METHOD OF FASTENING A FASTENING ELEMENT TO A WORKPIECE
20200406339 · 2020-12-31
Inventors
Cpc classification
B21J15/36
PERFORMING OPERATIONS; TRANSPORTING
F16B37/068
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B21J15/38
PERFORMING OPERATIONS; TRANSPORTING
F16B37/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B21J15/36
PERFORMING OPERATIONS; TRANSPORTING
B21J15/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to a method of fastening a fastening element to a workpiece by means of a setting device, wherein the fastening element and/or the workpiece is/are at least sectionally reshaped during the fastening, and wherein a lubricant is used that is free of grease and free of oil, in particular with the lubricant being a substance mixture of two or more substances.
Claims
1. A method of fastening a fastening element to a workpiece by means of a setting device, wherein at least one of the fastening element and the workpiece is at least sectionally reshaped during the fastening, and wherein a lubricant is used that is free of grease and free of oil.
2. The method in accordance with claim 1, wherein the lubricant is a substance mixture of two or more substances.
3. The method in accordance with claim 1, wherein at least one of the fastening element and the workpiece is at least partly metallic at least in a region around a fastening point at which the fastening element is connected to the workpiece.
4. The method in accordance with claim 3, wherein at least one of the fastening element and the workpiece is completely composed of metal.
5. The method in accordance with claim 1, wherein the fastening element is a rivet element.
6. The method in accordance with claim 1, wherein the workpiece is a sheet metal part.
7. The method in accordance with claim 1, wherein the lubricant is a water-soluble and/or water-based lubricant.
8. The method in accordance with claim 1, wherein the lubricant comprises at least one of a corrosion inhibitor and a wear protection additive.
9. The method in accordance with claim 1, wherein the lubricant is free of at least one of chlorine, Teflon and aromatic compounds.
10. The method in accordance with claim 1, wherein a die is provided for reshaping at least one of the fastening element and the workpiece.
11. The method in accordance with claim 1, wherein at least one of the fastening element, the workpiece is wetted with the lubricant at least in a region around a fastening point at which the fastening element is connected to the workpiece.
12. The method in accordance with claim 11, wherein at least one of the fastening element, the workpiece is sprayed with the lubricant at least in a region around a fastening point at which the fastening element is connected to the workpiece.
13. The method in accordance with claim 10, wherein at least one of the fastening element, the workpiece and the die is wetted with the lubricant at least in a region around a fastening point at which the fastening element is connected to the workpiece.
14. The method in accordance with claim 13, wherein at least one of the fastening element, the workpiece and the die is sprayed with the lubricant at least in a region around a fastening point at which the fastening element is connected to the workpiece.
15. The method in accordance with claim 10, wherein the die has at least one opening by which lubricant can be supplied to the fastening point.
16. The method in accordance with claim 15, wherein the at least one opening is a nozzle.
17. A system for fastening a fastening element to a workpiece by means of a setting device, wherein at least one of the fastening element and the workpiece is at least sectionally reshaped during the fastening; and wherein a lubricant application device is provided that is adapted and configured to apply a grease-free and oil-free lubricant to at least one of the workpiece and the fastening element.
18. The system in accordance with claim 17, further comprising a die for reshaping at least one of the fastening element and the workpiece.
19. The system in accordance with claim 18, wherein the lubricant application device is adapted and configured to apply a grease-free and oil-free lubricant to the die.
Description
[0022] The present invention will be described in the following purely by way of example with reference to an advantageous embodiment of the invention and to the enclosed drawings. There are shown:
[0023]
[0024]
[0025]
[0026] This means that the spacers 16 do not move in the course of the fastening process.
[0027] The arrangement of
[0028] The spacers 16 extend in parallel with the axis A, wherein the spacers are, for example, screwed or inserted into corresponding bores 17 of the die 14 and are therefore releasably connected thereto. The spacers 16 are each made in the manner of pins and have an end section 20 that projects out of a contact surface 18 of the die 14. The length of the end sections 20 is set uniformly such that the sheet metal part 12 is horizontally supported on the spacers 16, i.e. perpendicular to the axis A. A spacing D is thereby set between a lower side 21 of the sheet metal part 12i.e. the side of the sheet metal part 12 facing the contact surface 18and the contact surface 18. Each end section 20 comprises a substantially convex support surface 22 facing the sheet metal part 12.
[0029] The spacing D can be adapted by an adjustment of the spacers 16 if necessary, e.g. if a different rivet element 10 should be used. The adjustment can, for example, take place by selecting a suitable screw-in depth or insertion depth (possibly bounded by an adjustable abutment) of the spacers 16.
