EP3265624B1 - Protection en éventail contre les intempéries ou le soleil - Google Patents

Protection en éventail contre les intempéries ou le soleil Download PDF

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Publication number
EP3265624B1
EP3265624B1 EP16713991.4A EP16713991A EP3265624B1 EP 3265624 B1 EP3265624 B1 EP 3265624B1 EP 16713991 A EP16713991 A EP 16713991A EP 3265624 B1 EP3265624 B1 EP 3265624B1
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EP
European Patent Office
Prior art keywords
fan
spars
spar
prestressing
distance
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EP16713991.4A
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German (de)
English (en)
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EP3265624A1 (fr
Inventor
Urs Guggisberg
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Radius Sonnen und Wetterschutz GmbH
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Radius Sonnen und Wetterschutz GmbH
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Publication of EP3265624A1 publication Critical patent/EP3265624A1/fr
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    • 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
    • E04F10/04Sunshades, e.g. Florentine blinds or jalousies; Outside screens; Awnings or baldachins of flexible canopy materials, e.g. canvas ; Baldachins with material fixed on sections of a collapsible frame especially Florentine blinds

Definitions

  • the invention relates to a fan-like sun or weather protection and in particular, but not exclusively, to a drive system for spreading the spars of such a fan-like sun or weather protection.
  • a fan-shaped weather protection (hereinafter: fan) is, for example, from the European patent application EP0963495A2 known. Since it can be attached to a single point, it can be designed so that it can be rotated about several axes. In this respect, such weather protection arrangements can be set very flexibly and in a variety of ways.
  • a relatively complex, mechanical drive mechanism is used for the spreading and folding of the fan.
  • the drive mechanism must be able to exert the forces that are required when opening, folding, rotating and tilting the protection.
  • the drive mechanism must be able to withstand any high loads on the protection from wind, rain, snow, etc.
  • the drive mechanisms used so far are complex and robust.
  • the speed of movement when opening or closing the fan is very limited by its drive mechanism. Thus, there is a need for a simplified drive mechanism which allows the fan to be spread open or collapsed quickly.
  • the end BE396458A It is known to provide a pretensioned closing of a fan-shaped sun protection by means of two spring shafts and two corresponding pull cables which run through the eyes of the spars. So that the parts do not have to be attached individually to a wall, the spring shafts are mounted on a board together with the storage of the spars. Because of the large table, or because of the firmly mounted spring shafts, this arrangement has the disadvantage that a versatile tilting or turning of the fan is difficult or impossible. Furthermore, the spring shafts, pull ropes and eyelets represent a relatively complicated and error-prone mechanism.
  • the WO01 / 23692A2 discloses a generic weather protection device with the features of the preamble, wherein a clamping bracket is arranged at intermediate positions of two bars and has a joint attached in the center of the clamping bracket, which can be pretensioned with a torsion spring.
  • This mechanically complex constructed biasing element composed of the joint and the torsion spring, is arranged between the bars and directs the drive energy indirectly from the bars into the spring, whereby (drive) energy must also be used for a bending and stretching movement of the clamping bracket.
  • the invention provides a fan-like sun or weather protection according to claim 1. Thanks to the pretensioning element, the fan can be spread open or folded up quickly and easily, and a complicated and expensive drive mechanism can be dispensed with.
  • the term "compartments” is understood as an expandable arrangement of at least two spars, the radial inner ends of which are mounted in a common node area, which spars run essentially radially outward in a common plane, and which extend in the circumferential direction, based on an axis running orthogonally to the plane in the nodal area, can be spread apart in the said plane and brought together to one another.
  • the spars form a fan-like expandable frame, which is covered with a flexible or foldable fabric such as a tarpaulin, a net, a foil, a cloth or an assembly of, for example, plates or sheets can be provided.
  • tarpaulin Such a fan can form an area of at least one square meter or at least three square meters in the expanded state.
  • the Figures 1 to 3 show a compartment 1, which has several spars 2, 3, 7, 7 ', a tarpaulin 8 and a junction element 4.
  • six bars are shown: two of them, 2, 3, are larger, rigid outer bars which transfer a large part of the weight of the compartment 1 to the junction element 4 and which can keep the tarpaulin 8 taut when the compartment is open.
  • one, 3, is the Spars firmly connected to the junction element 4, the further spars 2, 7, 7 'being rotatably mounted in the junction element 4 at their ends located radially inward.
  • the junction element 4 has a pivot bearing 15, 16 for each of the movable (rotatable) bars 2,7,7 '.
  • the bars 2, 3, 7, 7 'and the pivot bearings are preferably arranged in such a way that the bars 2, 3, 7, 7' can lie essentially parallel to one another in the plane of the compartment 1 when the compartment 1 is closed. For this reason, the radially inner end of the spar 2 is provided with a tapered end part.
  • the junction element 4 can, for example, have two parallel plates, between which the inner ends of the spars 2, 3, 7, 7 'are mounted.
  • the spars 2, 7, 7 'are rotatably mounted about axes 15 and 16, respectively, the spar 3 being firmly connected to the junction element 4.
