EP2977542B1 - Dispositif de protection plat doté d'éléments de retenue séparés - Google Patents

Dispositif de protection plat doté d'éléments de retenue séparés Download PDF

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Publication number
EP2977542B1
EP2977542B1 EP15177424.7A EP15177424A EP2977542B1 EP 2977542 B1 EP2977542 B1 EP 2977542B1 EP 15177424 A EP15177424 A EP 15177424A EP 2977542 B1 EP2977542 B1 EP 2977542B1
Authority
EP
European Patent Office
Prior art keywords
holding parts
flag
protective device
securing parts
flat
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
EP15177424.7A
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German (de)
English (en)
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EP2977542A1 (fr
Inventor
Werner Lindfeld
Jochen Hachtel
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.)
MHZ Hachtel GmbH and Co KG
Original Assignee
MHZ Hachtel GmbH and Co KG
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Filing date
Publication date
Application filed by MHZ Hachtel GmbH and Co KG filed Critical MHZ Hachtel GmbH and Co KG
Publication of EP2977542A1 publication Critical patent/EP2977542A1/fr
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Publication of EP2977542B1 publication Critical patent/EP2977542B1/fr
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Classifications

    • 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
    • E06B9/56Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor
    • E06B9/58Guiding devices
    • E06B9/581Means to prevent or induce disengagement of shutter from side rails

