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(11) |
EP 2 221 146 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
27.04.2016 Bulletin 2016/17 |
| (22) |
Date of filing: 17.02.2010 |
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| (51) |
International Patent Classification (IPC):
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| (54) |
Punch nipper, in particular for metal section bars
Stanzzange, insbesondere für Metallprofile
Pince à poinçonner, en particulier pour profilés métalliques
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| (84) |
Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO
PL PT RO SE SI SK SM TR |
| (30) |
Priority: |
20.02.2009 IT GO20090001
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| (43) |
Date of publication of application: |
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25.08.2010 Bulletin 2010/34 |
| (73) |
Proprietors: |
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- Paparot, Ivano
33050 Fiumicello (UD) (IT)
- Burg, Dario
33050 Terzo d'aquileia (UD) (IT)
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| (72) |
Inventors: |
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- Paparot, Ivano
33050 Fiumicello (UD) (IT)
- Burg, Dario
33050 Terzo d'aquileia (UD) (IT)
|
| (74) |
Representative: Feldkamp, Rainer et al |
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Patentanwälte
Wallach, Koch, Dr. Haibach, Feldkamp
Garmischer Strasse 4 80339 München 80339 München (DE) |
| (56) |
References cited: :
US-A- 345 687
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US-A- 5 287 716
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
BACKGROUND OF THE INVENTION
FIELD OF THE INVENTION
[0001] The present invention relates to a nipper able to punch a section bar to for allowing
the laying of a pipe.
DESCRIPTION OF THE RELATED ART
[0002] Panels in different sizes are used to divide spaces and build false ceilings. The
same is done to create barriers; in this case, panels with different features are
used: heat resistance, fire resistance, moisture resistance, etc. Panels are usually
supported by a supporting structure made up of metal section bars. These section bars
are usually U-shaped and have a reduced thickness. When installing the electric system,
the water supply system, the gas system or any other system, it is necessary to lay
pipes along the newly built walls or false ceilings. Said pipes contain electric wires
or convey fluids. To allow the laying of said pipes, holes are drilled in the supporting
metal section bars, which have the highest bearing capacity.
[0003] The drilling of the metal section bars can be carried out in the factory. This means,
however, that the holes in the section bars, although they are perfect, are sometimes
located in positions which are not suitable for the plant to be realized.
[0004] Alternatively, workers have to drill holes in the untouched metal section bars as
the need arises. The holes can be drilled by means of punches, metal points or drill
circle cutters. The use of these hand tools, however, creates in the metal section
bar irregularly shaped and serrated blades facing the inside of the metal section
bar. While the pipe is inserted into the hole, the serrated edges can hinder the insertion
or damage the pipe through abrasion. The metal section bars can also lose their shape
due to the impact. Holes drilled with drill circle cutters, on the contrary, have
no irregular blades inside the metal section bar. The use of this electric tool, however,
always creates a cutting edge along the perimeter of the hole, which might damage
the pipe inserted into the hole.
[0005] The Patent
US-A-5287716 is also known, which discloses a punch nipper for metal section bars where a hollow
die is affixed to a handle, which is made of square tubing. This handle is pivotally
connected, by a bolt, to one end of a link.
[0006] A support is also affixed to the handle. A jaw is pivotally connected by a second
bolt to said support and can be pushed towards the handle or retracted from it by
a lever, which is pivotally connected to the jaw by a third bolt. The lever is pivotally
connected to the link by a fourth bolt. A piercer is affixed to the end of the jaw
by a screw. The lever is extended by a handle. Both handles are equipped with rubber
or plastic handgrips.
[0007] The Patent
US-A-345687 is known as well, which discloses a hand-tool for cutting through two or more sheets
of sheet metal, forming one or more tongues therein and rolling back the tongues,
so as to form a clinch-fastening. It consists of three parts, where the first part
is made up of a handle and cheeks and has a clearance, the second part is set between
the cheeks and is pivoted to the first part, the third part is pivoted to the cheeks
and is provided with an eccentric slot and a cam, which is also connected to the second
part by a pivot housed in its slot.
SUMMARY OF THE INVENTION
[0008] The main goal of this invention is the realization of a hand punch nipper which can
punch metal section bars with a higher force and with more efficiency than known punch
nippers.
[0009] A second goal is the realization of a hand punch nipper which can bend blades resulting
from the punching, thus avoiding problems during the insertion of pipes into the holes
thus created.
