EP4534247B1 - Montagewerkzeug für selbstschneidende nietbefestigung - Google Patents
Montagewerkzeug für selbstschneidende nietbefestigungInfo
- Publication number
- EP4534247B1 EP4534247B1 EP23201203.9A EP23201203A EP4534247B1 EP 4534247 B1 EP4534247 B1 EP 4534247B1 EP 23201203 A EP23201203 A EP 23201203A EP 4534247 B1 EP4534247 B1 EP 4534247B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- orifice
- switcher
- drive rod
- transmission shaft
- hexagonal
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25B—TOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING, OR HOLDING
- B25B27/00—Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for
- B25B27/0007—Tools for fixing internally screw-threaded tubular fasteners
- B25B27/0014—Tools for fixing internally screw-threaded tubular fasteners motor-driven
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21J—FORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
- B21J15/00—Riveting
- B21J15/02—Riveting procedures
- B21J15/04—Riveting hollow rivets mechanically
- B21J15/043—Riveting hollow rivets mechanically by pulling a mandrel
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21J—FORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
- B21J15/00—Riveting
- B21J15/02—Riveting procedures
- B21J15/04—Riveting hollow rivets mechanically
- B21J15/048—Setting self-drilling hollow rivets
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21J—FORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
- B21J15/00—Riveting
- B21J15/10—Riveting machines
- B21J15/105—Portable riveters
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25B—TOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING, OR HOLDING
- B25B23/00—Details of, or accessories for, spanners, wrenches, screwdrivers
- B25B23/0007—Connections or joints between tool parts
- B25B23/0035—Connection means between socket or screwdriver bit and tool
Definitions
- the present disclosure relates to an installation tool for a self-tapping rivet fastener which is capable of drilling a hole and riveting a nut of the workpiece.
- a conventional electric riveting tool is applied to connect, rivet, and fasten two workpieces (such as two plates).
- a conventional manual riveting tool is used to drill a hole between the two plates, then a fastener is received in the hole, and the riveting tool pulls a central rod of the fastener toward a user, thus deformably riveting the two plates together.
- the central rod of the fastener is pulled by a pull grip of the riveting tool to press a riveting sleeve to deform and fasten.
- a conventional self-tapping riveting fastener is disclosed in AU 2009201415A1 and is applied to drill a hole and rivet a workpiece, thus reducing an operation of drilling a hole efficiently.
- the riveting tool is classified to a pneumatic driven type and an electric driven type, so an air compressor is required, and it is not suitable for outdoor construction situations or general DIY users.
- the pneumatic and electric driven riveting tool cannot be used to drill a hole, therefore drilling the hole on the workpiece in advance is required, and then the fastener is driven by the riveting tool to fasten the workpiece, thus causing troublesome operation.
- An installation tool for a self-tapping rivet fastener showing a different configuration that the one of the present invention can be seen in US 3 412 594 A .
- the present invention has arisen to mitigate and/or obviate the aforedescribed disadvantages.
- a primary aspect of the present invention is to provide an installation tool for a self-tapping rivet fastener which is capable of drilling a hole and riveting a nut of the workpiece.
- an installation tool for a self-tapping rivet fastener contains: a body, a movable sleeve, a handle, a single-direction thrust bearing, a switcher, a drive rod, a transmission shaft, a cap, a locking element, and a screw nut.
- the body includes the movable sleeve on which the handle is fixed.
- the body also includes the switcher received therein and having the drive rod and the transmission shaft which are accommodated on the switcher and screwed with each other.
- the locking element is mounted on the outer wall of the transmission shaft and is configured to replace corresponding to different central rods of the riveting fasteners.
- the body also includes two slots for accommodating two slide blocks. The respective one slide block has a notch connected with the switcher. The movable sleeve and the two slide blocks actuate the switcher to move axially, and the body includes the positioning orifice corresponding to the coupling portion of the switcher.
- the coupling portion of the switcher is driven to remove from the positioning orifice of the body so that and the switcher and the transmission shaft are driven by the drive rod simultaneously to rotate, thus drilling the drilled hole of the workpiece.