Definitions

  • the invention relates to a flat protective device, comprising a winding shaft and a surface web, which is rollable on the winding shaft in the winding direction, wherein arranged on an outer edge of the surface web a plurality of spaced apart in the winding direction holding parts or formed, which are performed at least partially in a guide rail of the flat protective device , wherein the lengths of the holding parts and the spacing of the holding parts in the winding direction are chosen so that the holding parts of a wound on the winding shaft first surface area portion form a first series of substantially seamless abutting holding parts, and that the holding parts in the longitudinal direction of the winding shaft at least in sections on the Protruding outer edge of the surface sheet.
  • a surface web is understood to be any flat woven or nonwoven web, for example a textile web or a film. Particularly preferably, the surface web is a textile web.
  • a similar sun protection device is from the US 2012/0325416 A1 known.
  • the known sun protection device has a particularly narrow piping for guiding its surface web.
  • the object is thus inventively achieved in that the spacing of the holding parts and the thickness of the holding parts are selected perpendicular to the plane of the surface sheet so that when forming a plurality of superimposed rows of holding parts, the holding parts are each arranged radially one above the other.
  • the holding parts are thus formed and arranged in the first surface sheet section so that they form a first row on the winding shaft one behind the other. Only when these holding parts form a first row on the winding shaft, a second series of holding parts is arranged on the first row. Until the first row of holding parts is formed on the winding shaft when rolling up the surface web, the winding shaft has already been rotated more than once. On the winding shaft is thereby at least partially more than one layer of the surface sheet until the first row is filled with holding parts. Since the holding parts only after more than one revolution of the winding shaft forms a first series of holding parts and thus a bead formation is avoided, the holding parts can be made correspondingly solid and stable to withstand large, acting on the surface sheet forces.
  • the sections of the holding parts (guide elements) guided in the guide rail project beyond the winding shaft in the longitudinal direction of the winding shaft, ie in the direction of the axis of rotation of the winding shaft.
  • the holding parts are thus arranged at least in sections away from the outer edge of the surface sheet.
  • the distance between two opposite (perpendicular to the winding direction) guide elements is thus at least as large as the width of the surface sheet.
  • the winding thickness of the protective device can be kept low in the wound state despite the use of guide elements which have a greater thickness compared to the surface sheet, so less space is required for the device according to the invention, as is the case with known planar protective devices.
  • the holding parts are in the rolled-up state of the surface web, beginning with the first row in the region of the lateral surface of the winding shaft, at least 80%, in particular at least 90%, congruent stacked.
  • the holding parts are arranged in the rolled up state of the surface sheet radially superimposed to the axis of rotation of the winding shaft.
  • the holding parts are arranged radially radially. Due to the radially radial or star-shaped arrangement of the holding parts, the holding parts are up to the radially outermost holding parts with their longitudinal sides at least 80%, in particular at least 90%, touching each other. As a result, buckling and wave formation in the surface sheet can be effectively avoided.
  • the surface sheet can be rolled onto the winding shaft, wherein the holding parts are attached to the surface web, that they each lie at least 80%, in particular at least 90%, in the wound state of the protective device one above the other.
  • the attachment of the holding parts can be done by hand during the winding of the surface sheet.
  • the holding parts can already be fastened during winding.
  • a marking can be applied to those points on the surface web to which later, when the surface web is unwound again, the holding parts are fastened.
  • the holding parts are preferably arranged on the end faces of the wound surface web such that the radial rays visible through the holding parts have an angle of 40 °, 36 ° or 32 °, 73 ° to one another.
  • the aforementioned angles correspond to a circumferential arrangement of 9, 10 or 11 holding parts on the wound surface sheet.
  • the description will be made as much as possible with respect to a single outer edge of the surface web.
  • the surface web is guided on both outer sides in each case a guide rail by holding parts.
  • the planar protective device is preferably formed mirror-symmetrically to a center plane which is perpendicular to the longitudinal axis of the winding shaft.
  • planar protective device according to the invention is preferably used for outdoor use, since here partly high and variable forces, eg. B. wind forces acting on the protective device.
  • the protective device according to the invention can also be used in the interior of buildings, z. B. in horizontal systems, such as covers of swimming pools.
  • the holding parts preferably have the same length in the winding direction. Due to their uniform length, the holding parts can be produced inexpensively.
  • the flat protective device is designed such that from the winding of the first holding member at each revolution of the winding shaft, a number t is wound on holding parts, wherein the additional holding parts at least until the formation of the first row substantially completely in the winding direction or be applied against the winding direction to the already wound holding parts.
  • the number n of the holding parts of a row depends on the diameter of the winding shaft and on the length l of the holding parts in the winding direction. The more lugs to wind per winding, the smaller the spacing between the retainers must be, and the fewer turns needed to form a complete row of retainers. The number and length of the holding parts are to be adjusted according to the requirements.
  • the distances of the holding parts within a revolution can be the same length to facilitate the manufacture of the protective device.
  • the distance of the holding parts against the winding direction preferably increases steadily between 1% and 20%.
  • the scaling factor s is dependent on the diameter of the winding shaft and on the thickness of the surface web.
  • a particularly easily running planar protective device can be achieved in that at least one holding part, in particular all holding parts, a trained as a slider body guide element having at least one bent towards the inside of the guide rail formed sliding surface.
