Method for resisting welding of a first component to a second component
10478913 ยท 2019-11-19
Assignee
Inventors
- Joerg Echtermeyer (Altdorf, DE)
- Guenther Schaechtner (Nuremberg, DE)
- Stefan Kaufmann (Schwabach, DE)
- Peter Andretzky (Erlangen, DE)
Cpc classification
B23K11/002
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for resistance welding a first component to a second component including inserting the second component, at least by a connecting region, into an opening of the first component by a insertion distance and welding the first component to the second component in the process. An internal dimension of the opening and an external dimension of the connecting region are configured similar to a press fit with each other. The insertion distance is limited by an adjustable external distance limiter. A device is configured for resistance welding the first component to the second component.
Claims
1. A method for resistance welding a first component to a second component, the method comprising: inserting at least a connecting region of the second component into an opening of the first component by an insertion distance along an insertion direction; welding the first component to the second component while inserting at least the connecting region of the second component into the opening of the first component by the insertion distance; and limiting the insertion of the connecting region into the opening to the insertion distance, with an adjustable mechanical external distance limiter spaced apart from the first and the second component in a direction perpendicular to the insertion direction, without contacting the first component or the second component with the adjustable mechanical external distance limiter, wherein: an internal dimension of the opening and an external dimension of the connecting region are configured similar to a press fit with each other.
2. The method according to claim 1, further comprising: holding the first component with a first holding device and holding the second component with a second holding device when at least the connecting region of the second component is inserted into opening of the first component, wherein: the adjustable mechanical external distance limiter is fixedly connected to one of the first holding device and the second holding device.
3. The method according to claim 2, wherein the insertion distance is predetermined as a function of an actual distance, defined in the insertion direction, between a section of the first component and a section of the second component and as a function of a setpoint distance, defined in the insertion direction, between the section of the first component and the section of the second component.
4. The method according to claim 1, further comprising: determining the insertion distance before commencing inserting at least the connecting region of the second component into the opening of the first component.
5. The method according to claim 1, wherein welding the first component to the second component includes capacitor discharge press-fit welding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the disclosure are explained below with reference to the drawing. In the drawing:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9) The same designations are also used for functionally equivalent elements and values in all the figures in the different embodiments.
DETAILED DESCRIPTION
(10)
(11) The components 12 and 14 are produced from metal and are electrically conducting. In the present case, the first component 12 has an opening 12a which has an internal dimension 12b perpendicular to an insertion direction 24 which is described further down. The second component 14 has an external dimension 14b which is also defined perpendicularly to the insertion direction 24 and, like in the case of a press fit, is larger for example by 0.1 mm to 1 mm (millimeter) than the internal dimension 12b. For example, the opening 12a in the first component 12 characterizes a cavity which is of circular cylindrical configuration at least in certain sections. Matching this, the second component 14 is configured as a circular cylinder at least in certain sections. Alternatively, the first component 12 and the second component 14 (joining partners) can also have another geometry, and for example can correspond to a truncated cone which deviates by several angular degrees from the circular cylindrical shape.
(12) The device 10 also comprises a bottom electrode 18 which is arranged on the base 16 and is of square configuration, for example. Arranged on the bottom electrode 18 in an electrically conducting manner is the first component 12 which in the view of
(13) Shown in an upper region of
(14) It is understood that the electrical contacting by means of the bottom electrode 18 on the first component 12 or by means of the top electrode 26 on the second component 14 can alternatively or additionally be carried out on a respective side surface or generated surface or on another suitable surface of the first component 12 or of the second component 14. The bottom electrode 18 and top electrode 26 shown in the drawing therefore represent only one of several possible embodiments.
(15) The base 16 together with the bottom electrode 18 form a first holding device 28 for holding the first component 12 before and during the welding process. In a comparable manner, the bridge 22 together with the top electrode 26 form a second holding device 30 for holding the second component 14. Possibly necessary clamping devices or the like, which fix the first component 12 on the bottom electrode 18 or fix the second component 14 on the top electrode 26, are not shown for the sake of clarity.
(16) The device 10 furthermore comprises in the present case two similarly acting, adjustable external mechanical distance limiters 32 which limit an insertion distance 36 (see
(17) Using the described elements, a (vertical) actual distance, defined in the insertion direction 24 in
(18) For example, the first component 12 is an inlet valve of a high-pressure fuel pump and the second component 14 is an actuator for operating the inlet valve. The aforesaid sections on the first component 12 can then be a valve element of the inlet valve and the aforesaid section on the second component 14 can be an end section of a mechanical coupling element of the actuator.
(19)
(20) In the state of the device 10 from
(21) In the initial state from
(22) In the state from
(23) Starting from the determined insertion distance 36 and a known distance (without designation) of the bridge 22 from the base 16, the distance limiters 32, or the stop 50 arranged thereon in each case, can now be mechanically or manually adjusted. This is carried out in such a way that a distance (without designation) betweenin the drawingan upper section (the upper stop 50) of the distance limiters 32 andin the drawinga lower section of the bridge 22 (the underside of the bridge 22) corresponds to the determined insertion distance 36compare
(24) The method shown in
(25)
(26) It is understood that the positions of the first component 12 and of the second component 14 with regard to the device 10 can also be interchanged. Furthermore, only a single distance limiter 32 may also be sufficient.
(27)
(28)
(29)
(30) In one embodiment, which is not shown, the distance limiter 32 is not a mechanical element but a numerical value which in a unit controlling the device 10 can be predetermined as an end value for a (not shown) feed device (press). While the feed device is feeding the second component 12 by the insertion distance 36, the stop 50 can be virtually formed, so to speak, and the insertion distance 36 can consequently be limited in a comparable manner.
(31) It is also understood that in the embodiments according to
(32)
(33) In a first step 60, the first component 12 is fixed by means of the first holding device 28 and the second component 14 is fixed by means of the second holding device 30. In a second step 62, the actual distance between a section of the first component 12 and a section of the second component 14 is determined. In a third step 64, the insertion distance 36 is determined from the actual distance and the setpoint distance. In a fourth step 66, the distance limiter(s) 32 is or are adjusted. In a fifth step 68, the first and the second holding devices 28 and 30 are moved towards each other by displacement of the bridge 22, wherein the components 12 and 14 come into contact and for a short period a very high (discharging) current flows. In this case, the second component 14, by the connecting region (dimension 38), is inserted by the insertion distance 36 into the opening 12a of the first component 12 and welded at the same time. In a sixth step 70, the insertion distance 36 is limited by the action of the distance limiters 32 and the welding of the first component 12 to the second component 14 is therefore finished.