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EP3392425B1 - Support horizontal comprenant un ombrage vertical et support réglable - Google Patents

Support horizontal comprenant un ombrage vertical et support réglable Download PDF

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Publication number
EP3392425B1
EP3392425B1 EP17000680.3A EP17000680A EP3392425B1 EP 3392425 B1 EP3392425 B1 EP 3392425B1 EP 17000680 A EP17000680 A EP 17000680A EP 3392425 B1 EP3392425 B1 EP 3392425B1
Authority
EP
European Patent Office
Prior art keywords
support
winding shaft
horizontal beam
beam according
chamber
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
EP17000680.3A
Other languages
German (de)
English (en)
Other versions
EP3392425A1 (fr
Inventor
Karl-Heinz Stawski
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.)
Weinor GmbH and Co KG
Original Assignee
Weinor Dieter Weiermann GmbH and Co
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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Publication date
Application filed by Weinor Dieter Weiermann GmbH and Co filed Critical Weinor Dieter Weiermann GmbH and Co
Priority to EP17000680.3A priority Critical patent/EP3392425B1/fr
Publication of EP3392425A1 publication Critical patent/EP3392425A1/fr
Application granted granted Critical
Publication of EP3392425B1 publication Critical patent/EP3392425B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F10/00Sunshades, e.g. Florentine blinds or jalousies; Outside screens; Awnings or baldachins
    • E04F10/02Sunshades, e.g. Florentine blinds or jalousies; Outside screens; Awnings or baldachins of flexible canopy materials, e.g. canvas ; Baldachins
    • E04F10/06Sunshades, e.g. Florentine blinds or jalousies; Outside screens; Awnings or baldachins of flexible canopy materials, e.g. canvas ; Baldachins comprising a roller-blind with means for holding the end away from a building
    • E04F10/0666Accessories
    • E04F10/0677Accessories acting as centre bearing
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • E06B9/42Parts or details of roller blinds, e.g. suspension devices, blind boxes

