074] 16 Cutting blade retention member of the device 14 for grinding or machining, generally speaking crushing [0075] 17 Cutting blade [0076] 18 Influx channel for fluid (bottom) [0077] 19 Outlet channel [0078] 20 Influx channel for fluid (top) [0079] 21 Gap for abraded material [0080] 22 Cable channel for sensors which lead to the tool [0081] 23 Pretensioning element for axial adjustment 7 [0082] 24 Adjustment nut for the travel of the axial adjustment 7 [0083] 25 Guiding element (thread function) [0084] 26 Adjustment drive [0085] 27 Temperature sensor