Riveting device for precision assembly
10518392 ยท 2019-12-31
Assignee
Inventors
Cpc classification
B21J15/14
PERFORMING OPERATIONS; TRANSPORTING
B21J15/04
PERFORMING OPERATIONS; TRANSPORTING
B26B17/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21J15/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A riveting device for mutual assembly of two parts each including a bore, where the device includes a non-deformable external rivet having a tubular body suitable for being inserted into said bores and provided on one of the longitudinal ends thereof with a lip, and an internal rivet having a solid deformable cylindrical body and issuing substantially perpendicular from a flange, said tubular body having an external diameter slightly less than the diameter of said bores and a length D between the rear face of the lip thereof and the opposite end thereof at most equal to the sum of the thicknesses of the parts, said cylindrical body having an external homothetic transverse cross-section slightly less than the internal transverse cross-section of the tubular body, and a length slightly greater than that of the tubular body.
Claims
1. A riveting arrangement for assembling together two articulated parts each comprising a bore, said two parts being articulated about the axis of said bores, said arrangement comprising: an external rivet comprising a hollow tubular body with a circular external cross section configured to be simultaneously inserted in the bore of the two parts and a lip arranged at one longitudinal end of a plurality of longitudinal ends of the hollow tubular body, said tubular body having an outside diameter slightly less than the diameter of said bores and a length D between a rear face of the lip and a longitudinal end opposite of said lip no more than the sum of the length of the bore of the two parts, and an internal rivet comprising a solid cylindrical body configured to be inserted inside the hollow tubular body of the external rivet and a flange arranged perpendicularly at one of a plurality of longitudinal ends of the solid cylindrical body, said cylindrical body having an external cross section with a shape that is homothetic to the shape of an internal cross section of the hollow tubular body and with dimensions slightly less than the said internal cross section wherein the external rivet is non-deformable and the cylindrical body of the internal rivet is deformable in order to crimp the internal rivet on said external rivet and has a length greater than that of the tubular body when the riveting device is placed on the parts to be assembled when the rear face of said lip is in contact with one of said parts and a rear face of said flange is in contact with the other one of said parts.
2. The riveting arrangement according to claim 1, wherein the external cross section of said cylindrical body and internal cross section of the tubular body are circular.
3. The riveting arrangement according to claim 1, wherein the tubular body comprises, on a lip side, a bevel provided along an internal circular edge.
4. The riveting arrangement according to claim 1, wherein the internal rivet comprises a punch hole on a front face of the flange.
Description
SUMMARY DESCRIPTION OF THE FIGURES
(1) Other advantages and features will emerge more clearly from the following description of a particular example embodiment given by way of non-limitative example, of a riveting device for assembling the articulated arms of a hand tool according to the invention, with reference to the accompanying drawings, in which:
(2)
(3)
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BEST WAY OF IMPLEMENTING THE TECHNICAL INVENTION
(5) With reference to
(6) Said riveting device 1 comprises an external rivet 11 comprising a tubular body 12 with a circular external cross section provided at one of its longitudinal ends with a lip 13 roughly annular in shape, and an internal rivet 14 comprising a solid cylindrical body 15 issuing substantially perpendicularly from the rear face 161 of a flange 16 in the general form of a disc.
(7) Here rear face means the face of the flange 16 of the internal rivet 14 or of the lip 13 of the external rivet 11 that is situated on the same side as the associated arm 2 when the hand tool 3 is assembled by means of the riveting device 1 according to the invention, and front face means the opposite face.
(8) It will be understood clearly that the front face 132 of the lip 13 of the external rivet 11 and or the front face 162 of the flange 16 of the internal rivet 14 are advantageously planar. However, they could also be non-planar, in order to adapt to the parts 2 to be assembled, and be for example frustoconical, without departing from the scope of the present invention.
(9) The outside diameter of the tubular body 12 of the external rivet 11 is slightly less than the diameter of the bores 7 of the arms 2 of the hand tool 3 to be assembled, so as to allow the sliding of said external rivet 11 inside the bores 7. Furthermore, the length D between the rear face 131 of its lip 13 and the opposite end of its tubular body 12 (cf.
(10) Likewise, the cylindrical body 15 of the internal rivet 14 has firstly an outside diameter slightly less than the inside diameter of the tubular body 12 of the external rivet 11, so as to allow sliding of said internal rivet 14 inside the external rivet 11, and secondly a length slightly greater than that of the tubular body 12 of the external rivet 11 so that, when the riveting device is placed on the parts 2 to be assembled, the internal rivet 14 then being inserted in the external rivet 11 until the respective rear faces 131 and 161 of the lip 13 and of the flange 16 come into abutment against the parts 2, its cylindrical body 15 extends beyond the other end of said tubular body 12 (cf.