Definitions

  • the invention relates to a horizontal beam according to the preamble of claim 1.
  • Such carriers are generally known, for example from German utility model DE 20 2006 021 114 U1 .
  • a disadvantage of the known carriers, however, is that the winding shaft can bend due to its own weight and the weight of the bale. As a result of such a deflection, the shading element can be damaged on the one hand and the winding process can be disrupted during the extension and retraction.
  • the object of the invention is to overcome these disadvantages and in particular to provide a horizontal support in which deflection of the winding shaft can be reliably counteracted.
  • a horizontal support which is formed by at least one hollow chamber profile which has at least one chamber for receiving a winding shaft with a shading element of a vertical shading wound thereon as a winding bale, the winding shaft, which is rotatably mounted about its axis, from which the Shading element can be unwound and the chamber has at least one passage opening, through which the shading element emerges from the chamber, it is that at least one support is assigned to the winding shaft, the support being adjustable within an adjustment range and being fixable within the adjustment range, in particular any Point within the adjustment range can be determined.
  • This provides support for the winding shaft and makes it possible to adjust and fix the support within the adjustment range.
  • the adjustability relates to the relation with respect to the fixed horizontal beam. This means that the support surface can be shifted within the chamber accommodating the vertical shading and the support surface can be positioned accordingly. After positioning the support surface in the desired position, the support surface can be fixed. Appropriate fasteners are arranged for this purpose.
  • the support can preferably be fixed at any point within the adjustment range.
  • wrapping bale denotes the shading element wound on the winding shaft.
  • the shading element is wound onto the winding shaft to the maximum, the risk of winding shaft deflection is high, since the greatest weight force acts on the winding shaft. Such a deflection of the winding shaft is counteracted with the support.
  • the diameter of the Wrapping baliens with the shading element retracted to the maximum.
  • the winding shaft is no longer supported by the support with a reduced winding bale diameter, whereas the shading element cannot be completely wound up with an enlarged winding bale diameter.
  • the support Due to the adjustability of the support within an adjustment range, the support can be positioned in such a way that it becomes effective even when the bale diameter changes. The position of the support can thus be adapted to the winding bale diameter in a simple manner. Accordingly, the functionality of the vertical shading and the support of the winding shaft can be guaranteed by optimal positioning and fixing of the support surface.
  • the support can be fixed in particular at any position within the adjustment range by means of corresponding fastening elements.
  • the adjustability can be done continuously or in stages.
  • the adjustment range can be defined by adjustment elements such as threaded bolts and / or slides and / or link guides.
  • Horizontal supports of this type are used as load-bearing structural components, in particular in a winter garden or in a pergola, for example for forming a eaves. Such supports are used in particular to absorb static forces. Such horizontal beams are often referred to as cross beams. These horizontal beams can be used to hold rafters in particular. Such carriers can be carried in particular by support posts.
  • the design of the horizontal beam is referred to as a hollow chamber profile, since it can have one or more chambers in cross section, which are formed between webs and belts of the horizontal beam.
  • Those sections of the horizontal beam which have a predominantly vertical course and thereby form the lateral boundaries of a chamber are referred to as webs.
  • As belts correspondingly designates those sections of the horizontal support which have a predominantly horizontal course and thereby form the upper and lower boundaries of a chamber. In this case, more than two webs and more than two belts can be arranged, so that the horizontal beam has more than just one chamber.
  • At least one of the chambers serves to receive and arrange the vertical shading.
  • This chamber has at least one passage opening through which the shading element exits. It is therefore not a closed chamber.
  • the passage opening is slit-shaped parallel to the winding shaft axis.
  • the passage opening extends along the carrier at least over the width of the shading element that can be unwound from the winding shaft.
  • the width of the coiled shading element means its dimension in a direction parallel to the winding shaft.
  • the length of the shading element thus corresponds to the dimension perpendicular to its width.
  • Other chambers and / or the same chamber can also be used in particular for cable routing and / or water routing.
  • the horizontal support can thus have a chamber serving as a cable duct.
  • one or more lighting units such as LEDs can be arranged in and / or on the horizontal support.
  • the shading element can be a cloth such as an awning cloth or a fly screen, a transparent curtain, a roller blind, a fabric or the like.
  • the at least one shading element can be a combination of individual contiguous shading elements, such as a blind or roller shutter. It is also possible to arrange several shading elements next to each other on the same winding shaft.
  • the support is adjustable and fixable within an adjustment range in the vertical direction and / or in the horizontal direction.
  • an adjustability in one direction with at least one vertical and / or one horizontal Component includes.
  • This includes a linear movement and / or a swivel movement and / or a superposition.
  • This also includes a series of linear movement (s) and / or pivoting movement (s) and / or superpositions, in particular different curvatures and in particular different directions of curvature.
  • This makes it possible to adjust the support in three dimensions in space.
