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EP 2 853 512 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.07.2016 Bulletin 2016/28 |
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Date of filing: 23.09.2014 |
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International Patent Classification (IPC):
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Device to connect a lifting means, such as a crane, to an object that shall be lifted
Vorrichtung zur Verbindung von Hebemitteln, wie etwa ein Kran, an ein anzuhebendes
Objekt
Dispositif pour relier un moyen de levage, tel qu'une grue, à un objet qui doit être
soulevé
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Designated Contracting States: |
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AL 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 RS SE SI SK SM TR |
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Priority: |
26.09.2013 NO 20131289
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Date of publication of application: |
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01.04.2015 Bulletin 2015/14 |
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Proprietor: AF Offshore Decom AS |
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0603 Oslo (NO) |
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Inventor: |
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- Hanes, Eirik
1480 SLATTUM (NO)
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Representative: Protector IP Consultants AS |
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Oscarsgate 20 0352 Oslo 0352 Oslo (NO) |
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References cited: :
WO-A1-2008/022368 JP-U- H 072 377 JP-U- H0 549 780 US-A- 2 721 756 US-A- 3 519 302
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JP-A- 2002 362 878 JP-U- H0 444 274 JP-U- S5 447 770 US-A- 3 276 808 US-A- 5 735 561
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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).
|
[0001] The present invention relates to a device to connect a lifting appliance, such as
a crane, to an object that shall be lifted. The device is especially suited for use
together with lifting tools in the form of extended bodies of textile material, rope
or wire, which is formed with hoops or hooks in at least one end, or as endless grommets.
Such lifting tools are often used when one wants to lift objects that are not fitted
with lifting lugs for a crane hook and are used to form the connection between the
crane hook and the lifting lug. A hoop can comprise one or more straps, each of which
stretches from one place on the object to the crane hook, or possibly to the crane
hook via a spreader beam.
[0002] When large objects with partly irregular shapes, such as, for example, part of an
offshore structure that shall be moved, it is not always possible to fasten the hoop
directly onto the structure part. The structure part often weighs several tens of
tonnes and sometimes several hundred tonnes. The structure part has sharp edges and
a hoop can therefore be damaged during the lift. Therefore, it is common to weld or
securely bolt lifting lugs or other types of lifting points to the structure part.
However, for such heavy lifts the lugs welded on the structure must be certified before
the lift can start. The certification regulations are very strict for the offshore
industry. Both the welding and the certification of this take a long time and the
whole decommissioning of, for example, a platform will therefore take considerably
longer time than if one could fasten the hoop directly to the structure part. Furthermore,
one is dependent on the basis material in the structure that shall be lifted being
of sufficient good quality, for example, that the material has no internal weaknesses,
such as rifts, which can lead to a lug welded on being ripped off.
[0003] One can envisage the use of a hook or other L-formed device to form the connection,
but these do not provide a safe grip as they could easily come lose if the object
should make contact with something during the lift. They will also lead to an unfavourable
load of the structure that shall be lifted with potential askew loads and local force
concentrations that can reduce the capacity of the structure. From
WO 2008/022368 is known a solution where two L-shaped devices grip a beam; one from each side.
[0004] From
US 5863085 is known a tubular shaped lifting block that is adapted to receive an end of a tube
to be lifted. The use of this requires that there is actually a tube end on the structure
that can receive the lifting block. Moreover, it is a high risk that the tubular lifting
block can slide off the tube end, even if the structure is tilted only slightly.
[0005] A lifting block is known from
US 4092038 that is adapted to encircle a tubular element on the structure to be lifted. Although,
it is relatively easy to mount it can easily slide along the tubular element and the
structure may therefore suddenly tilt viciously. This tilting may be fatal both to
equipment and persons in the vicinity. To avoid this sliding, stop means are arranged
adjacent the lifting block. The stop means have to be welded to the structure. This
welding may weaken the structure and has to be controlled and certified. The lifting
block must also be adapted closely in diameter to the tubular element that it is placed
around.
[0006] JPH0444274U shows a lifting device for a pallet. Inclined notches are formed on the
underside of the pallet, into which a tube can be positioned. Lifting straps can be
attached to each end of the tubes.
[0007] This device is only capable of lifting pallets that have been prepared with the inclined
notches. The lifting must be done with the pallet in a completely horizontal position.
If the centre of gravity of the load is outside the centre of the pallet, the pallet
may become skewed and there is a great risk that the pallet will slide relative to
the tubes. The result may be that the lifting straps slide off the tubes and the load
falls down.
