EP3165693A1 - Dispositif basculant destiné à assembler un mât et son emplanture - Google Patents

Dispositif basculant destiné à assembler un mât et son emplanture Download PDF

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Publication number
EP3165693A1
EP3165693A1 EP16195598.4A EP16195598A EP3165693A1 EP 3165693 A1 EP3165693 A1 EP 3165693A1 EP 16195598 A EP16195598 A EP 16195598A EP 3165693 A1 EP3165693 A1 EP 3165693A1
Authority
EP
European Patent Office
Prior art keywords
mast
plate
base
base plate
tilting
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.)
Granted
Application number
EP16195598.4A
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German (de)
English (en)
Other versions
EP3165693B1 (fr
Inventor
Jähne Benjamin
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.)
Jaehne Fuer Produktinnovation GmbH
Original Assignee
JAHNE fur PRODUKTINNOVATIONEN GmbH
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Publication of EP3165693A1 publication Critical patent/EP3165693A1/fr
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Publication of EP3165693B1 publication Critical patent/EP3165693B1/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H12/00Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures
    • E04H12/18Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures movable or with movable sections, e.g. rotatable or telescopic
    • E04H12/187Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures movable or with movable sections, e.g. rotatable or telescopic with hinged sections

Definitions

  • the invention relates to a device for connecting a mast with a ground floor fixed mast base.
  • a mast base When erecting masts of all kinds, it is customary first to anchor a mast base in the ground.
  • An example of a suitable mast base shows the document EP 1 643 056 B1 .
  • the anchoring can be done for example by ramming piles or pipes or by a concrete foundation. Then the mast is erected with a crane, brought into position and firmly connected to the mast base.
  • the mast can be separated from the mast base and lowered, for example by means of a crane, so that the maintenance work on the ground can be carried out.
  • this solution is very expensive, especially when the mast is placed on a difficult for a crane location.
  • the two solutions outlined for maintenance may significantly affect the usability of traffic routes located near the mast. Frequently, railway lines or roads where the mast to be serviced must be blocked or an environment of the mast must be suitably secured.
  • connection between the mast and mast base is thus made via a base plate which is connected to the mast base, and a tilting plate which is connected to the mast.
  • the base plate and the tilting plate are referred to as plates for the sake of simplicity. You may have a plate-shaped basic shape, but also deviate from it.
  • base and / or tilting plate may also have a pipe section shape with a mounting flange or a block or box-shaped shape.
  • the mast connected to the tilting plate can be tilted relative to the mast base connected to the base plate.
  • the device offers the possibility to rotate the mast relative to the mast base.
  • the device has a rotary guide which is formed either on the base plate or on the tilting plate. The rotational movement takes place about a longitudinal axis of the mast, which is arranged substantially vertically in the erected position of the mast.
  • the longitudinal axis of the mast may extend along a central axis of a vertical mast section, but also at a lateral distance therefrom.
  • the first attachment means serves to fix the tilting plate and the base plate relative to each other in a substantially parallel position. This position corresponds to an upright position of the mast. So that base plate and tilting plate after performing a tilting movement exactly in the intended, substantially parallel Enter position, the base plate may have a centering mandrel which engages when erecting the mast in a bore of the tilting plate, or vice versa.
  • the second fastening device can block the rotational movement.
  • the invention includes two alternatives.
  • the rotary guide is assigned to the base plate and causes a guide of a rotational movement of the base plate relative to the mast base.
  • the second fastening device serves for fixing the base plate relative to the mast base.
  • the rotary guide may be associated with the tilting plate and cause a guiding of a rotational movement of the mast relative to the tilting plate.
  • the second fastening device serves for fixing the tilting plate relative to the mast.
  • the invention enables a controlled lowering and repositioning of the mast in a position particularly suitable for the upcoming maintenance work. Due to the possibility to rotate the mast relative to the mast base, in particular a lateral boom of the mast can first be displaced in a plane in which the mast is to be tilted. During the execution of the rotational movement tilting of the mast can be excluded by means of the first fastening device. After carrying out the rotational movement, the desired rotational position can be fixed with the aid of the second fastening device, so that it is retained for a subsequent tilting operation.
  • the procedure made possible by the invention is ideal for, for example, servicing a mast erected laterally on a track system, which has a lateral boom located in the erected state above the track system.
  • the mast described and the subsequent tilting the lateral boom can be kept free of a catenary and a space immediately above the track system become. This minimizes the impact of rail traffic.
  • the entire mast, including the side boom is easily accessible from the side of the track, so that maintenance can be carried out essentially without affecting the rail traffic.
  • the mast can be brought back into its working position in the reverse order, namely by first reversing the tilting movement and fixing the erected position of the mast with the aid of the first fastening device.
  • the rotational movement can also be reversed again and the mast can be fixed in its working position by means of the second fastening device.
  • the base plate and the tilting plate are hingedly connected together by a bolt.
  • the bolt can run along two lateral edges of the two plates. In this way, a simple and robust determination of the pivot axis is achieved.
  • the bolt may be passed through openings in the base plate and in the tilting plate.