  • the position of the support can be adapted to the requirements, in particular different winding bale diameters, and thus the support of the winding shaft can be improved.
  • the support is preferably connected to the horizontal support in a form-fitting manner and / or mounted on the horizontal support in a form-fitting manner. Accordingly, the support and the horizontal support can form a positive connection.
  • the support is preferably mounted in a form-fitting manner on the horizontal support, the positive connection forming an articulated connection between the support and a receiving area on the support, the support being pivotable relative to the horizontal support about an articulation axis of the articulated connection. It is particularly preferred that the hinge axis of the hinge connection runs parallel to the winding shaft axis.
  • the pivotability of the support also enables simple adjustment of the support.
  • a pivoting about an axis parallel to the winding shaft also ensures a consistently uniform support of the winding shaft.
  • a skewed positioning of the support with respect to the winding shaft is thus ruled out by the kinematic coupling with the carrier.
  • the support is mounted on the horizontal support by means of a pendulum bearing. It is thus possible in particular to arrange the support by means of pendulum arms on the horizontal support, the pendulum arms being suspended in an oscillating manner about an axis of rotation are.
  • the support is mounted on the pendulum arms, which are connected to the horizontal beam.
  • the axis of rotation of the pendulum arms can in particular be parallel to the axis of the winding shaft outside the axis of the winding shaft.
  • the support is preferably resiliently mounted on the horizontal support.
  • the support can be automatically positioned in accordance with the changing winding bale diameters.
  • the wrapping bale is always in contact with the support, so that the wrapping shaft is effectively supported.
  • a spring-mounted support is suitable for absorbing any forces, for example due to wind loads impinging on the shading element.
  • the support is preferably adjustable and fixable along at least one link guide, in particular adjustable along link guides arranged in or on lateral head plates of the horizontal support receiving the winding shaft.
  • the link guides define the adjustment range.
  • the link guides can be arranged in or on side head plates, in particular in a form-fitting and / or force-fitting and / or material-locking manner or in one piece, in particular by means of milling.
  • such lateral head plates can be formed by adjacent components and / or supports.
  • the support is preferably adjustable by means of at least one adjusting element.
  • the adjustment element is used indirectly or directly to adjust the support.
  • a plurality of adjusting elements are arranged, in particular, equidistantly over the longitudinal course of the winding shaft. In this way, a uniform adjustment over the longitudinal course of the winding shaft is possible, so that tension forces arising in the support due to an uneven adjustment of the support and tilting can be avoided.
  • the longitudinal course of the winding shaft corresponds to the course of the winding shaft along the winding shaft axis.
  • each adjustment wedge can be adjustable within an adjustment range by means of at least one threaded bolt which engages in the adjustment wedge.
  • the support can thus rest directly or indirectly on one or more adjustment wedges.
  • a combination of the arrangement of one or more adjusting wedges with a pivotably supported support is particularly advantageous.
  • the adjustment wedges have at least one bevel.
  • the adjustable support preferably lies directly on the bevel of the adjusting wedges. When the adjustment wedges are displaced, the support is raised or lowered by the adjustment wedges and swiveled around the hinge axis. Exact positioning is possible by adjusting the adjusting wedges by means of threaded bolts and / or adjusting screws engaging in the adjusting wedges.
  • each adjustment wedge has at least one bevel, which is arranged in such a way that a linear movement of the adjustment wedge leads to an increase or decrease in the support.
  • each adjustment wedge is adjustable within an adjustment range by means of at least one threaded bolt and / or an adjustment screw which engages in the adjustment wedge
  • the threaded bolts or the adjustment screws define the adjustment range.
  • threaded bolt also includes an adjusting screw and also any other adjusting element provided with a thread. The conversion of a rotary movement into a linear movement facilitates the exact adjustment of the support.
  • a combination of adjusting elements and a link guide for adjusting and fixing the support is also possible.
  • the winding shaft can preferably be moved back and forth at least in the vertical direction.
  • the wrap can be independent of his Diameter always rest on the support and the winding shaft can thus always be supported against deflection.
  • this includes the fact that when the shading element is completely unwound, the winding shaft itself can bear directly on the support. Furthermore, the ability of the winding shaft to move back and forth can enable the winding bale to rest against the support regardless of the winding bale diameter, i.e. that the maximum travel range of the winding shaft is designed in such a way that the winding bale is always in contact with the support, regardless of the winding bale diameter, even when the shading element is completely unwound.
  • the winding bale which changes its diameter when the shading element is retracted and extended, and which is wound on the winding shaft, is always in contact with the support, thereby supporting the winding shaft against the weight and / or a tensioning force acting on the shading element.
  • the winding bale diameter can change when the maximum extension length of the shading element and / or the use of other materials for the shading element changes. It is particularly advantageous that such subsequent changes in the diameter of the fully wound shading element according to the invention do not require any adjustment or change of the construction due to the forward and backward movement of the winding shaft, but the bale is still supported by the support against bending.
