EP2620194B1 - Module de construction de potence pour grue de chargement-jouet - Google Patents

Module de construction de potence pour grue de chargement-jouet Download PDF

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Publication number
EP2620194B1
EP2620194B1 EP13150826.9A EP13150826A EP2620194B1 EP 2620194 B1 EP2620194 B1 EP 2620194B1 EP 13150826 A EP13150826 A EP 13150826A EP 2620194 B1 EP2620194 B1 EP 2620194B1
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EP
European Patent Office
Prior art keywords
jib
toothed
assembly according
switching device
boom
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
Application number
EP13150826.9A
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German (de)
English (en)
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EP2620194A1 (fr
Inventor
Ottmar Herrmann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bruder Spielwaren GmbH and Co KG
Original Assignee
Bruder Spielwaren GmbH and Co KG
Priority date (The priority date 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 date listed.)
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Application filed by Bruder Spielwaren GmbH and Co KG filed Critical Bruder Spielwaren GmbH and Co KG
Publication of EP2620194A1 publication Critical patent/EP2620194A1/fr
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Publication of EP2620194B1 publication Critical patent/EP2620194B1/fr
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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H17/00Toy vehicles, e.g. with self-drive; ; Cranes, winches or the like; Accessories therefor
    • A63H17/12Toy vehicles, e.g. with self-drive; ; Cranes, winches or the like; Accessories therefor with cranes, winches or the like