[0008] Consequently, this lifting device is not suitable for lifting objects with a centre
of gravity away from the volumetric centre of the object or where the centre of gravity
is unknown.
[0009] US 3276808 shows a similar lifting device as JPH0444274U. Also here notches have been formed
at the underside of the pallet. This device has substantially the same disadvantages
as JPH0444274U.
[0010] US 2721756 shows another lifting device similar to JPH0444274U and
US 3276808. This has substantially the same disadvantages as the above prior art.
[0011] US 3519302 shows yet another lifting device for lifting pallets, which also have substantially
the same drawbacks as JPH0444274U,
US 3276808 and
US 2721756.
[0012] JP2002362878 shows a lifting device for lifting the undercarriage of a belt driven vehicle. The
device is specially formed to fit against the underside of the undercarriage. The
device is not suitable for lifting other objects, such as portions of frameworks in
the offshore industry.
[0013] Thus, there are today no known devices that make it easy to connect a hoop with such
a heavy structure part in a simple and safe way. Therefore, the invention has the
aim of providing a device that makes it possible to connect a lifting tool with a
large object in a safe and easy way. This is achieved by the features that are given
in the subsequent claim 1.
[0014] The lifting device is fitted quickly and simply and the time it takes, for example,
to decommission an offshore structure is thereby considerably reduced. This also reduces
the costs. The lifting forces are transferred as pressure forces only in the structure
that is lifted. Thereby, any weaknesses in the structure material have less significance.
[0015] It is preferred that the lifting device according to the invention has a contact
surface against the structure which is large enough so that the lifting forces do
not lead to essential, permanent, i.e. plastic, deformations in the lifting device.
[0016] In a first embodiment the main part is fitted at both ends with a trunnion-formed
end comprising a groove with a generally circular cross section and an externally
arranged thickening, as the groove is able to receive a hoop or a loop on a wire,
and the thickening prevents the hoop or the wire from sliding out from the groove.
Thereby, the device can easily be connected with a hoop or a wire.
[0017] In one embodiment, the guiding parts have features for anchoring of a temporary fastening
element to hold the device in place until the lifting forces are established. Thereby,
the device can temporarily hang on to the object that shall be lifted until the lifting
forces are connected and the lift has begun.
[0018] In a further embodiment the guiding parts are set up to reach over the beam or the
strut, which the main part is placed on the underside of, and the guiding parts are
fitted at their upper ends with fastening means for a hoop or other extended body.
Thereby, a device is provided which is very simple in its construction and consists
of relatively few parts.
[0019] It is advantageous that the fastening means comprises a hole through each of the
guiding parts and a peg that is arranged to be led through the holes. Thus, a shackle
can easily be connected to the device.
[0020] In an alternative embodiment, the contact surface is formed by a plate that is located
between the guiding parts. Thereby, a good contact surface is ensured against the
object that shall be lifted. This gives a good distribution of forces.
[0021] In a further variant at least one support plate is connected at a right angle with
the plate that forms the contact surface. This support plate transfers forces to the
main part. Thereby, a good shoring up of the plate that makes up the contact surface
and a good force transfer to the main part is ensured. Then, the plate that makes
up the contact surface can advantageously have smaller dimensions.
[0022] In another embodiment, at least a part of the first contact surface comprises an
end edge on a support plate that is arranged transverse to the main part. This leads
to a simple construction at the same time as the forces are transferred in a secure
way.
[0023] As the device substantially comprises steel plates that are welded together and possibly
a steel tube that forms the trunk of the main part, a device is provided that is both
simple to produce and simple in its structure.
[0024] The invention shall now be explained in more detail with reference to the enclosed
figures, in which:
Figure 1 shows a large structure part that is lifted with the help of a device according
to the invention.
Figure 1a shows a detail of figure 1 and a device according to the invention.
Figure 2 shows a first embodiment of a lifting device according to the invention in
detail.
Figure 3 shows a second embodiment of a lifting device according to the invention
in detail.
Figure 4 shows a third embodiment of a lifting device according to the invention in
detail.
Figure 5 shows a fourth embodiment of a lifting device according to the invention
in use, and
Figures 6a and 6b show the fourth embodiment in more detail.
