EP2419655A1 - Traverse pour un organe d'un dispositif de guidage de ligne - Google Patents

Traverse pour un organe d'un dispositif de guidage de ligne

Info

Publication number
EP2419655A1
EP2419655A1 EP10714880A EP10714880A EP2419655A1 EP 2419655 A1 EP2419655 A1 EP 2419655A1 EP 10714880 A EP10714880 A EP 10714880A EP 10714880 A EP10714880 A EP 10714880A EP 2419655 A1 EP2419655 A1 EP 2419655A1
Authority
EP
European Patent Office
Prior art keywords
actuating part
transverse web
tool
crosspiece
recess
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.)
Withdrawn
Application number
EP10714880A
Other languages
German (de)
English (en)
Inventor
Günther BLASE
Georg Theiss
Andreas Hermey
Frank Blase
Harald Nehring
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.)
Igus GmbH
Original Assignee
Igus GmbH
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.)
Filing date
Publication date
Application filed by Igus GmbH filed Critical Igus GmbH
Publication of EP2419655A1 publication Critical patent/EP2419655A1/fr
Withdrawn legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16GBELTS, CABLES, OR ROPES, PREDOMINANTLY USED FOR DRIVING PURPOSES; CHAINS; FITTINGS PREDOMINANTLY USED THEREFOR
    • F16G13/00Chains
    • F16G13/12Hauling- or hoisting-chains so called ornamental chains
    • F16G13/16Hauling- or hoisting-chains so called ornamental chains with arrangements for holding electric cables, hoses, or the like
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0456Ladders or other supports