- the installation tool of the present invention is capable of drilling and riveting the workpiece.
- the positioning orifice of the body is formed in a hexagon shape to correspond to the coupling portion of the switcher which is hexagonal.
- the defining hole of the switcher is hexagonal to correspond to the fixing portion of the drive rod which is hexagonal.
- the defining hole of the switcher is hexagonal to correspond to the connecting portion of the transmission shaft which is hexagonal.
- the shank of the drive rod is hexagonal.
- the driving portion of the locking element is hexagonal.
- FIG. 1 is a perspective view showing the assembly of an installation tool for a self-tapping rivet fastener according to a preferred embodiment of the present invention.
- FIG. 2 is a perspective view showing the exploded components of the installation tool for the self-tapping rivet fastener according to the preferred embodiment of the present invention.
- FIG. 3 is a cross sectional view showing the assembly of the installation tool for the self-tapping rivet fastener according to the preferred embodiment of the present invention.
- FIG. 4 is a cross sectional view taken along the lint M-M of FIG. 3 .
- FIG. 5 is a cross sectional view showing the application of the installation tool for the self-tapping rivet fastener according to the preferred embodiment of the present invention.
- the installation tool for the self-tapping rivet fastener comprises: a body 10, a movable sleeve 20, a handle 30, a single-direction thrust bearing 40, a switcher 50, a drive rod 60, a transmission shaft 70, a cap 80, a locking element 90, and a screw nut 100.
- the body 10 includes multiple ribs 11 equidistantly formed on an outer wall thereof and configured to slidably fit with the movable sleeve 20, two protrusions 12 formed on two ribs 11 of the multiple ribs 11 and configured to engage with the movable sleeve 20, two slots 13 defined between the two ribs 11 and configured to receive two slide blocks 14, a circular orifice 15 defined on an inner wall of the body 10 and corresponding to the movable sleeve 20, a stepped fringe 16 formed in the circular orifice 15 and configured to accommodate the single-direction thrust bearing 40, a positioning orifice 17 formed in a hexagon shape and defined in the body 10 opposite to the circular orifice 15, a threaded section 18 formed in an and of the body 10, connected with the positioning orifice 17 and screwed with the cap 80, and a connection groove 19 defined on the other end of the body 10 and configured to engage with a C-shaped retainer C1, characterized in that a respective one slide block 14 has a
- An inner diameter of the movable sleeve 20 is equal to an outer diameter of the body 10, and the movable sleeve 20 includes multiple recesses 21 defined on an inner wall thereof and corresponding to the multiple ribs 11 of the body 10 so that the movable sleeve 20 is fitted with and moves forward and backward on the outer wall of the body 10 by slidably fitting the multiple recesses 21 with the multiple ribs 11.
- the movable sleeve 20 further includes two trenches 22 corresponding to and engaged with the two protrusions 12 of the body 10 so as to connect the movable sleeve 20 with the body 10.
- the handle 30 includes a hollowly circular fitting portion 31, characterized in that an inner diameter of the fitting portion 31 is equal to an outer diameter of the two protrusions 12 so that the fitting portion 31 of the handle 30 is fitted with the two protrusions 12 of the body 10, thus connecting the handle 30 with the body 10.
- the fitting portion 31 has a grip extension 32 extending outward therefrom and configured to be held by a user.
- the single-direction thrust bearing 40 includes a central orifice 41 configured to rotatably connect with the drive rod 60, characterized in that an outer diameter of the single-direction thrust bearing 40 is equal to an inner diameter of the circular orifice 15 of the body 10.
- the single-direction thrust bearing 40 is fixed on the stepped fringe 16, and the single-direction thrust bearing 40 includes multiple rolling balls 42 arranged on an outer wall thereof and configured to actuate the drive rod 60 to thrust in a single direction.
- the switcher 50 includes a hexagonal coupling portion 51 corresponding to the positioning orifice 17 of the body 10, a connection flange 52 corresponding to and engaged with the notch 141 of the respective one slide block 14 so that the respective one slide block 14 actuates the switcher 50 to move forward and backward, the hexagonal coupling portion 51 of the switcher 50 removes from or connects with the positioning orifice 17 of the body 10, thus switching to drill and rivet a workpiece.