[0025] Figure 1 shows a structure part 1 which is a part of a larger offshore structure
that is about to be decommissioned. The structure part 1 hangs in a crane (not shown)
via a crane hook 2 that can be placed on a crane vessel (not shown). A system of hoops
3 extends from the crane hook 2. These couple the crane hook 2 via a spreader beam
17 and hooks 4 to a device 5 according to the invention, which in the following will
be called a lifting block, which together is set to lift the structure part 1.
[0026] Figure 1a shows a detail of figure 1 around the lifting device 5. The lifting device
5 is arranged under an I-beam 26 in the structure part 1 and lies in a corner formed
by the I-beam 26 and a strut 27. The strut 27 also has an I-beam form. The I-beam
26 has a flat underside against the lifting device 5 and the strut 27 also has a flat
side against the lifting device 5.
[0027] It is clear that the lifting block 5 can be formed to lie against other types of
beams than I-beams and also against struts with a round or oval cross section.
[0028] The lifting block 5 according to the invention stretches underneath the whole of
the I-beam 26 and has, on either side, a trunnion-like projection 28 to receive a
loop 30 at the end of a hoop.
[0029] Figure 2 shows the lifting block 5 according to the invention in more detail in a
first embodiment. The projection 28 has a disc 29 outermost and inside this there
is a cylindrical section 31, which the loop 30 of the hoop 3 is set up to rest against.
Inside the cylindrical section 31, guiding plates 32 are arranged on each side. The
guiding plates 32 are set up to be placed on the outside of the I-beam 26 and prevent
the lifting block 32 from gliding sidewise with respect to this.
[0030] A contact surface 33 is arranged between the guiding plates 32. This is set up to
lie against the underside of the I-beam 26.
[0031] The cylindrical section 31 is extended inside the guiding plates 32 and forms a continuous
cylinder 34. A support plate 35 is arranged in parallel with and in the middle of
the guiding plates 32. The edge 36 of the support plate 35 is set up to lie against
the strut 27. Thereby, the lifting block transfers the lifting forces into the I-beam
26 and the strut 27.
[0032] The guiding plates 32 are fitted with a number of holes 37 that are used to fasten
temporarily the lifting block 5 to the I-beam 26 until the hoops are subjected to
tension and the lifting block is held in place by the hoops alone. The temporary fastening
to the I-beam can be made by threading bolts or pins through the holes 37 so that
the lifting block 5 is hanging in the flange 38 of the I-beam 26 (see figure 1 a).
Instead of holes, protrusions can also be arranged for the fastening of the straps.
However, other ways to arrange a temporary fastening for the lifting block can also
be imagined.
[0033] It is preferred that the lifting block 5 is constructed by welding together a pipe
34 with the different plates 28, 32, 33 and 35. It can be made in different sizes
adjusted to the different dimensions used for the I-beams 26. The lifting block 5
must be certified for offshore lifts, but this certification can be made in good time
before use and it can be made on land.
[0034] When the hoops are subjected to tension in that the crane hook 2 is pulled up, the
hoops will force the lifting block 5 in toward the I-beam 26 and the strut 27, at
the same time as the lifting block 5 will automatically glide into a correct position
on the temporary suspension 37 between the beam 26 and the strut 27 as shown in figure
1 a. The pipe 34 has a dimension, which will tolerate with a good margin the forces
to which it is subjected. As long as the hoop is taut (even with relatively limited
tension), it will stay within the plate 28. The plate 28 is dimensioned so that the
loop 30 must be opened relatively widely so that it is possible to thread it over
the plate 28. The lift can therefore be carried out with the assurance that the loop
30 will not jump off the lifting block 5. The lifting block will transfer a part of
the horizontal lifting forces into the lower flange of the beam 26 in the junction
between the beam 26 and the strut 27.
[0035] Figure 3 shows a second embodiment of the lifting block according to the invention.
It is substantially similar to the embodiment in figure 2 apart from the guiding plates
32 being rotated with respect to the contact plate 33, so that the upper edge 39 (upper
in the sense of uppermost in the figure) forms an angle with the contact plate 33.
This rotated position ensures that the guiding plate 32 will extend outside both the
I-beams in the structure that form the corner against which the lifting device shall
lie. This embodiment is particularly favourable if the corner is made by two beams
of the same width. The holes 37 are placed so that it is possible temporarily to fasten
the lifting block 5 to the flanges on both the adjoining I-beams.