  • the winding shaft When the shading element is extended, the shading element is unwound from the winding shaft due to the rotation of the winding shaft, the winding bale diameter decreasing. According to the invention, the winding shaft consequently moves downwards at least with a vertical directional component, so that the winding bale is always in contact with the support and the winding shaft is thus supported. In contrast, when the shading element is retracted, the shading element is wound up on the winding shaft due to the rotation of the winding shaft in the opposite direction, the winding bale diameter increasing. According to the invention, the winding shaft consequently moves upwards at least with a vertical directional component, so that the winding bale is always in contact with the support and the winding shaft is thus supported.
  • the ability to move the winding shaft back and forth at least in the vertical direction means that the movement of the winding shaft axis has at least one component in the vertical direction.
  • movement components that deviate from the vertical direction can also be added, so that the winding shaft can carry out, for example, a diagonal or an arc-shaped movement. Movability of the winding shaft with further additional movement components cumulative to a vertical movement component is thus also possible.
  • the direction of movement of the winding shaft can correspond completely or in sections to a linear movement or be curved, in particular different slopes and / or different radii of curvature and / or different directions of curvature can follow one another.
  • the winding shaft movement can have at least one component in the extension direction and counter to the extension direction of the shading element.
  • Under the extension direction is in the vertical extension direction of vertical shading understood.
  • the shading element can be guided or directed by optionally arranged guide elements. This development is also covered by the invention.
  • One or more guide elements can thus be arranged, via which the shading element is guided before a transition in the downward direction of extension.
  • the ends of the winding shaft are preferably mounted in sliding blocks which slide in the guide rails of bearing supports.
  • sliding blocks that slide in the slide guides of bearing brackets, a structurally simple and low-wear solution is realized, which ensures a floating mounting of the winding shaft and thus always a support of the winding shaft by the support.
  • the winding shaft has a floating bearing. The winding shaft can thus be moved back and forth at least in the vertical direction.
  • each sliding block can be ascertainable at any position on its slide guide. Provision can also be made to adjust and limit the sliding path of the sliding blocks by means of adjustable stops on the link guide. With such an arrangement, a displaceability of the winding shaft can be ensured in a simple and low-wear manner.
  • the winding shaft can have sliding bearings at its ends, which can be moved forward and backward independently of one another in the extension direction and can be determined, in particular the displacement path of the displacement bearings can be adjustable.
  • the winding shaft is supported at its ends on pendulum arms, the pendulum arms being suspended in an oscillating manner about an axis of rotation which lies parallel to the axis of the winding shaft outside the axis of the winding shaft.
  • a floating mounting of the winding shaft can also be realized and thus a support of the winding shaft can always be guaranteed by the at least one support.
  • This type of pendulum mounting ensures that the winding shaft can be easily moved in dependence on the winding bale diameter on a circular arc, so that the winding shaft with the winding bale wound thereon always bears against the support and is thereby supported against the weight and / or a tensioning force. This effectively counteracts deflection of the winding shaft regardless of the winding bale diameter.
  • the winding shaft can be floatingly supported.
  • the pendulum arm mounting can be used in particular as an alternative to the sliding block mounting with a slide guide already described.
  • the pendulum arm bearing can, however, also be used cumulatively with the sliding blocks in slide guides. In this case, the guide of the winding shaft takes place mechanically due to a circular path. A combination of the two bearings ensures additional securing of the winding shaft guide.
  • the front end of the shading element in the extension direction is preferably fastened to an extendable extension profile.
  • the extension and retraction of the shading element is thus stabilized by means of an extension profile and is therefore more uniform.
  • an extension profile can be equipped with one or more additional weights and thus stabilize the shading element, particularly in the case of wind.
  • the extension profile can be on one or more vertical Guide elements such as tension cables or guide rails can be guided.
  • the chamber which receives the winding shaft is closed by the extension profile in the retracted state.
  • the retracted state denotes the state in which the shading element is wound onto the winding shaft as far as possible, the extension profile striking the chamber and thereby closing it.
  • the rotational movement of the winding shaft in the winding direction is thus limited by the stop of the extension profile.
  • the support extends parallel to the axis of rotation of the winding shaft over the entire length or part of the length of the winding shaft or a plurality of sections of the winding shaft.
  • the support can also be in particular flat, in particular bowl-shaped, or as point support, in particular as a bolt.
  • the support extends in the circumferential direction over an angle of up to 30 ° or over 30 ° of the winding shaft, in particular up to 60 ° or up to 90 ° or up to 120 °.
  • the support for supporting the winding shaft can thus be adapted to the requirements.
  • the support has one or more friction-reducing inlay / s and / or one or more friction-reducing overlay / s and / or one or more friction-reducing coating / s.