- the switcher 50 includes a hexagonal defining hole 53 defined on an end thereof, corresponding to the movable sleeve 20, and configured to fit with the drive rod 60.
- the switcher 50 further includes a circular fitting hole 54 defined on the other end thereof and configured to fit with the transmission shaft 70.
- the drive rod 60 includes a hexagonal shank 61 extending from an end thereof and configured to fit with an electric driving tool 1, the drive rod 60 includes a positioning fringe 62 formed adjacent to the hexagonal shank 61 and corresponding to the single-direction thrust bearing 40, characterized in that the drive rod 60 is rotatably fitted in the central orifice 41 of the single-direction thrust bearing 40, and the positioning fringe 62 is mounted on the outer wall of the single-direction thrust bearing 40.
- the drive rod 60 further includes a hexagonal fixing portion 63 formed on the other end thereof and corresponding to and connected with the hexagonal defining hole 53 of the switcher 50 so that the hexagonal defining hole 53 of the switcher 50 connects with or removes from the hexagonal fixing portion 63 of the drive rod 60, thus switching to drill a drilled hole and rivet a nut of the workpiece.
- the drive rod 60 includes threads 64 corresponding to and screwed with the transmission shaft 70, a first radial orifice 65 defined on the hexagonal fixing portion 63 and configured to fit with a first locating spring S1 and a first steel ball R1 which is received in the hexagonal defining hole 53 of the switcher 50.
- the drive rod 60 further includes a locking groove 66 connected with the hexagonal fixing portion 63 and configured to engage with a C-shaped retainer C2.
- the transmission shaft 70 includes a threaded orifice 71 defined on a center thereof and corresponding to and screwed with the threads 64 of the drive rod 60, the transmission shaft 70 includes a hexagonal connecting portion 72 formed on an end thereof and corresponding to and connected with the hexagonal defining hole 53 of the switcher 50 so that the hexagonal defining hole 53 of the switcher 50 connects with or removes from the hexagonal fixing portion 63 of the drive rod 60, thus switching to drill and rivet the workpiece.
- the transmission shaft 70 further includes a shoulder 73 extending from an outer wall thereof, a screwing orifice 74 formed on the other end of the transmission shaft 70 and corresponding to and screwed with the locking element 90, a second radial orifice 75 configured to fit with a second locating spring S2 and a second steel ball R2 which is received in the hexagonal defining hole 53 of the switcher 50.
- the cap 80 is hollow, and the cap 80 includes an external threaded portion 81 formed on an end thereof and corresponding to and screwed with the threaded section 18 of the body 10, an axial orifice 82 defined in the cap 80, and a screwing orifice 83 formed on the other end of the cap 80, corresponding to the locking element 90 and screwed with the screw nut 100.
- the locking element 90 includes a threaded extension 91 formed on an end thereof and corresponding to the screwing orifice 74 of the transmission shaft 70, a hexagonal driving portion 92 corresponding to the threaded extension 91 and configured to screw the threaded extension 91 with the screwing orifice 74, and a threaded aperture 93 formed on the other end of the locking element 90 and configured to screw with the self-tapping threads 204.
- the screw nut 100 includes a screwing section 101 formed on an end thereof, corresponding to and screwed with the screwing orifice 83 of the cap 80, characterized in that the screw nut 100 includes a hexagonal head configured to screw the screwing section 101 of the screw nut 100 with the screwing orifice 83 of the cap 80, and the screw nut 100 includes a receiving orifice 102 defined in a center thereof so that the threaded aperture 93 of the locking element 90 extends out of the receiving orifice 102.
- the self-tapping rivet 200 includes a drilling cutter 201 extending from an end thereof, a deformable portion 202 extending from an end of the drilling cutter 201, a stop flange 203 extending from a rear end of the deformable portion 202, and the self-tapping threads 204 formed on the other end of the drilling cutter 201, characterized in that an end of the self-tapping threads 204 opposite to the drilling cutter 201 is screwed with the threaded aperture 93 of the locking element 90.