Definitions

  • the invention relates to a boom assembly for a toy loading crane. It is also directed to a toy loader crane with a corresponding boom arm assembly.
  • Cantilever assemblies for toy loader cranes are well known through public prior use. These often include a boom that is pivotally mounted on a boom stand. A disadvantage of these known boom assemblies is generally that the fixation of the boom in a pivot position relative to the boom stand is not reliable.
  • a toy is known that may be, for example, a toy crane.
  • the toy comprises on a vehicle platform a housing on which a boom is pivotally mounted about a pin and pivotable by means of a chain.
  • the chain is fastened to a cable drum inside the housing.
  • the cable drum is assigned a ratchet wheel with ratchet teeth.
  • the ratchet wheel includes a double-armed lever with a locking arm and an actuating arm. If the actuating arm is pivoted, the locking arm is disengaged from the ratchet wheel.
  • the cable drum can then turn.
  • the boom is pivotable by operating the chain.
  • the DE 25 04 101 A1 discloses a toy vehicle with a crane body.
  • the crane assembly comprises a pivotable cantilever arm with a toothed circular arc.
  • the toothed circular arc meshes with a gear which is rotatably mounted on the toy vehicle body and is associated with a hand winch.
  • An angle lever forms an automatic, releasable lock for the boom in the respective pivot position. In the locking position, the angle lever engages in the toothed circular arc.
  • a disadvantage of these two toy vehicles is that damage often occurs when playing these or in particular at their jibs.
  • the invention is therefore an object of the invention to provide a toy boom arm assembly for a toy loader crane, the boom arm is extremely safe and easy to fix in a pivotal position locally.
  • a corresponding toy loading crane should also be created.
  • the disadvantages of the prior art should also be overcome.
  • a switching device is provided which is displaceable between a release position and a fixing position.
  • the term "displaceable” is understood in particular that the switching device is pivotable and / or displaceable.
  • the cantilever arm is then released for pivoting. He is then preferably free to move, in particular independent of other steering components, such as ropes, chains or the like.
  • the fixing position of the switching device of the boom is fixed relative to the boom stand about the pivot axis. The cantilever arm is then not pivotable.
  • the spring device over which the two tooth devices in the engaged position can be biased can form an overload protection for the boom fixing device. Such an overload protection prevents damage to the toy vehicle when acting on the boom arm overload.
  • the first tooth device has a plurality of teeth arranged one behind the other.
  • the first dental device has at least four, more preferably at least six, teeth. It is expedient if the first toothed device is provided directly on the cantilever arm.
  • the second tooth device has at least two teeth which are arranged one behind the other. Preferably, exactly two teeth are present, between which there is a tooth receptacle for receiving a tooth of the first tooth device.
  • the second tooth device is directly or indirectly in communication with the boom base.
  • the cantilever arm can be fixed in several or different pivot positions. It is advantageous if in the fixing position of the switching device, the cantilever arm is fixed both in a first pivoting direction and in a direction opposite to the first pivoting direction, the second pivoting direction.
  • the cantilever fixing device forms a direct pivotal fixing device.
  • the pivot axis extends horizontally. Conveniently, the pivot axis extends in an upper end region of the boom stand.
  • the switching device is pivotally mounted on the boom stand. It is advantageous if the switching device can be pivoted through 360 °. Conveniently, at least one bearing body for the pivotable mounting of the switching device is provided on the boom stand.
  • the switch body according to claim 3 is designed as a kind of switching cam. It is advantageous if the at least one cam projection presses the second toothed device into engagement with the first toothed device when the cam projection is in a fixing position. It is advantageous if the switching device has two cam projections. Conveniently, the two cam projections are then arranged opposite one another. Conveniently, the at least one cam projection is then in fixing connection with the spring head or the locking insert, so that the switching device is fixed in its fixing position.
  • the at least one recognition projection according to claim 4 gives the user a noticeable or tactile feedback about the fixing position of the switching device. It preferably defines a surmountable dead center.
  • the switching device thus preferably assumes a stable position in its fixing position. To overcome the recognition advantage an increased effort is required. If the force is too low, there is no adjustment of the switching device. She then returns automatically to her previous position.
  • the spring head according to claim 5 can form an overload protection for the boom-Fixieivorraum.
  • a threshold torque is applied to the cantilever arm, it is preferable to compress the spring head so that the tooth connection between the first tooth device and the second tooth device is released.
  • the Arretiermon is moved away from the boom. The boom is then released.
  • the embodiments according to claim 6 and 7 indicate a preferred embodiment of the spring head.
  • the offset web is preferably formed elastically resilient.
  • the embodiment according to claim 9 leads to a boom assembly, which has a very simple structure. It is so easy to install.
  • the actuating handle according to claim 10 allows a simple displacement of the switching device, in particular pivoting of the switching device.
  • the actuating handle is preferably mounted in a location where it is easily accessible and manually operable. It is advantageous if the actuating handle is pivotable about the pivot axis.
  • the arresting insert when the torque is applied to the cantilever arm, preferably also the arresting insert is moved away from the cantilever arm. The boom is then released.
  • the spring head preferably allows a spring movement of the Arretierebenes or the second tooth means relative to the cantilever arm or the first tooth device. He is resiliently compressible.
  • the switch body on the at least one cam projection have a concave support surface, wherein in the fixing position of the switching device of the cam projection or one of the cam projections facing the Ver thoroughlyssteg and the support surface of this cam projection on the Ver thoroughlyssteg engages, wherein a curvature of this holding surface is adapted to a curvature of the dislocation web.