  • the spar 3 can, however, also be rotatably mounted.
  • the spar 3 can also be formed as the surface of a wall. In the latter case, too, it is referred to as the spar in this description.
  • the junction element 4 is shown as a single element in which all spars are mounted.
  • the junction element 4 can alternatively consist of several individual elements, each element being a spar or several bars can be stored.
  • the node element 4 whether consisting of one or more physical elements, is referred to in this description as a functional element.
  • the individual pivot axes of the spars can be essentially parallel to one another and, for example, coaxially or at spatial distances from one another, and are roughly referred to collectively as a common spreading axis of the fan.
  • the respective radial positions along the first and second spars, where the prestressing element 5 is connected or supported to the first and second spars (also called intermediate positions), can be expressed as a radial distance from the inner end of the respective spar, or as a radial distance from the expansion axis will. Unless otherwise specified, the distance from the inner end and that from the expansion axis can be understood to be practically the same.
  • the gas pressure spring 5 is arranged in such a way that, when the fan is opened (as in FIG Fig. 1 shown) keeps the tarpaulin taut. In this state, the gas pressure spring has an elongated dimension of a 1 .
  • the gas pressure spring is connected to the bars 2 and 3 by means of swivel joints 11 and 12, for example. If the bars 2 and 3 are taken as first and second reference axes, respectively, the extended gas pressure spring 10 has a dimension of b 1 along the second reference axis and a dimension of c 1 along a y-axis lying in the plane and orthogonal to the second reference axis .
  • the prestressing element 5 is at an angle ⁇ 1 to the second reference axis.
  • the values a 1 , b 1 and c 1 are preferably chosen such that the angle ⁇ 1 is at most 45 degrees, or preferably at most 35 degrees.
  • the retracted gas pressure spring When compartment 1 is closed (as in Fig. 2 shown) the retracted gas pressure spring has an elongated dimension of a 2 , a dimension along the second reference axis of b 2 and a dimension along the y-axis of c 2 .
  • the compartment 1 When the compartment 1 is closed, it is Biasing element 5 at an angle ⁇ 2 to the second reference axis.
  • the values a 2 , b 2 and c 2 are preferably chosen such that the angle ⁇ 2 is at least 5 degrees, or preferably at least 10 degrees.
  • the extent b 1 is preferably greater, or preferably at least 1.5 times as large, or preferably at least 1.8 times as large as the first distance c 1 .
  • the length a 1 of the extended biasing element 5 ( Fig. 1 ) is preferably no more than twice, or preferably no more than 1.8 times as large as the length a 2 of the retracted prestressing element 5 ( Fig. 2 ).
  • FIG. 1 shows the fan 1 of Fig. 1 in a closed (folded) state, in which a maximum amount of energy is stored in the gas pressure spring.
  • the spars 2, 3, 7, 7 ' have been brought together completely and are parallel to each other.
  • the closed or folded state could represent a partial closing or folding up, the spars 2, 3, 7, 7 'still being partially spread apart.
  • the terms "close” and “closed” in this description and in the claims are used in the sense of bringing the spars together along the corresponding circumferential direction 13, and not in the sense of "locked” or “fastened together ".
  • the compartment 1 may have a locking device such as the locking pin 23 for holding the compartment 1 in the closed state.
  • the locking pin 23 engages in a hole or in a recess in the inclined end part of the spar 2.
  • the energy stored in the pretensioning element 5 (gas pressure spring in this example) is available for spreading the fan 1 along the circumferential direction 14 (hereinafter referred to as the opening direction).
  • the locking device described above can also serve as a release device, e.g. by moving the locking pin 23 out of the hole or out of the recess, whereupon the compartment 1 is spread open by means of the energy stored in the pretensioning element 5.
  • the spreading is preferably carried out solely by the energy stored in the prestressing element 5, to be precise without any external mechanical drive force.
  • the pretensioning element 5 is thus formed in such a way that it can store enough energy to drive the spreading open (or closing, depending on the design) of the compartment 1 between its closed state and its spread-open state.
  • the release device is preferably designed so that it can be actuated from a distance of more than 1 m, such as with a rod or a remote control.
  • the compartment 1, which is hung on a wall at a height of e.g. 2.5 m, can be opened using the rod or the remote control.
  • the release device can be designed so that it can be operated directly by hand.
  • the compartment 1 can have a damping device for damping the movement of the bars 2, 3, 7, 7 'when the compartment 1 is closed and / or when the compartment 1 is spread open.
  • the gas pressure spring 5 also fulfills the function of the damping device.
  • a separate damping device could, however, be arranged as one or more stand-alone elements or in the axes of rotation of the bars.
  • the example shown shows an opening angle in the expanded state ( Fig. 1 ) of about 90 degrees.
  • the opening angle can be larger or smaller than 90 degrees.
  • a prestressing element 5 which extends between the two outermost spars 2 and 3 in the circumferential direction.
  • the pretensioning element 5 can alternatively be arranged between any two of the spars, the drive and tensioning force of the pretensioning element 5 being able to be transmitted to the other spars in a different manner if necessary.