- FIG. 6 is a cross sectional view showing the application of the installation tool according to the preferred embodiment of the present invention.
- FIG. 8 is a cross sectional view taken along the line B-B of FIG. 5 .
- the movable sleeve 20 actuates the two slide blocks 14 and the switcher 50 to move rearward so that the circular fitting hole 54 of the switcher 50 removes from the positioning orifice 17 of the body 10, and the hexagonal defining hole 53 and the hexagonal fixing portion 63 are connected with the hexagonal connecting portion 72, hence the switcher 50 and the transmission shaft 70 are driven by the drive rod 60 to rotate simultaneously to drill the workpiece (such as a plate 2), and the drilling cutter 201 of the self-tapping rivet 200 is tapped into the plate 2 to drill the drilled hole 3.
- the workpiece such as a plate 2
- FIG. 7 is a cross sectional view showing another application of the installation tool according to the preferred embodiment of the present invention.
- FIG. 9 is a cross sectional view taken along the line E-E of FIG. 6 .
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Insertion Pins And Rivets (AREA)
Claims (6)
- Ein Montagewerkzeug für eine selbstschneidende Nietbefestigung, umfassend: einen Körper (10), eine bewegliche Hülse (20), einen Griff (30), ein unidirektionales Axiallagerelement (40), einen Umschalter (50), eine Antriebsstange (60), eine Übertragungswelle (70), eine Kappe (80), ein Verriegelungselement (90) und eine Mutter (100);
wobeider Körper (10) mehrere Rippen (11) aufweist, die in gleichmäßigen Abständen an einer Außenwand ausgebildet sind und so ausgestaltet sind, dass sie sich gleitend mit der beweglichen Hülse (20) verbinden; zwei Vorsprünge (12), die an zwei Rippen (11) der mehreren Rippen (11) ausgebildet sind und zur Verbindung mit der beweglichen Hülse (20) ausgestaltet sind, zwei Nuten (13), die zwischen den Rippen (11) ausgebildet sind und zur Aufnahme von zwei Gleitblöcken (14) dienen; eine Kreisöffnung (15), die an einer Innenwand des Körpers (10) ausgebildet ist und der beweglichen Hülse (20) entspricht, einen abgestuften Rand (16), der in der Kreisöffnung (15) ausgebildet ist und zur Aufnahme des unidirektionalen Axiallagerelements (40) dient, eine Positionieröffnung (17), die im Körper (10) gegenüber der Kreisöffnung (15) ausgebildet ist, einen Gewindeabschnitt (18), der an einem Ende des Körpers (10) ausgebildet ist, mit der Positionieröffnung (17) verbunden ist und mit der Kappe (80) verschraubt ist, sowie eine Verbindungsnut (19), die am anderen Ende des Körpers (10) ausgebildet ist und zur Aufnahme eines C-förmigen Sicherungselements (C1) dient,
wobeiein jeweiliger Gleitblock (14) einen Schlitz (141) aufweist, der der Kreisöffnung (15) entspricht und mit dem Umschalter (50) verbunden ist;ein Innendurchmesser der beweglichen Hülse (20) gleich einem Außendurchmesser des Körpers (10) ist, wobei sich die bewegliche Hülse (20) entlang der Außenwand des Körpers (10) vor- und zurückbewegen kann;der Griff (30) einen hohlzylindrischen Befestigungsabschnitt (31) aufweist, der zur Verbindung mit dem Körper (10) ausgelegt ist, wobei der Befestigungsabschnitt (31) eine Greiferweiterung (32) aufweist, die sich nach außen erstreckt;der Umschalter (50) eine Kupplungseinheit (51) aufweist, die der Positionieröffnung (17) des Körpers (10) entspricht, sowie einen Anschlussflansch (52), der dem Schlitz (141) des jeweiligen Gleitblocks (14) entspricht und mit diesem in Eingriff ist, sodass der jeweilige Gleitblock (14) den Umschalter (50) vor- und zurückbewegt, wobei die Kupplungseinheit (51) des Umschalters (50) aus der Positionieröffnung (17) des Körpers (10) entfernt wird oder mit dieser in Eingriff gebracht wird, um zwischen Bohren und Nieten eines Werkstücks umzuschalten;