[0036] Figure 4 shows a third embodiment of the lifting block 5, where the guiding plates
32 are extended with respect to the embodiment in figure 2, so that they extend along
a greater length of the I-beam. An arched plate 40 is arranged at the extended end
of the guiding plates 32. This is set up to lie against a round strut on the structure
that shall be lifted. The curvature of the plate 40 must be adapted to the different
diameters on the round strut on the structure. Therefore, lifting blocks of different
dimensions must be produced.
[0037] Figure 5 shows a fourth embodiment of the lifting block 5 according to the invention.
Here, the guiding plates 32 are extended so that they stretch over the I-beam 26.
The guiding plates 32 that also function as lifting plates are fitted at the upper
end with holes 41 and a peg 42 that stretches between the holes 41. A lifting shackle
43 is fastened to the peg 42. A hoop is in turn fastened to the lifting shackle 43.
[0038] The lifting block 5 in figure 5 is shown in more detail in the figures 6a and 6b.
Figure 6a shows the lifting block seen in perspective from above. Figure 6b shows
the lifting block 5 seen in perspective from below. From above and below means in
this context in relation to the orientation that the lifting block has when in use.
The lifting block 5 comprises a pipe part 44 that extends between the two guiding
and lifting plates 32. A contact plate 33 also runs between the guiding and lifting
plates 32. A support plate 35 that has a contact edge 36 is placed halfway between,
and in parallel with, the guiding and lifting plates 32. A pair of stiffening plates
45 is arranged between the pipe part 44 and the contact plate 33. Both of these run
between the guiding and lifting plates 32. The holes 41 in the upper end of the guiding
and lifting plates 32 are also visible.
[0039] Furthermore, the guiding and lifting plates 32 are fitted with holes 37 that can
be used to fasten the lifting device temporarily to the I-beams 26 in the same way
as for the earlier embodiment.
[0040] In the case shown in figure 5, the lifting device shall be placed in a corner between
the beam 26 and the strut 27 that form an angle of about 45°. Thus, the contact edge
36 of the support plate 35 and the contact plate 33 form a corresponding angle so
that they make good contact against both the I-beam 26 and the strut 27 in the corner.
This is ensured by tightening the lifting tool 3 by lifting the crane hook 2. The
lifting block 5 thereby automatically will be pulled into a correct position with
the help of the guiding and lifting plates 32. The lifting plate 33 will transfer
parts of the horizontal lifting forces in the lower flange of the beam 26 in the cross
between the beam 26 and the strut 27.
[0041] When the lifting block is placed in the corner between the I-beam 26 and the strut
27, the peg 42 is threaded through the hole 41 in one of the guiding and lifting plates
32, through the ears of the shackle 43 (the shackle 43 is threaded through the loop
30 of the hoop in advance) and further through the hole 41 in the other guiding and
lifting plate 32. Thereafter, the peg 42 is secured in a way that is well known for
lifting shackles.
[0042] In this embodiment, the hoops will be in safe engagement with the lifting blocks
without having to be taut.
[0043] Instead of the guiding parts also functioning as anchoring points for hoops, it is
also possible to use separate lifting plates that are formed with a hole in the lower
end so that they can be threaded onto the trunnion-formed protrusions, such as shown
in, for example, figure 2.
1. Device to connect a lifting appliance to an object that shall be lifted, the device
(5) comprising a main part, said main part having a first contact surface (33) that
is complementary to a first longitudinal element (26) of the object (1) that shall
be lifted when said main part extends substantially transverse with respect to the
first longitudinal element (26), characterised in that said main part has a second contact surface (36) that is complementary to a second
element (27) on the object (1) that shall be lifted, said contact surfaces (33, 36)
forming a fixed angle with respect to each other, said angle corresponding to the
angle between the first and the second elements (26, 27), said main part being configured
to take up the weight of the object via the first and second contact surfaces (33,
36), and that each end (29, 31) of the main part is provided with connecting features
for a lifting tool, and that the device further comprises a pair of guiding parts
(32), that are arranged perpendicularly to the main part, said guiding parts (32)
being arranged at a mutual distance slightly greater than the width of said first
element (26).
2. Device according to claim 1, characterised in that the extents of the contact surfaces (33, 36) are adapted to the weight of the object
(1) that shall be lifted so that permanent deformations are essentially avoided.
3. Device according to claim 1 or 2, characterised in that said connecting features are trunnion-shaped end elements (29, 31), comprising a
groove (31) with a generally circular cross section and an external thickening (29),
and so that the groove (31) is able to receive a hoop or a loop on a wire and the
thickening (29) prevents the hoop or the wire from sliding out of the groove (31).