  • prestressing elements 5 be arranged between the spars 2, 3, 7, 7 ', for example in an overlapping arrangement, with each prestressing element 5 jumping over a spar to which another prestressing element is connected. In this way, the opening angle of the fan 1 can be made as large as desired, for example if the junction element 4 and / or the mounting of the inner ends of the bars 2, 3, 7, 7 'are also redesigned in a suitable manner.
  • the invention is explained with the aid of examples in which the tensioning energy stored in the pre-tensioning element is used to expand the fan 1.
  • the compartment 1 can alternatively be designed in such a way that the energy stored in the prestressing element 5 is used to close the compartment 1 instead of opening it.
  • a prestressing element 5 can be used, which is tightened when the prestressing element 5 expands linearly.
  • the fan is held in the closed state by the tensioning force of the pretensioning element 5.
  • the spars can be kept expanded by another means.
  • a tilting mechanism 6, 9, 10, 17, 18, 19, 20, 21, 22 is also shown, which is now also with reference to the Figures 4 and 5 is explained.
  • the compartment 1 is attached or suspended from a fastening point.
  • the attachment point is in the Figures 1 to 5 not illustrated.
  • a suitable fastening point can be, for example, a region of a wall, a column, a stand, a roof, a roof beam, a rafter or the floor.
  • the tilting mechanism is used, if necessary, to change the angle of inclination of the fan, for example in order to achieve a desired shadow effect.
  • the compartment 1 can be used without the tilting mechanism, specifically without the setting element 6.
  • the tilting mechanism has an adjusting element 6 which can be attached essentially rigidly to the fastening point.
  • the compartment 1 is mounted on the setting element 6 by a rotary joint 17, the compartment 1 rotating about the axis X relative to the setting element 6 can.
  • the setting element can be provided with further axes of rotation or joints.
  • the illustrated setting element 6 has several setting openings 20 into which an setting pin 19 can be moved in order to block the rotation of the fan 1.
  • the adjustment pin 19 is actuated via an actuation element 9 and an actuation connection 18.
  • the actuation connection is formed, for example, as a cord or chain 18, which can be pulled by means of the actuation element 9 (e.g.
  • the actuating element 9 can be designed so that it can be actuated by a user directly by hand and / or with a rod or other remote control.
  • the actuation connection 18 can run at least partially through the spar 3, for example in an inner cavity of the spar 3.
  • the tilting mechanism has a second biasing element 10, such as a gas spring. This extends between the junction element 4 of the fan 1 and the setting element 6 in such a way that the second prestressing element 10 pre-loads the rotational movement of the fan 1 in a direction of rotation about the axis X. In this way, a relatively heavy fan can easily be moved in the stated direction of rotation, e.g. by a user.
  • a second biasing element 10 such as a gas spring.
  • a first end of the second prestressing element 10 is mounted on a first bracket 21 which is rigidly or integrally connected to the junction element 4.
  • the second end of the second prestressing element 10 is mounted on a second arm 22, which is rigidly or integrally connected to the adjusting element 6.
  • the Figures 6 and 7 show a sun or weather protection 1, 1 ', which is essentially a mirrored version of the one in FIG Figures 1 to 5 shown fan is formed.
  • Two compartments 1, 1 ' share a common spar 3, which is rigid or integral with the common Node element 4 'is connected.
  • the adjustment element 6 is attached to a fastening point 33, such as a wall, a stand, a roof or the floor.
  • the angle of inclination of the combined fan 1, 1 'can take place by actuating the actuating element 9.
  • the movement of the fan 1, 1 ′ about the axis X is made considerably easier by the preloading second pretensioning element 10.
  • the compartment 1 has a closing device 24, 25, 27, 34) for closing or folding the compartment 1.
  • the bars 2, 3 are pulled together with a pulling means 25, such as a cord or a chain.
  • the contraction is driven by a drive element 24, such as a crankshaft 24, 27 or a motor.
  • the drive element 24 is preferably accommodated in the junction element 4 and, as in the case of the actuating element 9 described above and the triggering device 23, can be operated remotely.
  • a drive ring 34 is provided which can be rotated, for example, with a hook at the end of a rod in order to close the compartment.
  • the closing device can be configured in such a way that when the compartment is opened, the cord or chain 25 is withdrawn from the shaft 27 of the crankshaft or of the engine substantially with little or no resistance.
  • the traction means 25 preferably runs at least partially through the spar 3.
  • the adjustment element 6 is provided with a first fastening element 29, and the fastening point 33 is provided with a corresponding second fastening element 30.
  • the first and second fastening elements are designed so that they engage with one another to form a frictional suspension.
  • the first fastening element 29 is formed as an elongated rod or tube
  • the second fastening element 30 being formed as a tube.
  • the tube 30 is over the Rod or tube 29 pulled up and fastened with a releasable locking element (not shown) at least against a rotation about the axis X, preferably also against a movement along the rod or tube 29.
  • the suspension shown is designed so that the fan 1 easily from the first fastening element 29 can be removed.
  • the releasable locking element is designed so that it can be operated remotely, as with the actuating element 9 described above, with the release device 23 and with the drive element 24. Thanks to this remote-controlled locking element, it is possible for one person to detach the compartment from the suspension and take it down.
  • the adjustment element 6 is reinforced with support plates 31, 32.
  • the reference numeral 28 relates to connecting parts of the rotary joint 17.