[0010] This and other goals are reached by the punch nipper that is the object of the patent,
which is composed of a supporting arm, an operating arm and a lever arm. The supporting
arm is a rectilinear element which is preferably made up of an oval profile. Its proximal
end is covered by an anatomically-designed covering, while a support, which can partially
embrace the section bar, is secured to its distal end by a knob or bolt.
[0011] The ends of at least two pairs of brackets are fixed to two opposing sides of the
supporting arm; one pair of brackets is close to the proximal end of the supporting
arm, while the other pair is close to its distal end. The brackets face the operating
arm. Each bracket has at least one hole near its free end and the two holes of each
pair of brackets are coaxial. The operating arm is a rectilinear element and presents
at its distal end an element which is approximately orthogonal to the operating arm
itself and which is linked or directly fixed to it.
[0012] A point is secured to the free end of said orthogonal element. The operating arm
is pivoted to the supporting arm by means of a pin inserted into the pair of brackets
near the proximal end of the supporting arm. The operating arm moves between the brackets
located near the distal end of the supporting arm.
[0013] A small plate and a small rod are fixed onto the operating arm; the free end of said
rod is bent towards the body. The above mentioned small plate is located near the
distal end of the operating arm and on the side facing the lever arm. The lever arm
is rectilinear and has a proximal end covered by an anatomically-designed covering
as well as a cam-shaped body fixed to its distal end. Said cam-shaped body has a rectilinear
edge linked to a curvilinear edge. A hole is drilled opposite said edges. A peripheral
slit follows both the curvilinear edge and the rectilinear edge. The lever arm is
pivoted to the supporting arm by means of a pin inserted into the pair of brackets
near the distal end of the supporting arm.
[0014] The free, bent end of the small rod fixed to the operating arm is housed in the slit
of the cam-shaped body. The small rod and the slit, acting as pivot elements, can
be substituted by a spring located near the brackets close to the proximal end of
the supporting arm.
[0015] The point fixed to the free end of the operating arm is shaped as a frustum of pyramid
or of cone and is divided into quadrants. Each quadrant is delimited by two cutting
edges going from the end of the point to its periphery. Two grooves in each quadrant
delimit an area which is preferably located at the same height as the cutting edges.
[0016] The support includes a plate which is partially inserted into the distal end of the
supporting arm. A small, L-shaped plate is fixed orthogonally to said plate. Two blades
are fixed onto the distal part of the small plate. Said distal part can also have
roughly the shape of a circular half-crown and have no blades.
[0017] Thanks to the punch nipper that is the object of the patent, it is possible to punch
holes in section bars quickly and easily. The presence of the cam and its location
at the distal end of the lever arm reduce the strength necessary to carry out the
punching.
[0018] The punch nipper that is the object of the patent has less pins than known nippers.
The small rod and the slit, or the spring, acting as pivot elements enable a reliable
opening of the nipper.
[0019] The wings formed by the cut and crimped edges of the punched holes are bent towards
the inside of the section bar and act as slides, thus helping the pipe slide into
the hole without being damaged.
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Further characteristics and advantages of the invention will be manifest thanks to
the description of one type of execution of the punch nipper, which is illustrated
by way of example, and not as limitation, in the attached drawings, in which:
- Figure 1 shows a side view of the punch nipper;
- Figure 2 shows another side view of the punch nipper when the punching process begins;
- Figure 3 shows an enlarged side view of a first support embracing the section bar;
- Figure 4 shows an enlarged front view of the support shown in Figure 3;
- Figure 5 shows an enlarged side view of the body fixed to the end of the lever arm;
- Figure 6 shows an enlarged perspective view of the punching point;
- Figure 7 shows a perspective view of the hole with wings created by the punch nipper
that is the object of the patent;
- Figure 8 shows an enlarged side view of a second support embracing the section bar;
- Figure 9 shows an enlarged front view of the support shown in Figure 8;
- Figures 10, 11 and 12 show as many operational views of the punch nipper.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0021] More in detail and with reference to the attached Figures, the punch nipper that
is the object of the patent is made up of a supporting arm 1, an operating arm 2 and
a lever arm 3. The supporting arm 1 is a rectilinear profile with oval cross section,
with one proximal end, covered by an anatomically-designed covering 1.1, and a distal
end. A support 4, which can embrace at least partially the metal section bar, is secured
to said distal end.