  • the bolt may be materially connected to the base plate or with the tilting plate, in particular by welding.
  • the first fastening device has at least one threaded bolt which can be inserted into an opening of the base plate and into an opening of the tilting plate.
  • the threaded bolt clamps base plate and tilt plate together. This achieves an easy-to-handle and secure attachment.
  • the opening of the base plate or the opening of the tilting plate for the at least one threaded bolt of the first fastening device has a threaded bore into which the at least one threaded bolt of the first fastening device can be screwed.
  • a threaded portion of the threaded bolt inserted through both openings and secured with a nut.
  • the screwing into a threaded hole of the relevant plate itself represents a further simplification.
  • the relevant plate can simply be provided with sufficient strength to allow a secure screw connection.
  • the base plate and the tilting plate have a square basic shape and the first fastening device has four threaded bolts, wherein the associated openings in the base plate and in the tilting plate are arranged on the longitudinal edges of the base plate and tilting plate.
  • the first fastening device must be able to absorb large loads, for example during storms. Large spaced apart threaded bolts on the longitudinal edges of the panels in question can absorb these loads well.
  • the rotary guide on a pin or an opening which determines a rotational axis of the rotational movement may have a pin which engages in a corresponding opening in the mast base.
  • the pin can be circular cylindrical.
  • the pin may be solid or hollow, for example in the form of a pipe section.
  • the base plate may have a circular-cylindrical opening, for example, into which engages a corresponding pin on the mast base.
  • the rotary guide is formed on the tilting plate. Also there it can be realized for example in the form of a pin or an opening, as explained to the base plate.
  • the rotary guide has at least one annular segment-shaped groove and a fastening element which is passed through the groove.
  • the fastener may for example be a threaded bolt, the head engages behind the groove.
  • the groove may have a step against which a head of the fastener abuts, wherein the step may be at a depth greater than or equal to a height of the head such that the head of the fastener engages the plate having the groove is arranged and does not survive on the relevant plate.
  • the fastener can not only fix the lateral position of the axis of rotation, but at the same time hold together the plate having the groove with the cooperating element (ie the mast base or the mast) to prevent tilting of the axis of rotation.
  • the rotary guide on two stops that limit a possible angle of rotation.
  • the angle of rotation can be limited to a range of 90 °.
  • the stops may in particular be formed by the ends of the ring-segment-shaped groove and one or more fastening elements cooperating therewith.
  • the second attachment means comprises a plurality of threaded bolts which are insertable into openings either (i) in the base plate and in the mast base or (ii) in the tilt plate and in a base plate of the mast.
  • the openings for the threaded bolts of the second fastening device are arranged such that each of the threaded bolts is insertable in at least two different rotational positions of the mast relative to the mast base in two of the openings.
  • the base plate and the tilting plate have a square basic shape and the second fastening device has four threaded bolts, wherein the associated openings in the base plate or in the tilting plate are arranged at the corners of the base plate or tilting plate.
  • this arrangement of the threaded bolt is optimal.
  • the openings for the threaded bolts of the second fastening device in the base plate or in the tilting plate each have a threaded bore into which one of the threaded bolts of the second fastening device can be screwed.
  • the device comprises a ground floor anchored mast base, which is connectable to the base plate.
  • the mast base can be matched to the base plate in terms of its dimensions and other properties.
  • the mast base has a Mastfußadapter with a tubular portion which is designed for connection to a Pile or pile.
  • Mastfußadapter are known for the establishment of particular signal or lighting masts. They form a solid base for connection to a base plate.
  • the mast on its upper side on a base plate in which a circular opening is formed, in which engages a pin of the formed on the base plate rotation guide.
  • the base plate is then rotatable about the common center axis of the pin and opening relative to the base plate.
  • the device comprises a mast which is connectable to the tilting plate.
  • the mast has a foot plate, which is connectable to the tilting plate, in particular by screwing. It may in particular be a conventional mast, the foot plate was screwed according to the prior art directly to a mast base. In this way, such a conventional mast can be used with the device according to the invention.
  • the base plate has openings through which the threaded bolts of the first fastening device can be passed.
  • the relative position of the base plate and tilting plate can be fixed in this case with threaded bolts, which not only engage in openings of the base plate and the tilting plate, but are additionally passed through the opening in the base plate. The loosening and fixing of the first fastening device is therefore possible "through the foot plate", without having to make far-reaching adjustments to the conventional mast with foot plate.
  • the tilting plate is permanently connected to the mast, in particular by welding.
  • the mast needs no footplate, but is directly and permanently connected to the tilting plate.
  • the mast is a signal or lighting mast for installation on a traffic route, in particular on a track system.
  • the mast may in particular have a lateral boom.
  • the device comprises a hydraulic tilting device, which is connectable to the mast base and to the mast and adapted to allow a controlled tilting and re-erection of the mast.
  • a comparatively simple tilting device is sufficient to safely tilt the mast and raise it again.
  • On a crane or additional measures to guide the movement can be dispensed with.
  • FIG. 1 shows a Mastfußadapter 10, which is an example of a ground floor anchored mast base or a part thereof.