  • a switching device is extremely securely fixed in its fixing position by the Ver thoroughlyssteg.
  • the toy main body according to claim 15 is preferably designed as a toy vehicle.
  • Other alternative embodiments of the toy body such as a toy rail body, toy foundation or toy frame, are alternatively possible.
  • the toy loader crane shown comprises a toy main body 1 and a toy boom arm assembly 2 arranged on the toy main body 1.
  • the toy main body 1 is formed as a toy land vehicle and has a plurality of wheels 9 for rolling on a ground (not shown) ).
  • the boom arm assembly 2 in turn has an arranged on the toy body 1, elongated boom base 3 and a boom arm 4, which is pivotally mounted on the boom stand 3 about a horizontal pivot axis 5.
  • the boom 4 is pivotable up and down.
  • the boom stand 3 is preferably pivotable relative to the toy base body 1 about a vertical pivot axis or rotatable. It preferably runs vertically.
  • the cantilever arm assembly 2 has a cantilever fixing device 6.
  • the cantilever fixing device 6 is for fixing the cantilever arm 4 in a pivotal position.
  • the boom arm 4 is fixed and thus pivotable relative to the pivot axis 5.
  • the boom-fixing device 6, however, in its release position is, the boom 4 is pivotable about the pivot axis 5 for height adjustment.
  • the boom base 3 is formed in two parts and thus has a first boom pedestal half 7 and a second boom pedestal half 8.
  • the boom pedestal halves 7, 8 are assembled and thus form the boom stand in the assembled state 3. They are formed substantially identical with respect to a plane of symmetry.
  • Each boom pedestal half 7, 8 has a bearing lug 10 and 11 at the bottom.
  • the bearing lugs 10, 11 in the assembled state of the boom pedestal halves 7, 8 has a substantially round outer cross-sectional shape. They engage in a corresponding opening in the toy main body 1 and thus allow a storage of the boom stand 3 on the toy main body 1.
  • At each bearing lug 10, 11 is provided below a laterally projecting outside latching projection 12 and 13, which fixes the boom pedestal 3 to the toy main body 1 in the vertical direction and thus prevents lifting thereof from the toy main body 1.
  • the latching projections 12, 13 can engage, for example, under the toy base body 1 or in a corresponding lateral recess in the toy base body 1.
  • each boom pedestal half 7, 8 has a bearing head 14 and 15, respectively.
  • Each bearing head 14, 15 has an outer side wall 16.
  • the side walls 16 are in the assembled condition of the pedestal pedestal halves 7, 8 opposite each other. They then extend parallel to each other. From the side wall 16 of the bearing head 15, a bearing pin 17 jumps in the direction the bearing head 14 of the first boom pedestal half 7 before.
  • the bearing pin 17 is located substantially in the center of the bearing head 15 and the pivot axis 5 before. He is circular in cross-section or annular performs.
  • a recess 18 is formed, which is circular in cross-section.
  • Each bearing head 14 and 15 also has two lateral, opposing guide walls 19 which project from the respective side wall 16 perpendicular to the inside and preferably extend substantially vertically.
  • the guide walls 19 of the bearing heads 14, 15 bound together laterally a Arretierprin recording 20, which is opposite to the bearing lugs 10, 11 open at the top.
  • the Arretierprin receptacle 20 is bounded down to the bearing lugs 10, 11 by two diligentstege 21 projecting from the side walls 16 of the respective bearing heads 14, 15 perpendicular to the inside and are below with the corresponding guide walls 19 in connection. From the guide walls 19 jump to the outside outside stiffening ribs 50 perpendicular before.
  • a separate Arretierprinum 22 is inserted in the Arretiernies recording 20 .
  • the Arretierprinum 22 is movable in the vertical direction relative to the boom base 3. He has the top of a spring head 23 which is elastically resilient in the vertical direction relative to the boom base 3.
  • the spring head 23 has an upper carrier web 24 which carries a tooth device 25 substantially in the center.
  • the spring head 23 has a lower displacement web 26, which is arranged opposite to the carrier web 24.
  • the carrier web 24 and the dislocation web 26 are the end connected to each other at lateral connection points 27. From each junction 27 a sliding wall 28 of the locking insert 22 projects down to the bearing lugs 10, 11.
  • the sliding walls 28 are parallel and spaced from each other.
  • the carrier web 24 and the dislocation web 26 connect the sliding walls 28 with each other.
  • the carrier web 24 is compared to a direct connection between the connecting points 27 upwardly or convexly curved, while the dislocation web 26 is based on the direct connection between the connection points 27 curved downwards.
  • the carrier web 24 and the dislocation web 26 are thus curved in opposite directions to each other, so that there is a variable in size spring chamber 29 between them.
  • the carrier web 24 and the offset web 26 extend substantially perpendicularly or obliquely to the sliding walls 28.
  • the sliding walls 28 rest on the inside on the guide walls 19 or are arranged adjacent to the guide walls 19.
  • the sliding walls 28 extend parallel to the guide walls 19.
  • the bearing pin 17 is located between the sliding walls 28. It is disposed below the spring head 23.
  • the spring head 23 is arranged opposite to the foot webs 21.
  • the tooth device 25 has two teeth 30, wherein there is a tooth receptacle 31 between the two teeth 30.
  • the teeth 30 are arranged one behind the other. They have the same orientation.
  • a switching device 32 is pivotally mounted on the bearing pin 17, a switching device 32 is pivotally mounted.
  • the switching device 32 is pivotable between a fixing position and a release position. It has a non-circular cross-section switching body 33 and a cylindrical transmission pin 34 which is in rotationally fixed connection with the switch body 33 and axially projecting from the center thereof.
  • a central, end-side Bearing opening 35 is formed, which is cylindrical.
  • the bearing pin 17 engages in the bearing opening 35 for the pivotable mounting of the switching device 32 a.
  • the switch body 33 is designed as a cam-like Heidelbergellipse. It is elongated in cross section and has two opposite, flattened longitudinal ends 36, which form quasi cam projections. At the longitudinal ends 36 of the switch body 33 concavely curved, opposing holding surfaces 37. On either side of each support surface 37 so the switch body 33 each have a recognition projection 38a, which is provided on the laterally outer edges of the longitudinal ends 36.