[0022] The support 4 includes a Z-shaped plate 4.1, the three parts of which are arranged
orthogonally to one another. An end of the plate 4.1 is partially inserted into the
distal end of the supporting arm 1 and is linked to it by means of a knob 5, which
is locked by a nut going through a hole 4.2 created in the plate 4.1 itself and holes
1.2 created in the supporting arm 1. A small, L-shaped plate 4.3 is fixed orthogonally
onto the central part and onto the distal part of the plate 4.1.
[0023] Two hooked blades 4.4 positioned in a swallow-tailed shape are fixed orthogonally
to the distal part of the small plate 4.3.
[0024] The ends of the first two brackets 6 are fixed onto two opposing sides of the supporting
arm 1. The brackets 6 are located near the proximal end of the supporting arm 1. They
are fixed to two opposing walls of the supporting arm 1 itself and are arranged orthogonally
to it towards the operating arm 2. Each bracket 6 has a hole near its free end. The
holes of the two brackets 6 are coaxial.
[0025] The ends of a second pair of brackets 7 are also fixed to the supporting arm 1, near
the distal end of the supporting arm 1 and on two opposing walls of said supporting
arm 1. The second pair of brackets is also arranged towards the operating arm 2. Each
bracket 7 is approximately triangle-shaped, its base is parallel to the longitudinal
axis of the supporting arm 1 and its height is orthogonal to the supporting arm 1
itself. Each bracket 7 has a hole near its free end. The holes of the two brackets
7 are coaxial.
[0026] The operating arm 2 is a lamina made up of a first part flanking the supporting arm
1, by a second part which is approximately orthogonal to the first part and by a connecting
part. A point 2.1 is fixed to the distal end of the second part.
[0027] The point 2.1 is directed to the support 4. The point 2.1 is shaped as a frustum
of pyramid and divided into quadrants. Each quadrant is delimited by two cutting edges
2.11 going from the end of the point 2.1 to its periphery. In each quadrant, two peripheral
grooves 2.12 delimit a central area 2.13 at the same height as the cutting edges 2.11.
[0028] A small plate 2.2 is fixed to the operating arm 2 near the distal end of the part
flanking the supporting arm 1 and on the side facing the lever arm 3. A small rod
2.3 is fixed onto the operating arm 2; the free end 2.31 of said rod 2.3 is bent at
a 90° angle.
[0029] A hole is drilled near the proximal end of the supporting arm 2. A bolt 8 pivoting
the supporting arm 1 to the operating arm 2 is housed in said hole and in the holes
in the free ends of the brackets 6. The operating arm 2 moves between the brackets
7 located near the distal end of the supporting arm 1.
[0030] The lever arm 3 is a rectilinear tubular profile to the distal end of which a cam-shaped
body 3.1 is fixed. Said body has a rectilinear edge 3.11 linked to a curvilinear edge
3.12. A hole 3.13 is drilled opposite said edges 3.11, 3.12. The distance from the
hole 3.13 to the end of the curvilinear edge 3.12 is shorter than the distance from
the hole 3.13 to the end of the rectilinear edge 3.11. A peripheral slit 3.14 follows
both the curvilinear edge 3.12 and the rectilinear edge 3.11. The distance from the
hole 3.13 to the end of the slit 3.14 corresponding to the curvilinear edge 3.12 is
shorter than the distance from the hole 3.13 to the end of the slit 3.14 corresponding
to the rectilinear edge 3.11.
[0031] The free, bent end 2.31 of the small rod 2.3 fixed to the operating arm 2 is housed
in the slit 3.14.
[0032] The body 3.1 - and consequently also the lever arm 3 - is pivoted to the supporting
arm 1 by means of a bolt 9 inserted into the holes drilled in the free ends of the
brackets 7 and in the hole 3.13 of the body 3.1. The lever arm 3 also has a proximal
end covered by an anatomically-designed covering 3.15.
[0033] When the punch nipper is used, the support 4 of the supporting arm 1 embraces the
section bar. Assuming ideally a vertical arrangement of the supporting arm 1, the
operating arm 2 moves distally away from the supporting arm 1 by approximately 10°
and the lever arm 3 is raised until it is located at approximately a 100° angle to
the supporting arm 1. At this moment, the end of the curvilinear edge 3.12 of the
body 3.1 touches the small plate 2.1 fixed to the operating arm 2 and the free end
2.31 of the small rod 2.3 is inserted into the end of the slit 3.14 corresponding
to the curvilinear edge 3.12. When the proximal end of the lever arm 3 is quickly
brought closer to the proximal end of the supporting arm 1, the lever arm 3 rotates
about the bolt 9 acting as fulcrum. The body 3.1, which is forced to rotate by the
movement of the lever arm 3 fixed to it, slides on the small plate 2.2 going from
the curvilinear edge 3.12 to the rectilinear edge 3.11. At the same time, the free,
bent end 2.31 of the small rod 2.3 slides in the slit 3.14 until it reaches the second
end of said slit 3.14.