  • the mast foot adapter 10 has a tubular portion 12 adapted for connection to a pile or pile, and a base plate 14 disposed substantially horizontally. which is connected to the tubular portion 12.
  • the base plate 14 is square and has at its center a circular opening 16 and four through holes 18 at its four corners.
  • a base plate 20 which has a square basic shape and in its dimensions substantially corresponds to the base plate 14. At the four corners of the base plate 20 through holes 22 are arranged, whose arrangement corresponds to the through holes 18 in the base plate 14.
  • the base plate 20 in the middle has a circular opening 24 which in a downwardly over the lower end of the base plate 20 projecting, tubular portion 26 (see FIG. 2 ) is trained.
  • the tubular portion 26 forms part of a rotary guide and engages the circular opening 16 in the base plate 14 a.
  • the base plate 20 also has two concentric with the circular opening 24 arranged annular segment-shaped grooves 28.
  • the two grooves 28 are arranged opposite to each other with respect to the circular opening 24 and each extend over an angular range of approximately 90 °.
  • Each of the two grooves 28 has a step 30, which rotates about half the depth of the groove around the entire ring segment shape.
  • the grooves 28 form another element of the rotation guide of the base plate 20th
  • a tilting plate 32 is shown, which is fixedly connected to the mast 34 according to the first embodiment, in particular by welding.
  • the tilting plate 32 also has a square basic shape whose dimensions correspond to those of the base plate 20 and the base plate 14, in contrast to these, however, at their four corners each have a recess 36 which is dimensioned so that the through holes 22 at the corners of the base plate 20 remain freely accessible.
  • the tilting plate 32 also has four through holes 38, which are arranged centrally on their longitudinal edges.
  • the tilting plate 32 and the base plate 20 are hingedly connected together via a bolt 74.
  • the bolt 74 defines a pivot axis about which the tilt plate 32 can be tilted relative to the base plate 20.
  • a first fastening device of the device FIG. 1 includes four threaded bolts 40 which are screwed through the through holes 38 in the tilting plate 32 into correspondingly arranged threaded bores 42 in the base plate 20.
  • the tilting plate 32 is fixed in a substantially parallel position relative to the base plate 20 and tilting of the mast 34 is not possible.
  • Two threaded bolts 44 are inserted through the annular segment-shaped grooves 28 and screwed into two threaded holes 46 in the base plate 14.
  • the two threaded bolts 44 each have a head which rests against one of the steps 30 of one of the two grooves 28 and does not project beyond the base plate 20 upwards. In this way, the threaded bolts 44, which are guide elements of the rotary guide, fix the base plate 20 rotatably to the base plate 14.
  • a hydraulic tilting device 52 is shown. It has a base plate 54 and a hydraulic cylinder 56. One end of the base plate 54 is provided for attachment to the base plate 14. For this purpose, the threaded bolts 48 of the second fastening device can be used. The other end of the base plate 54, which is located at a distance of, for example, a meter or more of the Mastfußadapter 10 is pivotally connected to one end of the hydraulic cylinder 56. The other end of the hydraulic cylinder 56 may be hinged to the mast 34 at a distance from the tilt plate 32.
  • FIG. 2 shows the base plate 20 from FIG. 1 in a perspective view obliquely from below. It can be seen the tubular portion 26 of the rotary guide and the two ring-segment-shaped grooves 28, in each of which a threaded bolt 44 is used for illustration.
  • FIG. 3 shows the device FIG. 1 after connection of base plate 20 and tilting plate 32 over the in FIG. 3 First and second fastening means are not yet mounted, so that the base plate 20 rotatable relative to the Mastfußadapter 10 and the mast 34 with the tilting plate 32nd around the one in the FIG. 3 not shown bolt 74 defined pivot axis is tiltable around.
  • FIG. 4 shows the device of the first embodiment with Mastfußadapter 10, base plate 20 and tilting plate 32 and attached thereto mast 34 at a hint
  • the mast 34 is a signal mast with a lateral boom 60.
  • the lateral boom 60 is partially above the track system 58.
  • the four threaded bolts 48 of the second fastening device 48 are first released and removed.
  • the mast 34 is rotated about a rotation axis of the base plate 20 certain axis of rotation, which corresponds to a longitudinal axis of the mast 34, rotated by 90 °, so that in the FIG. 5 shown position results.
  • the four threaded bolts 48 of the second fastener are reinserted to prevent further rotation.
  • the tilting device 52 is mounted and the threaded bolts 40 of the first fastening device are released.
  • the mast 34 can be tilted about the pivot axis until the parts to be serviced are accessible from the ground. This tilting is in the FIG. 6 illustrated.
  • FIG. 7 shows another embodiment in which a conventional mast 34 is used.
  • the mast 34 has a foot plate 64, which is screwed directly to a mast base in a conventional use of the mast 34.
  • the foot plate 64 is screwed to the tilting plate 32, by means of four threaded bolts 68 which are screwed through four at the corners of the base plate 64 through holes into corresponding threaded holes 70 in the tilting plate 32.
  • the tilting plate 32, the base plate 20 and the Mastfußadapter 10 differ only in the highlighted below details of the corresponding elements of the first embodiment:
  • the second fastening means for fixing the rotational movement between the base plate 20 and mast base has four threaded bolts 48 through through holes in the Corners of the base plate 14 passed and screwed into running from below in the base plate 20 threaded holes.
  • the first fastening device has four threaded bolts 40 which are passed through formed through the four longitudinal edges of the base plate 64 through holes 66 and four corresponding through holes 72 in the tilting plate 32 and screwed into threaded holes 76 in the base plate 20.
EP16195598.4A 2015-11-03 2016-10-25 Dispositif basculant destiné à assembler un mât et son emplanture Active EP3165693B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202015105834.9U DE202015105834U1 (de) 2015-11-03 2015-11-03 Vorrichtung zur Verbindung eines Masts mit einem Mastsockel