  • the transmission pin 34 passes through the recess 18. It is rotatably or pivotably mounted in the recess 18. At the projecting from the recess 18 end of the transfer pin 34, an operating handle 38 is mounted rotatably.
  • the operating handle 38 is executed out of round and preferably has a plurality of retaining ribs 39 for better holding the same. He is plugged onto the transfer pin 34. He is manually operated from the outside.
  • the boom 4 is again formed in two parts. It is formed by a first boom arm half 40 and a second boom arm half 41.
  • the boom halves 40, 41 are made substantially identical with respect to a plane of symmetry. They are pluggable.
  • Each cantilever arm half 40, 41 has a side wall 42 and 43, respectively.
  • the side walls 42, 43 extend substantially parallel to each other.
  • Each Auslegerarm half 40, 41 also has at its the boom pedestal 3 facing the end 44 a bearing head part holder 45 which is bounded laterally outwardly by the respective side wall 42 and 43, respectively. Furthermore, each bearing head part holder 45 is bounded by a circular ring land 46 in the radial direction upwards and laterally. At each pitch ring land 46 several teeth 47 are arranged one behind the other in the circumferential direction. The teeth 47 extend parallel to each other. They extend perpendicular to the circumferential direction of the pitch circular webs 46.
  • the boom-fixing device 6 is formed by the teeth 30 and 47, which in turn form corresponding tooth devices.
  • a round bearing recess 48 is provided in each side wall 42, 43. In the assembled state of the boom arm-half 40, 41 are the bearing head part receptacles 45 facing each other and together form a bearing head receptacle.
  • the bearing heads 14, 15 are received in the bearing head receptacle.
  • the ring lands 49 run around the pivot axis. 5
  • the guide unit 51 comprises a base body 52 and a pull-out rod 53 displaceably guided in the base body 52.
  • the pull-out rod 53 is articulated on a bearing pin 54 which is disposed on the second boom pedestal half 8 adjacent to the upper end of its bearing lug 11.
  • the pull-out arm 53 has a corresponding bearing eye 55 for this purpose.
  • the bearing pin 54 penetrates a corresponding bearing lug 56 on the first boom pedestal half 7.
  • On the base 52 a bearing eye 57 is also provided above.
  • One adjacent to the side wall 42 arranged to the circular ring land 46 bearing pin 58 engages in the bearing eye 57 a.
  • the bearing pin 58 further protrudes into a corresponding bearing opening 59, which is arranged in the side wall 43 of the boom arm half 41.
  • a laterally projecting outward hinge pin 61 At the end of the bearing head opposite end 60 is located at each boom arm 40 and 41, a laterally projecting outward hinge pin 61. At the pivot pin 61, a pivot member 62 is articulated. For this purpose corresponding first bearing recesses 63 are provided on the pivoting part 62.
  • an extension part 64 is guided to extend the pivoting part 62 axially displaceable.
  • the pull-out part 64 can be pulled out from the front of the pivoting part 62 and, vice versa, can also be pushed back into the pivoting part 62.
  • a corresponding guide is provided for this purpose on the pull-out part 64 and / or on the swivel part 62.
  • a bearing receptacle 65 is formed in front, in which a blade, a gripper or the like can be stored.
  • second bearing recesses 66 Adjacent to the first bearing recesses 63 62 second bearing recesses 66 are provided on the pivot member.
  • the second bearing recesses 66 are arranged above the first bearing recesses 63.
  • bearing lugs 67 which are arranged on a first coupling member 68 on the outside.
  • bearing recesses 69 are provided on the first coupling member 68.
  • the bearing recesses 69 are connected to bearing bodies 70 of a second coupling member 71 in connection.
  • bearing lugs 72 are arranged on the second coupling member 71, which in corresponding lateral bearing recesses 73a on the boom arm halves 40, 41 adjacent to the pivot pin 61 engage.
  • a transmission rod 73 which is part of the second coupling member 71.
  • an elongated Ausziehisson 74 which is guided in a bushing body 75 slidably.
  • the socket body 75 is connected to a coupling part 76 in connection, which in turn is articulated to the boom 4.
  • a corresponding holder 77 is provided on the investor arm 4 approximately in the middle.
  • the switch body 33 is pivotable between a release position and a fixing position.
  • the fixation position the in Fig. 4 is shown, the switch body 33 is oriented vertically, that is, the longitudinal extent of the switch body 33 extends in a vertical direction.
  • One of the longitudinal ends 36 faces the displacement web 26.
  • the holding surface 37 of this longitudinal end 36 engages from below to the dislocation web 26.
  • the curvature of this holding surface 37 is adapted to the curvature of the displacement web 26.
  • About this holding surface 37 and the displacement web 26 is applied from below a force acting upward in the direction of the teeth 47 movement force on the locking insert 22 so that a selected tooth 47 engages positively in the tooth holder 31.
  • the locking insert 22 is in an upper position.
  • the pivotal position of the cantilever arm 4 is dependent on the selected tooth 47. By this engagement, the boom 4 is fixed relative to the boom base 3.
  • the teeth 47 are disengaged from the tooth receptacle 31.
  • the release order is in Fig. 3 shown.
  • the boom 4 is pivotable relative to the boom base 3 about the pivot axis 5. It can then be fixed again in another pivot position.
  • the pivoting position specifies the then engaging in the tooth holder 31 tooth 47.
  • the locking insert 22 is thus displaceably guided in the Arretiergen recording 20 between the upper position and the lower position.
  • the spring head 23 When an overload acts on the cantilever arm 4, the spring head 23 is compressed while reducing the spring space 29. The dislocation bar 26 is bent. In this case, the locking insert 22 is moved away from the teeth 47. The second tooth device 25 comes out of engagement with the teeth 47. The locking insert 22 thus forms an overload protection that releases the tooth connection between the two tooth devices in case of overload and thus prevents damage to the toy loading crane, in particular on the boom or its storage. If the overload is no longer present, the spring head 23 through the Ver thoroughlysegeg 26 again pushed up to the teeth 47. There is then again a tooth connection between the two tooth devices.