wobeider Umschalter (50) ein Definitionsloch (53) an einem Ende aufweist, das der beweglichen Hülse (20) entspricht und zur Aufnahme der Antriebsstange (60) ausgelegt ist; und wobei der Umschalter (50) ferner ein Passloch (54) an seinem anderen Ende aufweist, das zur Aufnahme der Übertragungswelle (70) dient; die Antriebsstange (60) einen Schaft (61) aufweist, der sich von einem Ende erstreckt und zur Verbindung mit einem elektrischen Antriebswerkzeug (1) geeignet ist, wobei die Antriebsstange (60) einen Positionierrand (62) aufweist, der an den Schaft (61) angrenzt und dem unidirektionalen Axiallagerelement (40) entspricht,
wobeider Schaft (61) der Antriebsstange (60) drehbar in einer Zentralöffnung (41) des unidirektionalen Axiallagerelements (40) aufgenommen ist und der Positionierrand (62) an der Außenwand des Axiallagerelements (40) montiert ist; die Antriebsstange (60) ferner einen Befestigungsabschnitt (63) aufweist, der an ihrem anderen Ende ausgebildet ist und mit dem Definitionsloch (53) des Umschalters (50) verbunden ist, sodass das Definitionsloch (53) des Umschalters (50) mit dem Befestigungsabschnitt (63) der Antriebsstange (60) verbunden oder davon gelöst werden kann, um zwischen Bohren eines Lochs und Nieten einer Mutter des Werkstücks umzuschalten; die Antriebsstange (60) ein Gewinde (64) aufweist, das dem Gewinde der Übertragungswelle (70) entspricht und mit diesem verschraubt ist, sowie eine erste radiale Öffnung (65), die am Befestigungsabschnitt (63) ausgebildet ist und zur Aufnahme einer ersten Positionierfeder (S1) und einer ersten Stahlkugel (R1) dient, die im Definitionsloch (53) des Umschalters (50) aufgenommen ist; und die Antriebsstange (60) weiterhin eine Verriegelungsnut (66) aufweist, die mit dem Befestigungsabschnitt (63) verbunden ist und zur Aufnahme eines C-förmigen Sicherungselements (C2) dient;die Übertragungswelle (70) ein Gewindeloch (71) aufweist, das in ihrer Mitte ausgebildet ist und mit dem Gewinde (64) der Antriebsstange (60) verschraubt ist, sowie einen Verbindungsteil (72), der an einem Ende der Übertragungswelle (70) ausgebildet ist und mit dem Definitionsloch (53) des Umschalters (50) verbunden ist, sodass das Definitionsloch (53) des Umschalters (50) mit dem Befestigungsabschnitt (63) der Antriebsstange (60) verbunden oder davon gelöst werden kann, um zwischen Bohren und Nieten des Werkstücks umzuschalten; die Übertragungswelle (70) ferner eine Schulter (73) aufweist, die sich von einer Außenwand der Übertragungswelle erstreckt, ein Schraubloch (74), das an einem anderen Ende der Übertragungswelle (70) ausgebildet ist und zur Verbindung mit dem Verriegelungselement (90) dient, sowie eine zweite radiale Öffnung (75), die in der Übertragungswelle ausgebildet ist und zur Aufnahme einer zweiten Positionierfeder (S2) und einer zweiten Stahlkugel (R2) dient, welche im Definitionsloch (53) des Umschalters (50) aufgenommen sind;die Kappe (80) hohl ist und einen äußeren Gewindeabschnitt (81) aufweist, der an einem Ende der Kappe (80) ausgebildet ist und mit dem Gewindeabschnitt (18) des Körpers (10) verschraubt ist, sowie ein Schraubloch (83), das an dem anderen Ende der Kappe (80) ausgebildet ist, dem Verriegelungselement (90) entspricht und mit der Mutter (100) verschraubt ist, wobei das Schraubloch (83) Teil der Kappe (80) ist;das Verriegelungselement (90) umfasst eine Gewindeverlängerung (91), die an einem Ende ausgebildet ist und dem Schraubloch (74) der Übertragungswelle (70) entspricht, eine Antriebseinheit (92), die der Gewindeverlängerung (91) entspricht und so ausgestaltet ist, dass sie die Gewindeverlängerung (91) in das Schraubloch (74) eindreht, und eine Gewindeöffnung (93), die an dem anderen Ende des Verriegelungselements (90) ausgebildet ist; unddie Mutter (100) einen Schraubabschnitt (101) aufweist, der an einem Ende ausgebildet ist und mit dem Schraubloch (83) der Kappe (80) verschraubt ist, wobei die Mutter (100) ferner eine Aufnahmeöffnung (102) aufweist, die in ihrem Zentrum ausgebildet ist, sodass die Gewindeöffnung (93) des Verriegelungselements (90) aus der Aufnahmeöffnung (102) hervorsteht. - Das Montagewerkzeug nach Anspruch 1, dadurch gekennzeichnet, dass die Positionieröffnung (17) des Körpers (10) sechseckig ausgebildet ist, um der Kupplungseinheit (51) des Umschalters (50) zu entsprechen, die ebenfalls sechseckig ist.