Publications (2)

Publication Number Publication Date
EP3165693A1 true EP3165693A1 (fr) 2017-05-10
EP3165693B1 EP3165693B1 (fr) 2020-07-22

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Application Number Title Priority Date Filing Date
EP16195598.4A Active EP3165693B1 (fr) 2015-11-03 2016-10-25 Dispositif basculant destiné à assembler un mât et son emplanture

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EP (1) EP3165693B1 (fr)
DE (1) DE202015105834U1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102018006645A1 (de) * 2018-08-23 2020-02-27 Jürgen Junker System zur Verbindung oder Anbindung von Elementen untereinander sowie an Podeste

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB560852A (en) * 1942-06-22 1944-04-24 Constructors Ltd Improvements in or relating to masts and the like
US4932176A (en) * 1988-09-19 1990-06-12 Gte Government Systems Corporation Extendible and retractible mast system
EP1916360A2 (fr) * 2006-10-24 2008-04-30 Raymond Maguire Structure d'immeuble
EP1643056B1 (fr) 2004-10-02 2009-11-11 BBL Bahnbau Lüneburg GmbH Dispositif pour fondation de mâts signalétiques
WO2010050993A1 (fr) * 2008-11-03 2010-05-06 Myer Seth J Poteau lumineux alimenté par l'énergie solaire et luminaire à led

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE29813088U1 (de) * 1998-07-22 1998-10-22 Hoermann Gmbh Montagevorrichtung
DE102006030756A1 (de) * 2006-06-27 2008-01-03 Treppenmeister Gmbh Pfostenbeschlag
US8568055B2 (en) * 2008-10-23 2013-10-29 Steelroot Portugal, Lda Adjustment system for connections between metal structures
DE102008063298A1 (de) * 2008-12-29 2010-07-01 Alpintechnik Ag Mast für Windkraftwerke und Antennen etc. mit schwenkbarem Mastfuß
US8910432B2 (en) * 2010-04-09 2014-12-16 Electro Mechanical Industries, Inc. Tower structure
DE202012006612U1 (de) * 2012-02-01 2013-01-02 Krinner Innovation Gmbh Befestigungsvorrichtung für einen stab-, pfosten- oder rohrförmigen Gegenstand

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB560852A (en) * 1942-06-22 1944-04-24 Constructors Ltd Improvements in or relating to masts and the like
US4932176A (en) * 1988-09-19 1990-06-12 Gte Government Systems Corporation Extendible and retractible mast system
EP1643056B1 (fr) 2004-10-02 2009-11-11 BBL Bahnbau Lüneburg GmbH Dispositif pour fondation de mâts signalétiques
EP1916360A2 (fr) * 2006-10-24 2008-04-30 Raymond Maguire Structure d'immeuble
WO2010050993A1 (fr) * 2008-11-03 2010-05-06 Myer Seth J Poteau lumineux alimenté par l'énergie solaire et luminaire à led

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Publication number Publication date
DE202015105834U1 (de) 2017-02-06
EP3165693B1 (fr) 2020-07-22

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