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Claims (15)

  1. Module de construction d'un bras de potence pour une grue de chargement-jouet, comprenant
    a) un support de bras de potence (3),
    b) un bras de potence (4), qui
    i) est logé sur le support de bras de potence (3), et
    ii) peut être pivoté autour d'un axe de pivotement (5) par rapport au support de bras de potence (3) pour le réglage en hauteur, et
    c) un dispositif de fixation du bras de potence (6) pour l'immobilisation du bras de potence (4) dans une position de pivotement choisie, le dispositif de fixation du bras de potence (6) comprenant
    i) un dispositif de réglage (32), pouvant être actionné, pouvant être déplacé entre une position de libération, dans laquelle le bras de potence (4) peut être pivoté autour de l'axe de pivotement (5) par rapport au support du bras de potence (3), et une position d'immobilisation, dans laquelle le bras de potence (4) est fixé autour de l'axe de pivotement (5) par rapport au support du bras de potence (3), et
    ii) un premier système de denture (47), prévu sur le bras de potence (4), et un second système de denture (25), prévu sur le support du bras de potence (3), le premier système de denture (47) et le second système de denture (25) étant en prise l'un dans l'autre dans la position d'immobilisation du dispositif de réglage (32), caractérisé en ce que
    d) le second système de denture (25) est prévu sur une pièce de blocage (22), qui est logée dans un réceptacle de pièce de blocage (20) du support du bras de potence (3), et qui peut être déplacé par un déplacement du dispositif de réglage (32) par rapport au premier système de denture (47), le second système de denture (25) étant précontraint dans la position en prise avec le premier système de denture (47) par l'intermédiaire d'un système de ressort (23).
  2. Module de construction d'un bras de potence selon la revendication 1 caractérisé en ce que le dispositif de réglage (32) peut être déplacé par pivotement sur le support de bras de potence (3).
  3. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que le dispositif de réglage (32) présente un corps de réglage (33) qui est conçu non circulaire et présente au moins une avancée de came (36) pour mettre en prise le second système de denture (25) avec le premier système de denture (47).
  4. Module de construction d'un bras de potence selon la revendication 3 caractérisé en ce qu'au moins une avancée de détection (38), voisine d'une avancée de came (36), avançant latéralement, est prévue sur le corps de commutation (33) pour la détection de la position d'immobilisation.
  5. Module de construction d'un bras de potence selon l'une des revendications 1 à 4 caractérisé en ce que la pièce de blocage insérée (22) en tant que système de ressorts présente une tête de ressort (23) pour permettre un mouvement en élasticité du dispositif de réglage (32) par rapport au premier système de denture (47).
  6. Module de construction d'un bras de potence selon la revendication 5 caractérisé en ce que la tête de ressort (23) présente une barre de déplacement (26) qui s'étend au moins partiellement jusqu'au dispositif de réglage (32) et est en relation d'actionnement direct avec le dispositif de réglage (32) dans la position d'immobilisation.
  7. Module de construction d'un bras de potence selon les revendications 5 ou 6 caractérisé en ce que le second système de denture (25) est prévu sur une barre support (24) qui s'étend au moins partiellement en partant du dispositif de réglage (32) et qui est une composante de la tête de ressort (23).
  8. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que le premier système de denture (47) présente plusieurs dents disposées les unes derrière les autres qui sont arrangées sur un corps de cercle partiel (46) sur le bras de potence (4).
  9. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que le dispositif de réglage (32) peut être pivoté autour de l'axe de pivotement (5).
  10. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce qu'une poignée d'actionnement (38) est solidement en relation avec le dispositif de réglage (32) pour le déplacement du dispositif de réglage (32).
  11. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que la tête de ressort (23) est comprimée de telle manière que la liaison par dentures entre le premier système de denture (47) et le second système de denture (25) se libère lorsqu'un moment de rotation se situant au delà d'une valeur de seuil est appliqué sur le bras de potence (4).
  12. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que la pièce de blocage (22) est insérée dans une pièce de blocage complémentaire (22).
  13. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que le second système de denture (25) est en relation d'engrenage avec le premier système de denture (47) dans une première position de la pièce de blocage (22), tandis qu'il est hors de portée avec le premier système de denture (47) dans une seconde position de la pièce de blocage (22).
  14. Module de construction d'un bras de potence selon l'une des revendications précédentes caractérisé en ce que le dispositif de réglage (32) adopte une position stable dans sa position d'immobilisation.
  15. Grue de chargement-jouet comprenant
    a) un corps de base de jouet (1) et
    b) un module de construction d'un bras de potence (2) selon l'une des revendications précédentes, disposé sur le corps de base de jouet (1).
EP13150826.9A 2012-01-27 2013-01-10 Module de construction de potence pour grue de chargement-jouet Active EP2620194B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102012201191A DE102012201191A1 (de) 2012-01-27 2012-01-27 Auslegerarm-Baugruppe für einen Spielzeug-Ladekran