- Das Montagewerkzeug nach Anspruch 1, dadurch gekennzeichnet, dass das Definitionsloch (53) des Umschalters (50) sechseckig ausgebildet ist, um der Befestigungseinheit (63) der Antriebsstange (60) zu entsprechen, die ebenfalls sechseckig ist.
- Das Montagewerkzeug nach Anspruch 1, dadurch gekennzeichnet, dass das Definitionsloch (53) des Umschalters (50) sechseckig ausgebildet ist, um der Verbindungseinheit (72) der Übertragungswelle (70) zu entsprechen, die ebenfalls sechseckig ist.
- Das Montagewerkzeug nach Anspruch 1, dadurch gekennzeichnet, dass der Schaft (61) der Antriebsstange (60) sechseckig ausgebildet ist.
- Das Montagewerkzeug nach Anspruch 1, dadurch gekennzeichnet, dass die Antriebseinheit (92) des Verriegelungselements (90) sechseckig ausgebildet ist.
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PL23201203.9T PL4534247T3 (pl) | 2023-10-02 | 2023-10-02 | Narzędzie montażowe do samogwintującego łącznika nitowego |
| ES23201203T ES3043733T3 (en) | 2023-10-02 | 2023-10-02 | Installation tool for self-tapping rivet fastener |
| EP23201203.9A EP4534247B1 (de) | 2023-10-02 | 2023-10-02 | Montagewerkzeug für selbstschneidende nietbefestigung |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP23201203.9A EP4534247B1 (de) | 2023-10-02 | 2023-10-02 | Montagewerkzeug für selbstschneidende nietbefestigung |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP4534247A1 EP4534247A1 (de) | 2025-04-09 |
| EP4534247B1 true EP4534247B1 (de) | 2025-08-20 |
Family
ID=88315821
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23201203.9A Active EP4534247B1 (de) | 2023-10-02 | 2023-10-02 | Montagewerkzeug für selbstschneidende nietbefestigung |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4534247B1 (de) |
| ES (1) | ES3043733T3 (de) |
| PL (1) | PL4534247T3 (de) |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3412594A (en) * | 1966-10-27 | 1968-11-26 | Richard H. Lund | Rivet installation tool |
| US4920833A (en) * | 1988-12-12 | 1990-05-01 | Eric Rosenthal | Blind setting rivet |
| AU2009201415A1 (en) | 2008-04-08 | 2009-10-22 | Loi & Tran Pty. Limited | Rivet (self-drilling & sealable) |
-
2023
- 2023-10-02 ES ES23201203T patent/ES3043733T3/es active Active
- 2023-10-02 PL PL23201203.9T patent/PL4534247T3/pl unknown
- 2023-10-02 EP EP23201203.9A patent/EP4534247B1/de active Active
Also Published As
| Publication number | Publication date |
|---|---|
| PL4534247T3 (pl) | 2025-09-22 |
| ES3043733T3 (en) | 2025-11-25 |
| EP4534247A1 (de) | 2025-04-09 |
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