[0034] Considering that the distance from the pin, made up of the bolt 9 inserted into the
hole 3.13, to the edges 3.11, 3.12 increases when going from the curvilinear edge
3.12 to the rectilinear edge 3.11, the lever arm 3 forces the distal end of the operating
arm 2 to get closer to the supporting arm 1 by rotating about the bolt 8. The rotation
of the cam made up of the body 3.1 about the operating arm 2 causes the point 2.1
at the end of the operating arm 2 to quickly and clearly get closer to the support
4. The point 2.1 easily punches the section bar and is then housed between the two
blades 4.4 of the support 4. When the punching is carried out, only the point 2.1
crosses the wall of the metal section bar. The cutting edges 2.11 cut the section
bar creating an X-shape cut, thus forming four triangular wings 10. Afterwards the
areas 2.13 delimited by the grooves 2.12 press and crimp the wings 10 of the section
bar inwards.
[0035] The small rod 2.3 slides within the slit 3.14, thus keeping the operating arm 2 always
close to the body 3.1 of the lever arm 3. This is particularly useful both when closing
the punch nipper, when the lever arm 3 moves quickly as regards the operating arm
2 and this could disconnect, and when opening the punch nipper. The small rod 2.3
still keeps the operating arm 2 close to the body 3.1 even while the operating arm
2 moves away from the supporting arm 1.
[0036] Figures 8, 9 show a differently shaped support 4 which is suitable for section bars
located near a wall corner. In this situation, the development of the central part
of the plate 4.1 prevents the support 4 from embracing the section bar. The support
4 shown in Figures 8, 9 includes a plate 4.1, onto which a part 4.31 of a small, L-shaped
plate 4.3 is fixed orthogonally. The part 4.31 is short. The part 4.32 of the small
plate 4.3, orthogonal to the part 4.31, has roughly the shape of a circular half-crown.
During operation, the point 2.1, located at the end of the operating arm 2, goes beyond
the part 4.32. This support 4 and the other support described above can easily be
mounted onto the supporting arm 1 by acting on the knob 5.
1. Punch nipper, particularly for metal section bars, comprising a supporting arm (1),
an operating arm (2) and a lever arm (3); the supporting arm (1) is a rectilinear
element, preferably a profile with oval cross section, with one proximal end covered
by an anatomically-designed covering (1.1) and a distal end, onto which a support
(4), which can partially embrace the metal section bar to be punched, is secured by
means of a knob (5) or a bolt; the ends of at least two pairs of brackets (6, 7) are
fixed to two opposing sides of the supporting arm (1); a first pair of brackets (6)
is located near the proximal end of the supporting arm (1), while the second pair
of brackets (7) is located near its distal end; the brackets (6, 7) face the operating
arm (2); each bracket (6, 7) has at least one hole near its free end; the holes of
each pair of brackets (6, 7) are coaxial; the operating arm (2) is a rectilinear element
and presents at its distal end a part which is approximately orthogonal to the operating
arm (2) itself; a point (2.1) directed to the support (4) is secured to the free end
of said orthogonal element of the operating arm (2); the point (2.1) is shaped as
a frustum of pyramid or of cone and is divided into quadrants; each quadrant is delimited
by two cutting edges (2.11) going from the end of the point (2.1) to its periphery;
the operating arm (2) is pivoted to the supporting arm (1) by means of a pin made
up of a bolt (8) inserted into the holes in the free ends of the first pair of brackets
(6) located near the proximal end of the supporting arm (1) and in the proximal end
of the operating arm (2); the operating arm (2) moves between the brackets (7) located
near the distal end of the supporting arm (1); the lever arm (3) is a rectilinear
element, preferably made up of a tubular profile with a proximal end covered by an
anatomically-designed covering (3.15); a cam-shaped body (3.1) is fixed to the distal
end of the lever arm (3); the lever arm (3) is pivoted to the supporting arm (1) by
means of a pin made up of a bolt (9) inserted into the holes in the free ends of the
second pair of brackets (7) located near the distal end of the supporting arm (1)
and in the body (3.1); the punch nipper is characterized in that said cam-shaped body (3.1) has a rectilinear edge (3.11) linked to a curvilinear
edge (3.12); a hole (3.13) is drilled opposite said edges (3.11, 3.12); said hole
(3.13) houses the bolt (9) pivoting the lever arm (3) to the supporting arm (1); a
peripheral slit (3.14) follows both the curvilinear edge (3.12) and the rectilinear
edge (3.11); the free end (2.31) of a small rod (2.3) fixed to the operating arm (2)
is housed in the slit (3.14); the free end (2.31) of the small rod (2.3) is bent towards
the body; said edges (3.11, 3.12) of the body (3.1) of the lever arm (3) slide on
a small plate (2.2) fixed to the operating arm (2) near its distal end and on the
side facing the lever arm (3); said point (2.1) fixed to the free end of the operating
arm (2) has two peripheral grooves (2.12) delimiting a central area (2.13), preferably
located at the same height as the cutting edges (2.11), in each quadrant delimited
by two cutting edges (2.11).