(11) Moreover, the cylindrical body 15 of the internal rivet 14 is deformable and the external rivet 11 is on the other hand non-deformable. Here non-deformable means the fact that the associated element is not deformed when it is subjected to the forces used to assemble said riveting device 1.
(12) To do this, the external rivet 11, which is, like the internal rivet 14, preferably metal, undergoes heat treatments so as to prevent any deformation under the action of the forces used to assemble together said external 11 and internal 14 rivets.
(13) A person skilled in the art will have no difficulty in choosing the metals and heat treatment suitable for producing the external 11 and internal 14 rivets according in particular to their dimensions and the forces to be used.
(14) Moreover, the internal cross section of the tubular body 12 of the external rivet 11 and the external cross section of the cylindrical body 15 of the internal rivet 14 may not be circular without departing from the scope of the present invention.
(15) With this configuration, in order to assemble the two arms 2 of the hand tool 3, the following procedure is used: the external rivet 11 is inserted simultaneously in the bore 7 of each the two arms 2 of the hand tool 3 until the rear face 131 of its lip 13 comes into contact with one of said arms 2, the latter being positioned with respect to each other in accordance with
(16) It will be understood clearly that, with the riveting device 1 according to the invention, only the free end of the cylindrical body 15 deforms, which makes it possible to control the deformation operation and to guarantee the correct functioning of the articulation of said arms 2 since the external rivet 11 is non-deformable under the action or the forces used and the outside diameter of its tubular body 12 remains invariable and guarantees the necessary clearance for the correct functioning of the articulation of said arms 2.
(17) Moreover, the parts 2 are not clamped together since only the cylindrical body 15 is deformable and the quantity of material to be deformed, in order to provide the clamping between the external 11 and internal 14 rivets, is minimal, namely the free end of the cylindrical body 15 of the internal rivet 14 then projecting slightly from the external rivet 11. It is therefore necessary for the press to be adjusted so that its compression force is just sufficient for the tool to be able to deform only the free end of the cylindrical body 15 and for the progression of said tool to stop when it comes into contact with the lip 13 of the external rivet 11. This is because, since the external rivet 11 is non-deformable and therefore stronger than the cylindrical body 15, it would be necessary to use a compression force slightly higher than that necessary for the deformation of the free end of the cylindrical body 15, which is not possible because of the adjustment of the press.
(18) With this configuration of the riveting device 1, it is possible to obtain a very precise assembly of the two arms 2 since said outside diameter of the tubular body 12 of the external rivet 11 can be achieved with a precision of around 1/100.sup.th of a millimetre.
(19) Thus the risks related to the clamping of the two arms 2 together, to their deformation and to their relative movement are in fact non-existent, since the forces are exerted only on the free end of the cylindrical body 15 of the internal rivet 14 and the separation between the rear faces of the lips 13 and flange 6 is guaranteed by the non-deformability of the external rivet 11.
(20) The riveting device 1 makes it possible to avoid any reworking of the working member 6 of the hand tool 3 after assembly of its arms 2 together, and therefore to be able to automate the manufacture of the hand tool 3 by assembling its arms 2 of the end of their final machining.
(21) Likewise, the non-deformable external rivet 11 avoids any unwanted deformation of the internal rivet 14, that is to say other than that of the free end of its cylindrical body 15.
(22) To facilitate the deformation of said free end of the cylindrical body 15, the tubular body 12 comprises, on the lip 13 side, a bevel 17 provided along its internal circular edge.
(23) Finally, the front face 162 of the flange 16 of the internal rivet 14 preferably comprises a punch hole 18 making it possible to correctly position the riveting device 1 under the press tool when said internal rivet 14 is crimped on the external rivet 11.
INDUSTRIAL APPLICABILITY
(24) It will be understood clearly that the riveting device according to the invention can be used for any type of tool other than a hand tool 3 of the pliers or similar type. Likewise, it is quite obvious that the riveting device 1 according to the invention can be adapted to assemble two parts articulated on each other or not and belonging to any other type of technical mechanism such as for example a motor or a lift.
(25) Finally, it goes without saying that the examples of a riveting device 1 according to the invention that has just been described are merely particular illustrations, in no case limitative of the invention.