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Claims (15)

  1. Protection en éventail contre le soleil ou les intempéries, dénommée ci-après éventail (1), laquelle présente une pluralité de barres (2, 3, 7, 7') s'étendant sensiblement radialement par rapport à la forme de l'éventail déployé, ces barres (2, 3, 7, 7') étant mobiles entre un état fermé et un état déployé de l'éventail (1), ces barres (2, 3, 7, 7') étant mobiles dans un premier mouvement (13, 14) d'un premier à un deuxième état parmi les deux états précités et étant mobiles sensiblement dans un plan et ces barres (2, 3, 7, 7') étant mobiles dans un deuxième mouvement (13, 14) du deuxième au premier état parmi les deux états précités et étant mobiles sensiblement dans le plan précité, ces barres (2, 3, 7, 7') comprenant une première barre (2) et une deuxième barre (3), l'éventail (1) présentant un premier élément précontraint (5), lequel étant relié à la première barre (2) dans une première position intermédiaire radiale le long de la première barre (2), et à la deuxième barre (3) dans une deuxième position intermédiaire radiale le long de la deuxième barre, et le premier élément précontraint (5) étant disposé entre les première et deuxième positions intermédiaires, caractérisé en ce que le premier élément précontraint (5) est réalisé de telle sorte que lors du premier mouvement (13, 14) des barres (2, 3, 7, 7') une énergie d'entraînement du premier mouvement est emmagasinée par une extension linéaire (a1) ou par une traction conjointe linéaire, et en ce qu'il entraîne le deuxième mouvement (13, 14) au moyen de l'énergie d'entraînement emmagasinée.
  2. Eventail (1) selon la revendication 1, lequel présente un élément d'amortissement pour l'amortissement du premier et/ou du deuxième mouvement(s) (13, 14) des barres (2, 3, 7, 7').
  3. Eventail (1) selon l'une des revendications 1 et 2, dans lequel le premier élément précontraint (5) et/ou l'élément d'amortissement comporte un ressort à gaz (5).
  4. Eventail (1) selon l'une des revendications précédentes, dans lequel:
    chacune parmi la pluralité précitée de barres (2, 3, 7, 7') est fixée às un élément nodal (4) de l'éventail (1);
    l'éventail présente un premier axe de référence, lequel s'étend le long de la première barre (2);
    l'éventail présente un deuxième axe de référence, lequel s'étend le long de la deuxième barre (3);
    à l'état déployé de l'éventail, les premier et deuxième axes se croisent en un point de référence;
    le premier élément précontraint (5) est fixé à la première position intermédiaire à une première distance (c1) du point de référence (4) sur la première barre (2) au moyen d'une première articulation (11);
    le premier élément précontraint (5) est fixé à la deuxième position intermédiaire à une deuxième distance (b1) du point de référence (4) sur la deuxième barre (3) au moyen d'une deuxième articulation (12) et
    la deuxième distance (b1) est supérieure, ou de préférence au moins 1,5 fois supérieure, ou plus préférentiellement au moins 1,8 fois supérieure à la première distance (c1).
  5. Eventail (1) selon l'une des revendications précédentes, dans lequel:
    à l'état déployé de l'éventail (1), un premier axe s'étendant à travers la première et la deuxième fixations (11, 12) du premier élément précontraint (5) forme un premier angle (α1) avec la deuxième barre (3),
    et dans lequel le premier angle (α1) est d'au plus 45 degrés,
    et/ou
    à l'état fermé de l'éventail (1), le premier axe forme un deuxième angle (α2) avec la deuxième barre (3), ce deuxième angle (α2) étant d'au moins 5 degrés.