Definitions

  • the invention relates to a transverse web for connecting two side parts of a member of a cable guide device, wherein the transverse web can be locked at least at one of its ends with the side part to be connected there, the crosspiece has a toggle lever closure with an actuating part and a locking part, the locking part via a toggle with the Actuating part is connected, the actuating part is pivotally connected to an end-side bearing portion in a bearing about a pivot axis with the transverse web and the locking part by means of the actuating part at least substantially in the longitudinal direction of the crosspiece to the connectable to the side part end of the cross bar is displaceable in a locking position in which the transverse web is lockable with the side part and the actuating part is integrated in the outer contour of the transverse web, and is displaceable away from said end into an unlocking position, in the transverse web is detachable from the side part and the actuating part for its outer actuation projects beyond the outer contour of the transverse web by a free end remote from
  • the invention is therefore based on the object to provide a crossbar of the type mentioned, the toggle lock is easier to handle.
  • the stated object is achieved by the features of claim 1.
  • Advantageous developments are described in the appended subclaims.
  • the object is achieved in particular by the fact that the actuating member by means of a tool from the locking position in one step is fully pivoted into its unlocking position and that in a free end of the actuating member and the pivot axis spaced engagement portion has a lateral recess for engagement of the tool in the Crosspiece and is provided for initiating a force by means of the tool with at least one force component in the direction of pivotal movement of the actuating member in its unlocking position, wherein the recess is laterally bounded by the opening edge and the actuating part.
  • the actuating member can be pivoted by means of the tool in one step from its locking position to the unlocked position.
  • the actuating part is by means of a lever action the tool can be actuated, whereby a manual application of force by means of the tool is facilitated.
  • the opening edge may be formed in the engagement region of the lateral recess as a lever support or fulcrum for the tool.
  • the tool via a tool load arm, which extends in the insertion position of the tool from the opening edge of the recess to an attack point, attack on the actuating part.
  • a force moment can be exerted on the load arm accordingly.
  • the load arm can only comprise the short tool end, while the power arm can be formed by the shaft and, corresponding to the attacking hand of a user, by a part of the handle.
  • the Malawiarm may include a multiple of horrlastarmes.
  • the opening edge or the recess can be visually clearly emphasized visually conspicuous and / or self-explanatory with respect to the opening process by visual cues, such as printed and / or molded arrows and / or pictograms.
  • visual cues such as printed and / or molded arrows and / or pictograms.
  • a said lateral recess for Intervention of the tool can be arranged.
  • the engagement openings are preferably at the same height with respect to the longitudinal extent of the actuating part, ie the engagement openings are opposite one another with respect to the longitudinal axis of the actuating part.
  • the recess is slot-shaped in the locking position of the actuating part.
  • the recess may extend longitudinally in the longitudinal direction of the transverse web.
  • the recess may be structurally formed by the opening and / or the actuating part having an incision in the engagement area.
  • the expansion can be formed by the actuating part being laterally spaced from the opening edge in the engagement region.
  • the recess is designed to widen inward. As a result, a correspondingly widening space for the movement of the tool is created.
  • the recess may wedge-shaped or conically widen.
  • the tool can be more easily inserted into the crossbar and, with the opening edge as a fulcrum to be pivoted in the space against the operating part. With its attachment to the opening edge as a lever support or fulcrum, the introduced to the cross bar end of the tool can be easily positioned attacking the operating part.
  • the actuating part may, as a limitation of the recess, have a guide surface for the tool.
  • the guide surface can be adapted according to the tool preferably to be used.
  • the guide surface can be bounded laterally with the formation of a groove, so that tool can strike laterally to its leadership.
  • the tool can also engage in a designated opening in the actuating part.
  • a planar guide surface may be provided, which may include an angle of less than 90 °, preferably less than 70 ° with the pivot axis.
  • the bearing portion may have a swivel axis forming transverse bead to form a pivot joint for the actuating part.
  • the Querwulst can extend over the entire width of the operating part. Further, the Querwulst be bent away from an outwardly facing top of the operating part. As a result, a complete sinking of the operating part in the crossbar in the locking position of the operating part allows.
  • the bearing section may have two projections which extend essentially in the longitudinal direction of the transverse web and which are designed as engagement arms.
  • These engagement arms can each have an end-side, in each case a portion of the Querwulst forming thickening.
  • the storage can have a Querwulst adapted, transverse Lagerernut to form the pivot joint, in which the Querwulst is preferably pivotally secured to form a locking connection in a locking seat on the crosspiece.
  • the engagement arms may be spaced apart from one another with respect to the direction of the pivot axis and may preferably be arranged laterally on the outside.
  • the engagement arms can be resiliently deflected in the direction of the pivot axis so that they engage in the storage position under at least slight elastic bias in the bearing, wherein the spring forces are directed opposite to each other. Thanks to the springy intervention arms, the insertion of the Toggle lock in the cross bar or the insertion of the operating part facilitates in the pivot joint by the operating part can be pressed under resilient deflection of the engaging arms in the storage in the cross bar into it. In addition, the toggle closure can be anchored more strongly in the crosspiece due to the elastic bias.
  • the engagement arms can be locked in storage.
  • the engagement arms may be formed like a hook, wherein preferably their end-side thickening can each protrude laterally in the direction of the pivot axis.
  • the thickenings are each formed so that they taper outwardly in the direction of the free end and tapered in the longitudinal direction of the actuating member conical or wedge-like.
  • an inclined plane can be formed on the projections, via which the engagement arms are easier to deflect elastically with the projections engaging in the mounting.
  • the bearing portion may extend over the entire width of the stop element.
  • To form the engagement arms may be provided at the end two longitudinally extending slots.
  • a central stop element extending in the direction of the engagement arms can be formed to limit the elastic deflection of the engagement arms.
  • the stop member may be disposed between the engaging arms and spaced therefrom respectively over the slot.
  • the stop member may have a same cross-sectional shape as the engagement arms with the thickening here to form a central portion of the Querwulst.
  • the stop member may limit the elastic deflection of the engagement arms towards the center of the bearing portion. The middle part of the transverse bulge contributes to the stabilization of the Swivel joint at.
  • the slots may extend to the bead and, with respect to the pivot axis, preferably alone towards the center. As a result, an optimum can be achieved between a free space provided by the slot for pivoting the associated engagement arm and a mechanical stability of the stop element.
  • the toggle lever lock can be designed in particular with regard to the design of the toggle lever as a lever part and the locking part, as it is explicitly described in DE 20 2007 005 566 Ul.
  • the actuating part except for the features described above may be the same or similar to the actuating part of the locking decision in DE 20 2007 005 566 U1. Therefore, this disclosure content of DE 20 2007 005 566 Ul expressly incorporated by reference.
  • the toggle lever may have a lever part which is connected at a first end via a first hinge to the actuating part and at a first opposite, second end via a second hinge with the locking part.
  • the hinges are preferably designed as film hinges.
  • the actuating part, the lever part and the locking part have stops which limit the pivoting of the lever part relative to the actuating part and the locking part into the respectively substantially extended position.
  • the flap part projects at a region of greater material thickness of the actuating part.
  • Operating part and toggle can be connected to each other in the locking position by means of a latching connection, wherein the latching connection with pivoting of the
  • the actuating part may preferably have on a lower side of its free end a pointing to the toggle latch, which in the locking position in one at the top of the
  • Knee lever provided latching groove can be latched.
  • Locking connection can also be formed by interlocking latching hooks on the underside of the free end or at the top of the toggle lever.
  • a member of a plurality of mutually pivotable members composable cable guide means may comprise two opposite side parts and a crosspiece connecting them according to one of the embodiments described above.