2. Punch nipper, according to Claim 1, characterized in that the support (4) comprises a plate (4.1) which is partially inserted into the distal
end of the supporting arm (1) and is secured to said arm by means of a knob (5) or
bolt, locked by a nut, going through a hole (4.2) of the plate (4.1) itself and holes
(1.2) of the supporting arm (1).
3. Punch nipper, according to Claim 2, characterized in that the support (4) comprises a Z-shaped plate (4.1), the three parts of which are arranged
orthogonally to one another; the proximal part is partially inserted into the distal
end of the supporting arm (1); a small, L-shaped plate (4.3) is fixed orthogonally
onto the central part and onto the distal part of the plate (4.1); two blades (4.4)
facing the point (2.1) are fixed onto the distal part of the small plate (4.3).
4. Punch nipper, according to Claim 2, characterized in that the support (4) comprises a plate (4.1) which is partially inserted into the distal
end of the supporting arm (1), onto which a part (4.31) of a small, L-shaped plate
(4.3) is fixed orthogonally; the part (4.32) of the small plate (4.3), orthogonal
to the part (4.31), has roughly the shape of a circular half-crown.
5. Punch nipper, according to Claim 1, characterized in that the operating arm (2) is a rectilinear element made up of a first part flanking the
supporting arm (1), a second part which is approximately orthogonal to the first part
and of a connecting part located between the other parts; the point (2.1) is fixed
to the distal end of the second part.
6. Punch nipper, according to Claim 1, characterized in that the operating arm (2) is a rectilinear element made up of a first part flanking the
supporting arm (1) and a second part, directly fixed to the first part and approximately
orthogonal to it; the point (2.1) is fixed to the distal end of the second part.
7. Punch nipper, according to Claim 1, characterized in that the small rod (2.3) and the slit (3.14) acting as pivot elements during the movement
of the lever arm (3) are substituted by a spring located between the supporting arm
(1) and the operating arm (2); said spring is located close to the first pair of brackets
(6) near the proximal end of the supporting arm (1).
1. Stanzzange, insbesondere für Metallprofile, mit einem Tragarm (1), einem Betätigungsarm
(2) und einem Hebelarm (3); wobei der Tragarm (1) ein geradliniges Element, vorzugsweise
ein Profil mit einem ovalen Querschnitt mit einem proximalen Ende, das durch eine
anatomisch ausgelegte Abdeckung (1.1) abgedeckt ist und mit einem distalen Ende ist,
auf dem eine Halterung (4), die teilweise ein zu stanzendes Metallprofil umgreifen
kann, mit Hilfe eines Knopfes (5) oder eines Bolzens befestigt ist; wobei die Enden
von zumindest zwei Paaren von Haltebügeln (6, 7) an zwei entgegengesetzten Seiten
des Tragarms (1) befestigt sind; wobei ein erstes Paar von Haltebügeln in der Nähe
des proximalen Endes des Tragarms (1) angeordnet ist, während das zweite Paar von
Haltebügeln (3)? in der Nähe von dessen distalen Ende angeordnet ist; wobei die Haltebügel (6, 7)
auf den Betätigungsarm (2) gerichtet sind; wobei jeder Haltebügel (6, 7) zumindest
eine Bohrung in der Nähe seines freien Endes aufweist; wobei die Bohrungen jedes Paares
von Haltebügeln (6, 7) koaxial sind; wobei der Betätigungsarm (2) ein geradliniges