  • Such friction-reducing inlays and / or overlays and / or one or more friction-reducing coating (s) of the support reduce the static friction between the shading element and the support. This will prevent the bale from sliding over the support when turning the winding shaft relieved. It also counteracts wrinkling when winding and unwinding a flexible shading element.
  • friction-reducing inlays and / or overlays and / or coatings can extend over the entire surface of the support or can be arranged in partial areas of the support.
  • such friction-reducing inlays and / or overlays and / or coatings can be designed in a strip shape parallel and / or perpendicular to the winding shaft axis.
  • such friction-reducing inlays and / or overlays can be arranged in a form-fitting and / or material-locking and / or force-fitting manner on the one- or multi-part support.
  • the support for supporting the winding shaft can thus be adapted to the requirements.
  • the horizontal support 1 is formed by a hollow chamber profile.
  • a vertical shade 10 is arranged in one of the chambers of the horizontal support 1.
  • the vertical shading 10 consists of a winding shaft 2 with a shading element 4 wound thereon as a winding bale 3
  • the winding shaft 2 is rotatably mounted about its axis, so that the shading element 4 can be unwound from the winding shaft 2.
  • the chamber in which the vertical shading 10 is arranged has a passage opening 5 through which the shading element 4 emerges during unwinding.
  • the front end of the shading element 4 in the extending direction is fastened to an extending profile 18, whereby the shading element 4 is stabilized.
  • a support 6 is associated with the winding shaft 2, on which the winding bale 3 rests. As a result, the winding shaft 2 is supported against deflection.
  • the support 6 assigned to the winding shaft 2 is adjustable relative to the horizontal support 1 and can be fixed at any point within the adjustment range.
  • the support 6 is pivotally mounted on the horizontal support 1 in a form-fitting manner, so that an articulated connection 9 is formed on the horizontal support 1 between the support 6 and the receiving area. In this way, the support 6 can be pivoted about the hinge axis of the hinge connection 9.
  • the receiving area on the horizontal support 1 is designed like an articulated shell, in which the corresponding end piece of the support 6 lies and can be pivoted about the articulated axis.
  • the hinge axis runs parallel to the axis of the winding shaft 2.
  • the support 6 is adjustable by means of several adjusting wedges 15.
  • the adjusting wedges 15 have a bevel on their upper side.
  • the support rests on the bevel of the adjusting wedges 15. Since the horizontal support 1 has an extension of several meters perpendicular to the image plane, several adjusting wedges 15 are arranged.
  • An adjusting screw 16 engages in each of the adjusting wedges 15.
  • each adjusting wedge 15 in the image plane according to the Figures 1 and 2 can be moved to the left or right.
  • the adjustment wedges 15 are thus adjustable and fixable within an adjustment range.
  • By moving the adjusting wedges 15 in the image plane according to the Figures 1 and 2 to the left or right is the one lying on the upper bevel of the adjusting wedges 15 Support 6 pivoted about the hinge axis of the hinge connection 9 and thus lowered or raised.
  • the adjusting wedges 15 have internal threads in which the set screws 16 engage.
  • the set screws 16 rest with their screw heads on a stop 12 and are thus fixed in their axial direction. Therefore, turning the adjusting screws 16 leads to a movement of the adjusting wedges
  • Actuation of the adjusting screw 16 thus causes the support 6 to be raised or lowered due to the beveling of the adjusting wedges 15, which support is pivoted about the articulation axis of the articulation 9.
  • the possible pivoting movement of the support 6 is indicated by the curved double arrow 13. This pivoting movement is possible due to the articulated connection 9 formed between the support 6 and the receiving area of the horizontal support 1.
  • the pivoting movement is triggered by actuating the set screws 16.
  • the adjusting screw 16 When the adjusting screw 16 is rotated in the screwing-in direction with respect to the adjusting wedge 15, the adjusting wedge 15 is moved to the left in the image plane and the support 6 is raised, whereby the support 6 is pivoted clockwise along the double arrow 13.
  • the horizontal support 1 also has a rainwater drainage chamber 11. This serves to drain rainwater.
  • the horizontal beam 1 is supported by vertical support posts 20. On the horizontal beam 1 there are rafters, not shown, of a winter garden.
  • the Figure 2 shows a section of the side view of a horizontal beam with fundamentally identical elements in accordance Figure 1 ,
  • the horizontal support 1 according to FIG Figure 2 a floating mounting of the winding shaft 2.
  • the winding shaft 2 can be moved back and forth as shown by the double arrow 17.
  • the direction of movement of the winding shaft 2 follows a straight line set at an acute angle with respect to the vertical and is therefore composed of a vertical and a horizontal component.
  • the winding shaft 2 can be moved back and forth along the double arrow 17.
  • the winding shaft 2 is supported at its ends in sliding blocks 7, which slide in the slide guides 8 of bearing supports.
  • a floating mounting of the winding shaft 2 is thus realized.
  • the winding shaft 2 moves downward as a result of the extension or unwinding of the shading element 4 with a vertical component along the double arrow 17, since the winding bale diameter becomes smaller as the shading element 4 extends or unwinds.
  • the shading element 4 is retracted or wound up, the winding bale diameter becomes larger, so that the winding shaft 2 moves upward with a vertical component along the double arrow 17.
  • This ability to move the winding shaft 2 back and forth ensures that the winding bale 3 rests on the support 6 regardless of its diameter. In this way, the winding shaft 2 is always supported and a deflection of the winding shaft 2 is reliably counteracted.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Structural Engineering (AREA)
  • Civil Engineering (AREA)
  • Operating, Guiding And Securing Of Roll- Type Closing Members (AREA)