4. Device according to any of the preceding claims, characterised in that the guiding parts (32) have features (37) for the anchoring of a temporary fastening
element to hold the device in place until the lifting forces are applied to it.
5. Device according to any of the preceding claims, characterised in that the guiding parts (32) have a length to reach over the first element (26) to the
opposite side of the first element from the first contact surface (33), and that the
guiding parts (32) are fitted at their upper ends with fastening means (41, 42, 43)
for a hoop (30) or lifting wire.
6. Device according to claim 5, characterised i n that the fastening means comprises a hole (41) in each of the guiding parts (32)
and a peg (42) that fits through the holes (41).
7. Device according to any of the preceding claims, characterised i n that the contact surface (33) is formed by a plate that is placed between the guiding
parts (32).
8. Device according to claim 7, characterised in that at least one support plate (35) is connected at a right angle to the plate that forms
said first contact surface (33).
9. Device according to any of the preceding claims, characterised in that at least a part of said first contact surface (36) comprises an end edge on a support
plate (35) which is arranged transverse to the main part.
10. Device according to one of the preceding claims, characterised in that it substantially comprises steel plates that are welded together.
11. Device according to claim 10, characterised in that it also comprises a steel pipe (34) that forms a trunk of the main part.
1. Einrichtung zum Verbinden einer Hebevorrichtung mit einem Objekt, das gehoben werden
soll, wobei die Einrichtung (5) zumindest ein Hauptteil umfasst, wobei das Hauptteil
eine erste Kontaktoberfläche (33) aufweist, die komplementär zu einem ersten länglichen
Element (26) des ersten Objekts (1) ist, das gehoben werden soll, wenn sich das Hauptteil
im Wesentlichen quer zum ersten länglichen Element (26) erstreckt, dadurch gekennzeichnet, dass das Hauptteil eine zweite Kontaktoberfläche (36) hat, die komplementär zu einem zweiten
Element (27) auf dem ersten Objekt (1), das gehoben werden soll, ist, wobei die Kontaktoberflächen
(33, 36) einen festen Winkel zueinander bilden, wobei der Winkel zum Winkel zwischen
dem ersten und dem zweiten Element (26, 27) korrespondiert, wobei das Hauptteil dazu
ausgelegt ist, das Gewicht des Objekts über die erste und zweite Kontaktoberfläche
(33, 36) aufzunehmen und dass jedes Ende (29, 31) des Hauptteils mit Verbindungsmerkmalen
für ein Hebewerkzeug vorgesehen ist, und dass die Einrichtung weiterhin ein Paar Führungsteile
(32) umfasst, die senkrecht zum Hauptteil angeordnet sind, wobei die Führungsteile
(32) mit einem etwas größeren gegenseitigen Abstand als die Breite des ersten Elements
(26) angeordnet sind.
2. Einrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Erstreckungen der Kontaktoberflächen (33, 36) an das Gewicht des Objekts (1),
das gehoben werden soll, angepasst sind, so dass dauerhafte Deformationen im Wesentlichen
vermieden werden.
3. Einrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Verbindungsmerkmale zapfenförmige Endelemente (29, 31) sind, welche eine Nut
(31) mit einem im Wesentlichen runden Querschnitt und einer externen Verdickung (29)
umfassen, und dass die Nut (31) dazu ausgelegt ist, einen Reifen oder eine Schleife
auf einem Draht aufzunehmen, und dass die Verdickung (29) verhindert, dass der Reifen
oder der Draht aus der Nut (31) herausgleitet.
4. Einrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Führungsteile (32) Merkmale (37) zum Verankern eines temporären Befestigungselements
aufweisen, um die Einrichtung am Platz zu halten, bis die Hebekräfte darauf einwirken.
5. Einrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Führungsteile (32) eine Länge aufweisen, um über das erste Element (26) zur gegenüberliegenden
Seite des ersten Elements von der ersten Kontaktoberfläche (33) hinauszuragen, und
dass die Führungsteile (32) an ihren oberen Enden mit Befestigungsmitteln (41, 42,
43) für einen Reifen (30) oder einen Hebedraht versehen sind.
6. Einrichtung nach Anspruch 5, dadurch gekennzeichnet, dass das Befestigungsmittel ein Loch (41) in jedem der Führungsteile (32) und einen Pflock
(42) umfasst, der durch die Löcher (41) passt.
7. Einrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Kontaktoberfläche (33) durch eine Platte gebildet ist, die zwischen den Führungsteilen
(32) angeordnet ist.
8. Einrichtung nach Anspruch 7, dadurch gekennzeichnet, dass zumindest eine Stützplatte (35) in einem rechten Winkel mit der Platte verbunden
ist, die die erste Kontaktfläche (33) bildet.
9. Einrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass zumindest ein Teil der ersten Kontaktoberfläche (36) eine Endkante auf der Stützplatte
(35) umfasst, welche quer zum Hauptteil angeordnet ist.
10. Einrichtung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass sie im Wesentlichen Stahlplatten umfasst, die zusammengeschweißt sind.
11. Einrichtung nach Anspruch 10, dadurch gekennzeichnet, dass sie auch ein Stahlrohr (34) umfasst, das einen Rumpf des Hauptteils bildet.
1. Dispositif pour relier un appareil de levage à un objet qui doit être soulevé, le
dispositif (5) comprenant une partie principale, ladite partie principale ayant une
première surface de contact (33) qui est complémentaire d'un premier élément longitudinal
(26) de l'objet (1) qui doit être soulevé quand ladite partie principale s'étend de
manière sensiblement transversale par rapport au premier élément longitudinal (26),
caractérisé en ce que ladite partie principale comporte une deuxième surface de contact (36) qui est complémentaire
d'un deuxième élément (27) sur l'objet (1) qui doit être soulevé, lesdites surfaces
de contact (33, 36) formant un angle fixe l'une par rapport à l'autre, ledit angle
correspondant à l'angle entre les premier et deuxième éléments (26, 27), ladite partie
principale étant configurée pour prendre le poids de l'objet par l'intermédiaire des
première et deuxième surfaces de contact (33, 36), et en ce que chaque extrémité (29, 31) de la partie principale est pourvue d'accessoires de liaison
pour un outil de levage, et en ce que le dispositif comprend en outre une paire de parties de guidage (32), qui sont agencées
perpendiculairement à la partie principale, lesdites parties de guidage (32) étant
agencées à une distance mutuelle légèrement supérieure à la largeur dudit premier
élément (26).
2. Dispositif selon la revendication 1, caractérisé en ce que les étendues des surfaces de contact (33, 36) sont adaptées au poids de l'objet (1)
qui doit être soulevé de telle sorte que des déformations permanentes sont essentiellement
évitées.
3. Dispositif selon la revendication 1 ou 2, caractérisé en ce que lesdits accessoires de liaison sont des éléments d'extrémité en forme de tourillon
(29, 31), comprenant une rainure (31) ayant une coupe transversale globalement circulaire
et un épaississement externe (29), et de telle sorte que la rainure (31) est capable
de recevoir un cercle ou une boucle sur un câble et l'épaississement (29) empêche
le cercle ou le câble de glisser hors de la rainure (31).
4. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce que les parties de guidage (32) présentent des accessoires (37) pour l'ancrage d'un élément
de fixation provisoire pour maintenir le dispositif en place jusqu'à ce que les forces
de levage lui soient sont appliquées.
5. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce que les parties de guidage (32) ont une longueur pour passer par-dessus le premier élément
(26) jusqu'au côté opposé du premier élément depuis la première surface de contact
(33), et en ce que les parties de guidage (32) sont équipées, au niveau de leurs extrémités supérieures,
de moyens de fixation (41, 42, 43) pour un cercle (30) ou câble de levage.
6. Dispositif selon la revendication 5, caractérisé en ce que les moyens de fixation comprennent un trou (41) dans chacune des parties de guidage
(32) et une cheville (42) qui s'insère dans les trous (41).
7. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce que la surface de contact (33) est formée par une plaque qui est placée entre les parties
de guidage (32).
8. Dispositif selon la revendication 7, caractérisé en ce qu'au moins une plaque de support (35) est reliée selon un angle droit à la plaque qui
forme ladite première surface de contact (33).
9. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce qu'au moins une partie de ladite première surface de contact (36) comprend un bord d'extrémité
sur une plaque de support (35) qui est agencée de manière transversale à la partie
principale.
10. Dispositif selon l'une des revendications précédentes, caractérisé en ce qu'il comprend sensiblement des plaques en acier qui sont soudées ensemble.
11. Dispositif selon la revendication 10, caractérisé en ce qu'il comprend également un tuyau en acier (34) qui forme un tronc de la partie principale.
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