Element ist und an seinem distalen Ende einen Teil aufweist, der angenähert orthogonal
zu dem Betätigungsarm (2) selbst ist; wobei eine Spitze (2.1), die auf die Halterung
(4) gerichtet ist, an dem freien Ende des orthogonalen Elementes des Betätigungsarms
(2) befestigt ist; wobei die Spitze (2.1) als Stumpf einer Pyramide oder eines Kegels
geformt und in Quadranten unterteilt ist; wobei jeder Quadrant durch zwei Schneidkanten
(2.11) begrenzt ist, die von dem Ende der Spitze (2.1) zu dessen Umfang verlaufen;
wobei der Betätigungsarm (2) an dem Tragarm (1) schwenkbar mit Hilfe eines Bolzens
befestigt ist, der durch eine Schraube (8) gebildet ist, die in die Bohrungen in den
freien Enden des ersten Paares von Haltebügeln (6), der sich in der Nähe des proximalen
Endes des Tragarms (1) befindet, und in das proximale Ende des Betätigungsarms (2)
eingesetzt ist; wobei sich der Betätigungsarm (2) zwischen den Haltebügeln (7), die
in der Nähe des distalen Endes des Tragarms (1) angeordnet sind, bewegt; wobei der
Hebelarm (3) ein geradliniges Element ist, das vorzugsweise aus einem rohrförmigen
Profil mit einem proximalen Ende besteht, das durch eine anatomisch ausgelegte Abdeckung
(3.15) abgedeckt ist; wobei ein nockenförmiger Körper (3.1) an dem distalen Ende des
Hebelarms (3) befestigt ist, wobei der Hebelarm (3) an dem Tragarm (1) mithilfe eines
Bolzens schwenkbar befestigt ist, der durch eine Schraube (9) gebildet ist, die in
die Bohrungen in den freien Enden der Haltebügel (7) eingesetzt ist, die sich in der
Nähe des distalen Endes des Tragarms (1) und des nockenförmigen Körpers (3.1) angeordnet
sind; wobei die Stanzzange dadurch gekennzeichnet ist, dass der nockenförmige Körper (3.1) eine geradlinige Kante (3.11) aufweist, die mit einer
gekrümmten Kante (3.12) verbunden ist; wobei eine Bohrung (3.13) entgegengesetzt zu
den Kanten (3.11, 3.12) gebohrt ist; wobei die Bohrung (3.13) die Schraube (9) aufnimmt,
die den Hebelarm schwenkbar an den Tragarm (1) befestigt; wobei ein Umfangsschlitz
(3.14) sowohl der gekrümmten Kante (3.12) als auch der geradlinigen Kante (3.11) folgt,
wobei das freie Ende (2.31) einer kleinen Stange (2.3), die an dem Betätigungsarm
(2) befestigt ist, von den Schlitz (3.14) aufgenommen wird; wobei das freie Ende (2.31)
der kleinen Stange (2.3) in Richtung auf den Körper gebogen ist; wobei die Kanten
(3.11, 3.12) des Körpers (3.1) des Hebelarms (3) auf einer kleinen Platte (2.2) gleiten,
die an dem Betätigungsarm (2) in der Nähe von dessen distalen Ende und auf der Seite
befestigt ist, die auf den Hebelarm (3) gerichtet ist, wobei die Spitze (2.1), die
an dem freien Ende des Betätigungsarms (2) befestigt ist, zwei Umfangsnuten (2.12)
aufweist, die einen zentralen Bereich (2.13) begrenzen, der vorzugsweise in der gleichen
Höhe wie die Schneidkanten (2.11) in jedem Quadranten angeordnet ist, der durch zwei
Schneidkanten (2.11) begrenzt ist.
2. Stanzzange nach Anspruch 1, dadurch gekennzeichnet, dass die Halterung (4) eine Platte (4.1) umfasst, die teilweise in das distale Ende des
Tragarms (1) eingesetzt ist und an dem Arm mithilfe eines Knopfes (5) oder einer Schraube
befestigt ist, die durch eine Mutter festgelegt ist, und die durch eine Bohrung (4.2)
der Platte (4.1) selbst und Bohrungen (1.2) des Tragarms (1) hindurchläuft.