  6. Eventail (1) selon la revendication 4 ou 5, dans lequel:
    à l'état déployé de l'éventail (1), il existe une troisième distance (a1) entre la première fixation (11) et la deuxième fixation (12);
    à l'état fermé de l'éventail (1), il existe une quatrième distance (a2) entre la première fixation (11) et la deuxième fixation (12);
    dans lequel la quatrième distance (a2) est d'au moins 50% de la troisième distance (a1).
  7. Eventail (1) selon l'une des revendications précédentes, dans lequel le premier élément précontraint (5) est conçu de manière à pouvoir maintenir tendu, à l'état déployé de l'éventail (1), un plan (8) de l'éventail (1).
  8. Eventail (1) selon l'une des revendications précédentes, lequel comprend un premier dispositif de déclenchement (23) pour déclencher le deuxième mouvement (13, 14),
  9. Eventail (1) selon l'une des revendications précédentes, lequel comporte un dispositif de maintien (6, 17, 28, 32), l'élément nodal (4) étant monté pivotant sur le dispositif de maintien (6, 17, 28, 32) autour d'un axe de pivotement (X) s'étendant dans le plan précité, un angle d'inclinaison de l'éventail, par rapport au dispositif de maintien (6, 17, 28, 32) étant réglable.
  10. Eventail (1) selon la revendication 9, lequel comporte un deuxième élément précontraint (10) pour précontraindre la rotation précitée de l'élément nodal (4) autour de l'axe de pivotement (X) par rapport au dispositif de maintien (6, 17, 28, 32).
  11. Eventail (1) selon l'une des revendications 9 et 10, dans lequel le dispositif de maintien (6, 17, 28, 32) comporte un élément d'encliquetage (19) et une pluralité d'ouvertures ou d'évidements (20) d'encliquetage, lors du réglage précité de l'angle d'inclinaison, l'élément d'encliquetage (19) pouvant s'encliqueter dans l'une des ouvertures ou l'un des évidements (20) et maintenir ainsi l'éventail (1) dans l'angle d'inclinaison donné.
  12. Eventail (1) selon la revendication 11, lequel comporte un dispositif de libération (9, 18) pour libérer l'élément d'encliquetage (19).
  13. Eventail (1) selon l'une des revendications précédentes, lequel comporte un dispositif de fermeture (24, 25, 27, 34) pour replier l'éventail (1), ce dispositif de fermeture (24, 25, 27, 34) présentant un mécanisme d'entraînement (24, 34) et un moyen de traction (24, 25) pour tirer ensemble au moins deux des barres (2, 3, 7, 7').
  14. Eventail (1) selon la revendication 12 ou la revendication 13, dans lequel au moins une partie du dispositif de libération (9, 18) ou du moyen de traction (25) s'étend à travers un creux prévu à l'intérieur de l'une des barres (2, 3, 7, 7').
  15. Protection contre le soleil ou les intempéries présentant un premier éventail (1) selon l'une des revendications précédentes et un deuxième éventail (1') selon l'une des revendications précédentes, dans laquelle l'une des première et deuxièmes barres (2, 3) du premier éventail (1) est reliée fixement ou est d'un seul tenant avec l'une des première et deuxième barres (2, 3) du deuxième éventail (1'), et/ou dans laquelle l'élément nodal (4) du premier éventail (1) est relié fixement ou est d'un seul tenant avec l'élément nodal (4) du deuxième éventail (1').
EP16713991.4A 2015-03-04 2016-03-01 Protection en éventail contre les intempéries ou le soleil Active EP3265624B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP15157599 2015-03-04
PCT/IB2016/051122 WO2016139575A1 (fr) 2015-03-04 2016-03-01 Élément de protection contre le soleil ou les intempéries en forme d'éventail