[0030] The die 14 has a conical punch 24 that partly projects into a circular hole 26 provided at the sheet metal part 12. The axis A extends through the corresponding centers of the punch 24 and of the hole 26. In this respect, the axis A is thus an axis of symmetry for the sheet metal part 12at least in the region around the hole 26and for the die 14. The hole 26 was produced before the fastening process described here.
[0031] The sheet metal part 12 is planar in the region around the hole 26 and does not have a flare in this region. Optionally, however, the sheet metal part 12 can also be completely planaras in the embodiment described here. However, this does not necessarily have to be the case.
[0032] A gap 30 is formed between a wall 28 of the hole 26 of the sheet metal part 12 and the lower side 21 of the sheet metal part 12, on the one hand, and the punch 24, on the other hand.
[0033] The rivet element 10 arranged above the sheet metal part 12 has a rivet section 32 that extends away from a flange section 36 of the rivet element 10 in the axial direction and that has an end edge 34 that is rounded at the outside and conical at the inside. A functional section that supports the thread 11 at least in part is provided at the other side of the flange sections 36. The rivet element 10 is a nut element.
[0034] A peripheral groove 38 is provided in a transition region between the flange section 36 and the rivet section 32.
[0035] The outer diameter of the rivet section 32 is slightly smaller than the diameter of the hole 26 so that the rivet section 32 can be inserted into the hole 26. Starting from the state shown in
[0036]
[0037] The rivet element 10 is displaced further in the direction toward the die 14 during the reshaping of the rivet section 32, wherein the flange section 36 comes into contact with a contact surface 37 at the sheet metal part 12. The length of the rivet section 32 or the spacing D is adapted such that the flange section 36 only comes into contact with the sheet metal part 12 when the rivet section 32 at least partly engages behind the sheet metal part 12 in the course of the reshaping, in particular when the reshaping that produces the engagement behind is completed.
[0038] The rivet element 10 is now moved further in the direction toward the die 14, wherein the sheet metal part 12 is moved along in the direction toward the contact surface 18 of the die 14. In this respect, the sheet metal part 12 is deformed locally in the region of the spacers 16 so that the end sections 20 of the spacers 16 engage into the sheet metal part 12 and the sheet metal part 12 comes into contact with the contact surface 18. In this connection, the end sections 20 of the spacers 16 that deform the sheet metal part 12 cause a respective elevated portion 41 of the sheet metal part 12 at the side remote from the die 14, as will be explained in more detail further below.
[0039] In
[0040] As mentioned above, the end sections 20 of the spacers 16 engage into the sheet metal part 12 in the course of the movement of the sheet metal part 12 toward the contact surface 18 of the die 14. As a result, the already mentioned elevated portions 41 are thereby produced at the upper side of the sheet metal part 12 (
[0041] To facilitate the insertion of the rivet section 32 into the hole 26 and the reshaping of the rivet section 32, an oil-free and grease-free lubricant is supplied. The lubricant at least sectionally wets the components involved in the fastening processin particular in a region in which a reshaping takes place, whereby the friction occurring between the components is reduced. This also results in a reduction of the loads occurring at the sheet metal part 12, at the die 14, and at the rivet element 10, which has a positive effect on the quality of the connection produced and reduces the wear of the die 14.
[0042] The lubricant can generally be applied to all the components involved. For example, provision can be made to initially only wet the rivet element 10, in particular the rivet section 32, with lubricant. Provision can additionally or alternatively also be made to supply the die 14 with lubricant in the region around the fastening point in order to support the fastening process. The same applies to the sheet metal part 12.
[0043] The lubricant can be provided by one or more suitable spraying apparatus which can be separate devices, for example. However, it is also possible to provide the die 14 and/or the contact surface 18 with at least one opening or nozzle not shown in
REFERENCE NUMERAL LIST
[0044] 10 rivet element [0045] 11 internal thread [0046] 12 sheet metal part [0047] 14 die [0048] 16 spacer [0049] 17 bore [0050] 18 contact surface [0051] 20 end section [0052] 21 lower side of the sheet metal part [0053] 22 support surface [0054] 24 punch [0055] 26 hole [0056] 28 wall [0057] 30 gap [0058] 32 rivet section [0059] 34 end edge [0060] 36 flange section [0061] 37 contact surface [0062] 38 groove [0063] 40 reshaping surface [0064] 41 elevated portion