3. Stanzzange nach Anspruch 2, dadurch gekennzeichnet, dass die Halterung (4) eine Z-förmige Platte (4.1) umfasst, deren drei Teile unter einem
rechten Winkel zueinander angeordnet sind; wobei der proximale Teil teilweise in das
distale Ende des Tragarms (1) eingesetzt ist; dass eine kleine L-förmige Platte (4.3)
unter einem rechten Winkel auf den Mittelteil und auf den distalen Teil der Platte
(4.1) befestigt ist; dass zwei Klingen (4.4), die auf die Spitze (2.1) gerichtet sind,
auf dem distalen Teil der kleinen Platte (4.3) befestigt sind.
4. Stanzzange nach Anspruch 2, dadurch gekennzeichnet, dass die Halterung (4) eine Platte (4.1) umfasst, die teilweise in das distale Ende des
Tragarms (1) eingesetzt ist und auf der ein Teil (4.31) einer kleinen L-förmigen Platte
(4.3) unter einem rechten Winkel befestigt ist; wobei der Teil (4.32) der kleinen
Platte (4.3), die unter einem rechten Winkel zu dem Teil (4.31) steht, angenähert
die Form einer kreisförmigen Halb-Krone hat.
5. Stanzzange nach Anspruch 1, dadurch gekennzeichnet, dass der Betätigungsarm (2) ein geradliniges Element ist, das aus einem ersten Teil, der
den Tragarm (1) flankiert, einem zweiten Teil. der angenähert unter einem rechten
Winkel zu dem ersten Teil angeordnet ist, und aus einem Verbindungsteil besteht, der
zwischen den anderen Teilen liegt; wobei die Spitze (2.1) an dem distalen Ende des
zweiten Teils befestigt ist.
6. Stanzzange nach Anspruch 1, dadurch gekennzeichnet, dass der Betätigungsarm (2) ein geradliniges Element ist, der aus einem ersten Teil, der
den Tragarm (1) flankiert, und einem zweiten Teil besteht, der direkt an dem ersten
Teil und angenähert unter einem rechten Winkel hierzu befestigt ist, wobei die Spitze
(2.1) an dem distalen Ende des zweiten Teils befestigt ist.
7. Stanzzange nach Anspruch 1, dadurch gekennzeichnet, dass die kleine Stange (2.3) und der Schlitz (3.14) und der Schlitz (3.14), die als Schwenkelemente
während der Bewegung des Hebelarms (3) wirken, durch eine zwischen dem Tragarm (1)
und dem Betätigungsarm (2) angeordnete Feder ersetzt sind, wobei die Feder nahe an
dem ersten Paar von Haltebügeln (6) in der Nähe des proximalen Endes des Tragarmes
(1) angeordnet ist.
1. Pince poinçonneuse, en particulier pour profilés métalliques, comprenant un bras de
support (1), un bras de commande (2) et un brus de levier (3); le bras de support
(1) est un élément rectiligne, de préférence un profilé à section ovale, ayant une
extrémité proximale recouverte d'un revêtement anatomique (1.1) et une extrémité distale
à laquelle un support (4) apte à accueillir partiellement le profilé métallique à
poinçonner est fixé au moyen d'un bouton (5) ou d'un boulon; les extrémités d'au moins
deux paires de pattes (6, 7) sont fixées à deux côtés opposés du bras de support (1)
; une première paire de pattes (6) est située à proximité de l'extrémité proximale
du bras de support (1), tandis que la deuxième paire de pattes (7) est située à proximité
de son extrémité distale; les pattes (6, 7) sont en regard du bras de commande (2);
chaque patte (6, 7) a au moins un trou à proximité de son extrémité libre; les trous
de chaque paire de pattes (6, 7) sont coaxiaux; le bras de commande (2) est un élément
rectiligne et présente à son extrémité distale une partie à peu près orthogonale au
bras de commande lui-même (2); une pointe (2.1) orientée vers le support (4) est fixée
à l'extrémité libre dudit élément orthogonal du bras de commande (2) ; la pointe (2.1)
est en forme de tronc de pyramide ou de cône et est divisée en quadrants; chaque quadrant
est délimité par deux bords de coupe (2.11) allant de l'extrémité de la pointe (2.1)
à sa périphérie; le bras de commande (2) est pivoté sur le bras de support (1) au
moyen d'une broche constituée d'un boulon (8) logé dans les trous des extrémités libres
de la première paire de pattes (6) situées à proximité de l'extrémité proximale du
bras de support (1) et dans l'extrémité proximale du bras de commande (2) : le bras
de commande (2) bouge entre les pattes (7) situées à proximité de l'extrémité distale
du bras de support (1); le bras de levier (3) est un élément rectiligne, constitué