  • FIG. 1 is a perspective plan view of a web with two toggle fasteners in an unlocked position
  • 2 shows a side view of the transverse web according to FIG. 1, wherein a left-hand part of the transverse web is shown in a longitudinal section
  • FIG. 3 is a perspective plan view of one end of the crossbar according to FIG. 1, wherein the knee lever lock is shown in a locking position, and a tool engaging in the toggle-type lock,
  • FIG. 5 shows a detail according to FIG. 4 with the bearing section
  • Fig. ⁇ is a side view of the toggle closure of FIG. 4 and
  • FIG. 3 additionally shows a tool W designed as a slotted screwdriver S, which acts on the toggle closure 2 in order to actuate it.
  • FIGS. 4-7 the toggle lever closure 2 is reproduced in different views and enlarged detail.
  • the toggle closure 2 of the embodiment of the crosspiece 1 shown here is formed as a one-piece plastic injection-molded part.
  • actuating part 3 It has an actuating part 3 and a locking part 4, wherein the locking part 4 is connected via a toggle lever 5 with the actuating part 3.
  • the actuating part 3 is mounted with an end-side bearing portion 6 in a bearing 7 of the cross bar 1 about a pivot axis s pivotable in or on the cross bar 1.
  • a toggle lever closure 2 is provided at each of its two ends.
  • the respective locking member 4 by means of the associated actuating member 3 in the longitudinal direction 1 of the crosspiece 1 to the connectable with: the side part end of the cross bar 1 in a locking position inside, in which the cross bar 1 with the side part S can be locked , Accordingly, the respective locking member 4 is displaceable away from the associated end in an unlocking position in which the cross bar 1 from the side part S is releasable.
  • the actuating part 3 is completely integrated in the outer contour of the transverse web 1 in the locking position. As shown in FIGS.
  • the actuating part 3 extends through the outer contour of the transverse web 1 with a free end 8 spaced from the bearing section 6 by means of an opening 9 provided on the outside of the transverse web 1, so that it can be gripped manually to actuate it.
  • the actuating part 3 by means of the tool W in one step from the locking position shown in Figure 3 is fully pivoted into the unlocking position shown in Figures 1 and 2.
  • a lateral recess 11 between the opening edge 12 of the opening 9 and actuating part 3 is provided in a distance to the free end 7 of the actuating part 3 and the pivot axis s engagement portion 10 of the actuating part 3, in which the tool W in can engage the cross bar 2.
  • the recess 11 is arranged in the transverse web 2 and the tool W, here the flat-head screwdriver S, adapted that the slotted screwdriver S attack with its working end A in the cross bar 1 on the underside of the actuating part 3 and a force with at least one force component in Direction of the pivotal movement of the actuating part 3 can initiate into its unlocking position.
  • the recess 11 is bounded laterally by the opening edge 12 and the actuating part 3.
  • the recess 11 is slit-shaped, wherein longitudinally extending recess in the longitudinal direction 1 of the crossbar.
  • the actuating part 3 is movable by means of a lever action of the tool W.
  • the opening edge 12 in the engagement region of the recess 11 serves as Hebelauflager or fulcrum for the slotted screwdriver S.
  • the slotted screwdriver S is inserted with its flat working end A in the recess 11 until it engages below a lower edge 13 of the operating part 3. Furthermore, it is supported on the opening edge 12.
  • the slotted screwdriver S via a tool load arm Wl, which extends in the insertion position of the slotted screwdriver S from the opening edge 12 to the lower edge 14 of the actuating member 3, attack the actuating member 3.
  • the remaining length of the slotted screwdriver S from the opening edge 12 to its handle end G can serve as horrkraftarm Wk here.
  • the tool force arm Wk is many times larger than the tool load arm W1, so that the actuating part 3 can be levered out of the transverse web 1 using little force. Since the recess 11 is arranged at a small distance from the pivot axis s, the actuating part 3 can be brought from the locking position into the unlocked position in one step by means of the flat-head screwdriver s become .
  • the operating part can be brought in one step by means of the flat screwdriver S only in one step from the locking position completely in the Endriegelungsposition when the engagement portion 10 on the operating part 3 is not on the toggle lever 5 and the locking part 4 between the connection region of the actuating part 3 and the pivot axis s of the actuating part 3 is arranged. Only then can the operating part 3 by means of the lever action of the flat screwdriver S in one step be fully pivoted into its unlocking position, the opening edge 12 in the engagement portion 10 of the recess 11 serves as a lever support for the slotted screwdriver S.
  • the recess 11 widened inwardly wedge-shaped.
  • the guide surface 14 forms, with the pivot axis s an angle smaller than 90 °. This is clearly evident in particular in FIGS. 4 and 5.
  • the guide surface 14 is bounded laterally by stops 15. In this way it can be prevented that the working end A shifts with its introduction into the recess 11 in the longitudinal direction 1.
  • two recesses 11 are provided on both sides and opposite each other, which can be used optionally for the introduction of the tool W.
  • On the upper side of the actuating part 3 also arrows 16 are attached, which each point to an associated recess 11.
  • the actuating part 3 has the end of its bearing section 6 a thickening 18 formed as a transverse bead 17, which engages in the mounting 7 for forming a pivot joint 19.
  • the bearing 7 in turn has a bearing groove 20 for receiving the Querwulst 17.
  • two slots 21 are introduced into the bearing section 6. Through these slots 21, as shown in Figures 4 and 5, two lateral engagement arms 22 formed with the end-side thickening 18.
  • the end-side thickening 18 again forms a part of the transverse bead 17 and thus a part of the pivot axis s, wherein the transverse bead 17 protrudes laterally beyond the outer contour of the actuating part 3 or the bearing portion 6.
  • the engagement arms 22 are hook-shaped.
  • the engagement arms 22 are resiliently deflectable in the direction of the pivot axis s.
  • the bearing groove 20 ends laterally in each case in a bearing opening 23, which is introduced into a side wall 24 of the transverse web 1.
  • the operating part 3 With the installation of the toggle closure 2 in the crossbar 1, the operating part 3 is inserted with its bearing portion 6 in the storage 7.
  • the engagement arms 22 are pivoted in the transverse direction to the center of the bearing section 6, wherein the end-side thickening 18 of the engagement arms 22 slide on the side walls 24 of the cross bar 1.
  • the engagement arms 22 Upon reaching the bearing opening 23, the engagement arms 22 swing with their final thickening 18 laterally into the bearing opening 23, so that the actuating part 3 is latched in the bearing 7.
  • the engaging arms 22 can engage under slight elastic bias in the respective associated bearing opening 23.
  • the toggle closure 2 can thus be locked in a simple manner with its actuating part 3 in the transverse web.
  • the thickenings 18 of the engagement arms 22 are formed so that they taper in a wedge-like manner in the direction away from the free end, forming a guide surface 25 pointing outwards in each case.
  • the guide surfaces 25 act as inclined planes when the operating part 3 is mounted with its bearing portion 6 in the bearing 7 of the cross bar 1 in.
  • a stop element 26 for limiting the elastic deflection of the engagement arms 22 is provided centrally and between the engagement arms 22.
  • the stop element 26 has a same longitudinal cross-section as the engagement arms 22 with the end-side thickening 18 to form the ' pivot axis s.
  • the stop member 26 tapers in the direction of the free end 8 of the actuating member 3 away.
  • the thickenings 18 each have a flattening 27 on the upper side and on the underside, whereby a reduction in cross-section is achieved at this point.
  • the Querwulst 17 can be inserted easily in a certain position in the storage 20, in which the flattening 27 at the same time serves as a sliding surface on the opening edges 28 of the bearing groove 20.
  • the opening edges 28 of the bearing groove 20 are spaced apart from each other at a distance which is smaller than the diameter of the here circular cross-section of the bearing groove 20.
  • FIGs. 6 and 7 another advantageous feature of the toggle closure 2 is shown by the underside of the Operating parts 3 and the upper side of the toggle lever 5 each have a latching hook 29 is arranged. These latching hooks 29 engage in the locking position, not shown here, in which the toggle lever lock 2 is arranged elongated, forming a latching connection with each other. As a result, the toggle lever lock 2 is held flat and elongate within the outer contour of the crosspiece 1 in the locking position.
  • the knee lever 5 is arranged in the locking position below a tab portion 30.
  • the tab portion 30 is used for manual operation part 3 from the unlocked position to the locking position.
  • the toggle lever 5 is connected via film hinges 31 with the actuating part 3 and with the locking part 4.
  • the locking member is slidably mounted in the transverse web 1 in the longitudinal direction 1. With the actuation of the actuating part 3, the locking part 4 can be moved back and forth via the toggle lever 5 in the transverse web 1 between the locking position and the unlocking position.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Buckles (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Clamps And Clips (AREA)
  • Slide Fasteners (AREA)
  • Soil Working Implements (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Abstract