Claims (15)

  1. Support horizontal (1) pour l'absorption de forces statiques et pour l'utilisation comme composant structural porteur en particulier dans une véranda ou en particulier dans une pergola, dans lequel le support horizontal (1) est formé par au moins un profilé à chambre creuse qui présente au moins une chambre, dans lequel est disposé un arbre d'enroulement (2) monté de façon à pouvoir tourner autour de son axe, comportant un élément d'ombrage (4) d'un ombrage perpendiculaire (10) enroulé sur celui-ci en tant que ballot d'enroulement, dans lequel l'élément d'ombrage (4) peut être déroulé de l'arbre d'enroulement (2), dans lequel au moins une ouverture de passage (5) est disposée, par laquelle l'élément d'ombrage (4) sort, dans lequel au moins un étai (6) est affecté à l'arbre d'enroulement (2), et dans lequel l'étai (6) peut être déplacé dans une zone de déplacement et peut être fixé dans une zone de déplacement, en particulier au niveau d'un emplacement quelconque dans la zone de déplacement, caractérisé en ce que l'au moins une chambre pour la réception de l'arbre d'enroulement (2) est prévue avec l'élément d'ombrage (4) de l'ombrage perpendiculaire enroulé sur celui-ci en tant que ballot d'enroulement (3), en ce que l'arbre d'enroulement (2) monté de façon à pouvoir tourner autour de son axe est disposé dans la chambre, et en ce que la chambre présente l'au moins une ouverture de passage (5) par laquelle l'élément d'ombrage (4) sort de la chambre.
  2. Support horizontal selon la revendication 1, caractérisé en ce que l'étai (6) peut être déplacé et fixé dans une zone de déplacement, en particulier en direction verticale et/ou en direction horizontale.
  3. Support horizontal selon la revendication 1 ou 2, caractérisé en ce que l'étai (6) est relié par assemblage de forme avec le support horizontal (1) et/ou est monté par assemblage de forme au support horizontal (1).
  4. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) est monté par assemblage de forme au support horizontal (1), dans lequel la liaison par assemblage de forme constitue une liaison articulée (9) entre l'étai (6) et une zone de réception au niveau du support horizontal (1), dans lequel l'étai (6) peut pivoter autour d'un axe d'articulation de la liaison articulée (9) par rapport au support horizontal (1).
  5. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) est monté au moyen d'un appui pendulaire au support horizontal (1).
  6. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) est monté à ressort au support horizontal (1).
  7. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) peut être déplacé et peut être fixé le long d'au moins un guidage à glissière, en particulier le long de guidages à glissière disposés dans ou au niveau de plaques de tête du support horizontal (1) recevant l'arbre d'enroulement (2).
  8. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) peut être déplacé au moyen d'au moins un élément de déplacement.
  9. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) peut être déplacé au moyen d'une ou plusieurs clavettes de déplacement (15), en particulier dans lequel chaque clavette de déplacement (15) peut être déplacée au moyen d'au moins un boulon fileté (16) qui s'engrène dans la clavette de déplacement (15), dans une zone de déplacement.
  10. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'arbre d'enroulement (2) peut être avancé et rétracté au moins en direction verticale.
  11. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'arbre d'entraînement (2) est monté au niveau de ses extrémités dans des pièces coulissantes (7) qui glissent dans des guidages à glissière (8) de supports de palier.
  12. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'arbre d'enroulement (2) est monté au niveau de ses extrémités à des bras oscillants, dans lequel les bras oscillants sont suspendus de façon à osciller autour d'un axe de rotation qui sont parallèles à l'axe de l'arbre d'enroulement (2) en dehors de l'axe de l'arbre d'enroulement (2).
  13. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que dans la direction de déploiement, l'extrémité avant de l'élément d'ombrage (4) est fixée à un profilé de déploiement (18) pouvant être déployé, en particulier en ce que la chambre qui reçoit l'arbre d'enroulement (2) est fermée par le profilé de déploiement (18) à l'état rentré.
  14. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) s'étend parallèlement à l'axe de rotation de l'arbre d'enroulement (2) sur toute la longueur ou sur une partie de la longueur de l'arbre d'enroulement (2) ou sur plusieurs segments de l'arbre d'enroulement (2), en particulier en ce que l'étai (6) s'étend dans une direction périphérique sur un angle allant jusqu'à 30° ou supérieur à 30° de l'arbre d'enroulement (2), en particulier jusqu'à 60° ou jusqu'à 90° ou jusqu'à 120°.
  15. Support horizontal selon l'une quelconque des revendications précédentes, caractérisé en ce que l'étai (6) présente un ou plusieurs insert(s) réduisant le frottement et/ou une ou plusieurs garniture(s) réduisant le frottement et/ou un ou plusieurs revêtement(s) réduisant le frottement.
EP17000680.3A 2017-04-21 2017-04-21 Support horizontal comprenant un ombrage vertical et support réglable Active EP3392425B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP17000680.3A EP3392425B1 (fr) 2017-04-21 2017-04-21 Support horizontal comprenant un ombrage vertical et support réglable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP17000680.3A EP3392425B1 (fr) 2017-04-21 2017-04-21 Support horizontal comprenant un ombrage vertical et support réglable