Publications (2)

Publication Number Publication Date
EP3265624A1 EP3265624A1 (fr) 2018-01-10
EP3265624B1 true EP3265624B1 (fr) 2021-09-22

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Application Number Title Priority Date Filing Date
EP16713991.4A Active EP3265624B1 (fr) 2015-03-04 2016-03-01 Protection en éventail contre les intempéries ou le soleil

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US (1) US20180051466A1 (fr)
EP (1) EP3265624B1 (fr)
AU (1) AU2016227408B2 (fr)
ES (1) ES2898856T3 (fr)
WO (1) WO2016139575A1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7499635B2 (ja) 2020-07-28 2024-06-14 タカノ株式会社 扇状に開閉する遮蔽物
EP4237640A1 (fr) 2020-10-30 2023-09-06 Radius Sonnen und Wetterschutz GmbH Système de retenue et élément déployable et rétractable de protection contre les intempéries muni d'un système de retenue et procédé pour fixer et déplacer un élément déployable et rétractable
CN115459791B (zh) * 2022-08-01 2023-09-05 国电建投内蒙古能源有限公司 一种具有防护结构的室外用信号接收设备

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US5139070A (en) * 1990-10-29 1992-08-18 Kidd Kenneth B Shade for arched openings using slide rotator-arm hinge
US5657810A (en) * 1996-06-20 1997-08-19 Levy; Simon Screening device for vehicle windows
CH693535A5 (de) * 1997-02-27 2003-09-30 Urs Guggisberg C O Guggisberg Faltbares Dach und Stellwand als Wind- und Wetterschutz, sowie Pavillon mit einem Dach und einer Stellwand.
US5947139A (en) * 1998-09-08 1999-09-07 Lebrecht; Horst Shade stand with swirling type canopy
US6976523B2 (en) * 1998-10-19 2005-12-20 Huang Sunny E L Collapsible auto shade
AUPP775998A0 (en) * 1998-12-17 1999-01-21 Gale, Kenneth Ronald Apparatus having a support structure with a central hub
CH693536A5 (de) * 1999-09-24 2003-09-30 Urs Guggisberg Wetterschutzvorrichtung mit wenigstens einem faltbaren Schutzelement.
US7051481B2 (en) * 2002-04-10 2006-05-30 Diana Delavega Folding collapsible shelter
US6820674B2 (en) * 2003-03-24 2004-11-23 Mary M. Abita Fan shade
JP2007503801A (ja) 2003-08-15 2007-03-01 ラルセン,オル,ジェッペ,フジョルド 折畳式防蚊ルーム構造体
US7464900B2 (en) * 2004-10-20 2008-12-16 The Boeing Company Folding retractable protective dome for space vehicle equipment
US8267105B1 (en) * 2010-11-30 2012-09-18 Denmark Jr Cleveland Portable magnetic awning apparatus
USD684353S1 (en) * 2010-12-13 2013-06-18 Susan Grohs Patio fan shade
US9717973B2 (en) * 2012-06-07 2017-08-01 Indian Industries, Inc. Basketball stopping wall
AU2013323208A1 (en) * 2012-09-27 2015-05-14 Articulatedshade Canopies and canopy support structures
DE202012104640U1 (de) 2012-11-19 2013-02-01 Raymund Grägel Markise
US10426235B2 (en) * 2017-01-25 2019-10-01 Richard Thomas Bullock Portable shade provider

Also Published As

Publication number Publication date
EP3265624A1 (fr) 2018-01-10
ES2898856T3 (es) 2022-03-09
AU2016227408A1 (en) 2017-10-12
NZ735422A (en) 2023-08-25
US20180051466A1 (en) 2018-02-22
AU2016227408B2 (en) 2021-06-03
WO2016139575A1 (fr) 2016-09-09

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