L'invention concerne une traverse destinée à relier deux pièces latérales d'un organe d'un dispositif de guidage de ligne, comprenant une fermeture à genouillère (2) avec une pièce d'actionnement (3) et une pièce de verrouillage (4). Selon l'invention, il est prévu que la pièce d'actionnement (3) puisse être pivotée d'un seul coup à l'aide d'un outil (B) entre la position de verrouillage et la position de déverrouillage et que, dans une zone d'engagement (10) distante de l'extrémité libre (8) de la pièce d'actionnement (3) et l'axe de pivotement (s), un décrochement latéral (11) est prévu pour l'engagement de l'outil (W) dans la traverse (1) et l'application d'une force à l'aide de l'outil (W), avec au moins une composante de force allant dans le sens du mouvement de pivotement de la pièce d'actionnement (3) vers sa position de déverrouillage. Le décrochement (11) est délimité latéralement par le bord (12) de l'ouverture (9) et par la pièce d'actionnement (3).
EP10714880A 2009-04-17 2010-04-15 Traverse pour un organe d'un dispositif de guidage de ligne Withdrawn EP2419655A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202009005737U DE202009005737U1 (de) 2009-04-17 2009-04-17 Quersteg für ein Glied einer Leitungsführungseinrichtung
PCT/EP2010/054978 WO2010119101A1 (fr) 2009-04-17 2010-04-15 Traverse pour un organe d'un dispositif de guidage de ligne