Publications (2)

Publication Number Publication Date
EP3392425A1 EP3392425A1 (fr) 2018-10-24
EP3392425B1 true EP3392425B1 (fr) 2020-01-08

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EP17000680.3A Active EP3392425B1 (fr) 2017-04-21 2017-04-21 Support horizontal comprenant un ombrage vertical et support réglable

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EP (1) EP3392425B1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021103137A1 (de) 2021-02-10 2022-08-11 Stobag Ag Beschattungsvorrichtung

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE29806658U1 (de) * 1998-04-11 1998-08-06 Warema Renkhoff Gmbh & Co Kg Tuchwellenabstützung
DE29920856U1 (de) * 1999-02-25 2000-03-16 Roedelbronn Gmbh Tuchwellenlager
DE202006021144U1 (de) * 2006-12-14 2013-07-01 Weinor Gmbh & Co. Kg Senkrechtbeschattung
FR2937367A1 (fr) * 2008-10-21 2010-04-23 Tir Technologies Systeme de lyres reglables la fleche du tube d'enroulement de la toile d'un store coffre

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021103137A1 (de) 2021-02-10 2022-08-11 Stobag Ag Beschattungsvorrichtung
EP4043661A1 (fr) 2021-02-10 2022-08-17 Stobag Ag Dispositif d'ombrage avec canal de drainage

Also Published As

Publication number Publication date
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