Publications (2)

Publication Number Publication Date
EP2620194A1 EP2620194A1 (fr) 2013-07-31
EP2620194B1 true EP2620194B1 (fr) 2014-01-29

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EP13150826.9A Active EP2620194B1 (fr) 2012-01-27 2013-01-10 Module de construction de potence pour grue de chargement-jouet

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Country Link
EP (1) EP2620194B1 (fr)
DE (1) DE102012201191A1 (fr)
ES (1) ES2448826T3 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3485108B1 (fr) 2016-07-12 2020-05-27 Schwing GmbH Manipulateur de grande dimension à mât articulé optimisé en termes de poids

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1063853A (fr) * 1952-05-23 1954-05-07 Perfectionnements apportés aux jouets en forme de véhicule
DE1755354U (de) * 1957-09-06 1957-10-31 Max Ernst Spielzeug mit seiltrommel.
DE2504101A1 (de) * 1975-01-31 1976-08-05 Schroedel Ideal Sport Spiel Spielfahrzeug
DE9401371U1 (de) * 1994-01-27 1994-03-17 Bruder Spielwaren Gmbh & Co Kg Sperrgetriebe für Teleskopvorrichtungen an Spielfahrzeugen

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3485108B1 (fr) 2016-07-12 2020-05-27 Schwing GmbH Manipulateur de grande dimension à mât articulé optimisé en termes de poids

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Publication number Publication date
EP2620194A1 (fr) 2013-07-31
ES2448826T3 (es) 2014-03-17
DE102012201191A1 (de) 2013-08-01

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