Publications (1)

Publication Number Publication Date
EP2419655A1 true EP2419655A1 (fr) 2012-02-22

Family

ID=41501639

Family Applications (1)

Application Number Title Priority Date Filing Date
EP10714880A Withdrawn EP2419655A1 (fr) 2009-04-17 2010-04-15 Traverse pour un organe d'un dispositif de guidage de ligne

Country Status (7)

Country Link
US (1) US20120134739A1 (fr)
EP (1) EP2419655A1 (fr)
JP (1) JP5442848B2 (fr)
KR (1) KR20110138411A (fr)
CN (1) CN102459950B (fr)
DE (1) DE202009005737U1 (fr)
WO (1) WO2010119101A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202009005737U1 (de) * 2009-04-17 2010-01-07 Igus Gmbh Quersteg für ein Glied einer Leitungsführungseinrichtung
DE202017102147U1 (de) * 2017-04-10 2017-05-05 Igus Gmbh Leitungsdurchführung, insbesondere Zugentlastung für eine Energieführungskette

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4590961A (en) * 1985-08-16 1986-05-27 Cooper Industries, Inc. Modular rolling conductor support
JP3356659B2 (ja) * 1996-10-16 2002-12-16 株式会社椿本チエイン ケーブルドラグチェーン
DE19919076C2 (de) * 1999-04-19 2001-08-30 Igus Gmbh Energieführungskette
JP3671843B2 (ja) * 2000-12-28 2005-07-13 トヨタ車体株式会社 クランプ
JP2007152927A (ja) * 2005-06-29 2007-06-21 Kokuyo Co Ltd ファイル、綴じ具、及び作動制限部材
JP4476204B2 (ja) 2005-09-29 2010-06-09 株式会社椿本チエイン ケーブル類保護案内装置
DE102005061775A1 (de) * 2005-12-23 2007-08-02 Kabelschlepp Gmbh Kettenglied mit einer Verriegelungseinrichtung
DE202007005566U1 (de) * 2007-04-16 2007-08-02 Igus Gmbh Quersteg und Glied einer Leitungsführungseinrichtung mit Quersteg
DE202009005737U1 (de) * 2009-04-17 2010-01-07 Igus Gmbh Quersteg für ein Glied einer Leitungsführungseinrichtung

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2010119101A1 *

Also Published As

Publication number Publication date
KR20110138411A (ko) 2011-12-27
JP5442848B2 (ja) 2014-03-12
CN102459950A (zh) 2012-05-16
JP2012524218A (ja) 2012-10-11
DE202009005737U1 (de) 2010-01-07
US20120134739A1 (en) 2012-05-31
CN102459950B (zh) 2014-02-26
WO2010119101A1 (fr) 2010-10-21

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