de préférence d'un profilé tubulaire dont une extrémité proximale est recouverte d'un
revêtement anatomique (3.15); un corps (3.1) en forme de came est fixé à l'extrémité
distale du bras de levier (3); le bras de levier (3) est pivoté sur le bras de support
(1) au moyen d'une broche constituée d'un boulon (9) logé dans les trous des extrémités
libres de la deuxième paire de pattes (7) situées à proximité de l'extrémité distale
du bras de support (1) et dans le corps (3.1); la pince poinçonneuse est caractérisée en ce que ledit corps (3.1) en forme de came a un bord rectiligne (3.11) relié à un bord curviligne
(3.12); un trou (3.13) est percé en position opposée auxdits bords (3.11, 3.12); ledit
trou (3.13) accueille le bouton (9) pivotant le bras de levier (3) sur le bras de
support (1); une fente (3.14) périphérique suit aussi bien le bord curviligne (3.12)
que le bord rectiligne (3.11); l'extrémité libre (2.31) d'une tige (2.3) fixée au
bras de commande (2) est logée dans la fente (3.14); l'extrémité libre (2.31) de la
tige (2.3) est pliée vers le corps; lesdits bords (3.11,3.12) du corps (3.1) du bras
de levier (3) glissent sur une plaquette (2.2) fixée au bras de commande (2) à proximité
de son extrémité distale et sur le côté en regard du bras de levier (3); ladite pointe
(2.1) fixée à l'extrémité libre du bras de commande (2) a deux rainures (2.12) périphériques
délimitant une zone (2.13) centrale, de préférence située à la même hauteur que les
bords de coupe (2.11), dans chaque quadrant délimité par deux bords de coupe (2.11);
2. Pince poinçonneuse, selon la revendication 1, caractérisée en ce que le support (4) comprend une plaque (4.1) qui est partiellement logée dans l'extrémité
distale du bras de support (1) et est fixée audit bras de support au moyen d'un bouton
(5) ou d'un boulon, bloqué par un écrou, traversant un trou (4.2) de la plaque (4.1)
elle-même et les trous (1.2) du bras de support (1).
3. Pince poinçonneuse, selon la revendication 2, caractérisée en ce que le support (4) comprend une plaque (4.1) en forme de Z, dont les trois parties sont
agencées de façon orthogonale l'une par rapport à l'autre; la partie proximale est
partiellement logée dans l'extrémité distale du bras de support (1); une plaquette
(4.3) en forme de L est fixée de façon orthogonale à la partie centrale et à la partie
distale de la plaque (4.1); deux lames (4.4) en regard de la pointe (2.1) sont fixées
à la partie distale de la plaquette (4.3).
4. Pince poinçonneuse, selon la revendication 2, caractérisée en ce que le support (4) comprend une plaque (4.1) qui est partiellement logée dans l'extrémité
distale du bras de support (1), à laquelle une partie (4.31) d'une plaquette (4.3)
en forme de L est fixée de façon orthogonale; la partie (4.32) de la plaquette (4.3),
agencée de façon orthogonale à la partie (4.31), est à peu près en forme de demi-couronne
circulaire.
5. Pince poinçonneuse, selon la revendication 1, caractérisée en ce que le bras de commande (2) est un élément rectiligne constitué d'une première partie
côtoyant le bras de support (1), d'une deuxième partie agencée de façon à peu près
orthogonale à la première partie et d'une partie de liaison interposée entre les autres
parties; la pointe (2.1) est fixée à l'extrémité distale de la deuxième partie.
6. Pince poinçonneuse, selon la revendication 1, caractérisée en ce que le bras de commande (2) est un élément rectiligne constitué d'une première partie
côtoyant le bras de support (1) et d'une deuxième partie fixée directement à la première
partie et agencée de façon à peu près orthogonale à celle-ci; la pointe (2.1) est
fixée à l'extrémité distale de la deuxième partie.
7. Pince poinçonneuse, selon la revendication 1, caractérisée en ce que la tige (2.3) et la fente (3.14) faisant fonction d'éléments de pivotement pendant
le mouvement du bras de levier (3) sont remplacées par un ressort situé entre le bras
de support (1) et le bras de commande (2); ledit ressort est situé près de la première
paire de pattes (6) à proximité de l'extrémité proximale du bras de support (1).
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description