  • At least one holding part in particular all holding parts, may have a sliding surface that is resiliently formed towards the inside of the guide rail. The surface sheet can thereby be guided flexibly in the guide rail.
  • a particularly quiet and low-friction guidance of the surface track in the guide rail can be achieved by having at least one holding part, in particular all holding parts, a sliding roller pointing towards the inside of the guide rail as a guide element.
  • At least one guide element in particular all guide elements, spaced from the edge of the surface sheet.
  • At least one holding part can have a first lug attached to the upper side of the surface web.
  • the first flag comprises a sheet material, for example a piece of film or a woven or nonwoven textile piece.
  • all holding parts have a first lug attached to the upper side of the surface lane.
  • the second flag comprises a sheet material, for example a piece of film or a woven or nonwoven textile piece.
  • the first flag and / or the second flag may be connected to the surface web by a suitable bond, such as an adhesive bond, or, preferably, by a thermoplastic adhesive layer. Particularly preferably, both flags are connected by a respective thermoplastic adhesive layer with the surface sheet.
  • the thermoplastic adhesive layer is melted or fused to connect the respective holding part with the surface sheet.
  • the thermoplastic adhesive layer has the particular advantage that any surface webs can be connected to the holding part.
  • a particularly strong connection of a holding part to the surface web can be achieved if the first flag and the second flag are formed from a one-piece, folded in the region of a guide element flag textile.
  • the first lug and the second lug of all holding parts preferably each consist of a one-piece flag textile folded in the region of its respective guide element.
  • the flag textile may, for further strengthening of the connection between the holding part and surface web in the region of the assignment, have a holding cord running in the winding direction.
  • each holding part in its allocation to a running in the winding direction holding cord.
  • At least one holding part in particular all holding parts, may be designed mirror-symmetrically to the plane of the surface web.
  • the holding part, or the holding parts are the same above and below a plane defined by the surface web educated.
  • production costs can be saved.
  • the holding part or the holding parts can be attached without regard to its or their orientation on the surface sheet.
  • a particularly easy assembly and thereby achieved low production costs can be achieved if the holding parts are identical.
  • planar protective device can be designed, for example, as sunscreen, as glare protection, privacy screen, windscreen, light protection, insect protection or fire protection.
  • the material of the surface sheet is then to be selected according to the intended use.
  • Fig. 1a shows a holding part 10.
  • the holding part 10 has a guide element 12, between which a first lug 14 and a second lug 16 are arranged.
  • the first flag 14 and the second flag 16 consist of a one-piece or one-piece flag textile 18th
  • Fig. 1b shows the holding part 10 in a plan view.
  • the guide element 12 has a first curved sliding surface 20 and a second curved sliding surface 22.
  • the sliding surfaces 20, 22 serve for the low-friction guidance of the guide element 12 on an inner side of a guide rail (not shown).
  • Fig. 2a shows a holding part 24.
  • the holding part 24 is identical to the holding part 10 is formed.
  • the holding part 24 has a guide element 26 with two rollers 28, 30.
  • the rollers 28, 30 are mounted on a common axis 32. Through the rollers 28, 30, the holding part 24 can be performed with particular low friction and noise on a guide rail.
  • Fig. 2b shows the holding part 24 in a plan view.
  • the caster 28 has a chamfer 34 on the outside to facilitate insertion of the support member 24 into a guide rail.
  • Fig. 3a shows a holding part 36.
  • the holding part 36 is identical to the holding part 10 is formed.
  • the holding part 36 has a slider element designed as a guide element 38 with resiliently designed sliding surfaces 40, 42.
  • the sliding surfaces 40, 42 serve for flexible guidance of the holding part 36 on the inside of a guide rail.
  • Fig. 3b shows the holding part 36 in a plan view.
  • the resiliently shaped sliding surfaces 40, 42 are formed on arms which are formed from outside of the slider body 38 bent inwardly.
  • the holding parts 10, 24, 36 described above are symmetrical to one between the first lug 14 and the second lug 16 (see FIG Fig. 1a ) extending level formed.
  • the holding parts 10, 24, 36 are formed symmetrically to a surface track on which the holding parts 10, 24, 36 can be fastened.
  • Fig. 4a shows a trained as a slider body guide member 44.
  • the slider body 44 includes - as well as the slider body 38 - from the outside of the slider body 44 inwardly bent arms 46, 48.
  • the arms 46, 48 have curved sliding surfaces 50, 52.
  • Fig. 4b shows a trained as a slider body guide member 54.
  • the slider body 54 has arms 56, 58, which also have curved sliding surfaces.
  • the arms 56, 58 are formed bent from an inner side of the slider body 54 outwardly.
  • the slider body 60 substantially corresponds to the slider body 54.
  • arms 62, 64 are flatter than the arms 56, 58 of the holding part 54.
  • the slider bodies 44, 54, 60 described above can be provided with at least one lug, in particular two lugs, analogously to the holding parts 10, 24, 36.
  • Fig. 3c shows an enlarged view of the due to its compact and thus particularly stable training preferred holding part 36.
  • the slider body 38 has a recess 66.
  • a flag textile 68 is folded.
  • a retaining cord 70 is arranged in the area of the assignment of the flag textile 68.
  • thermoplastic adhesive layer 72 The inside of the flag textile 68 is coated with a thermoplastic adhesive layer 72.
  • the holding part 36 can be particularly firmly connected to a surface sheet of any material.
  • Fig. 5 shows a surface sheet 74 having a plurality of fastened to the surface sheet 74 holding parts, of which for reasons of clarity, only a first holding part 76 and a second holding part 78 are provided with a reference numeral.
  • holding parts are identical to the holding part 36 (see Fig. 3c ) educated.
  • the first holding part 76 has the length l and is arranged at a distance A to the second holding part 78 at a first outer edge 80 of the surface sheet 74.
  • the surface sheet 74 with the holding parts attached thereto can be rolled up in the winding direction on a winding shaft.
  • the winding direction is in Fig. 5 indicated by an arrow 82.
  • a second outer edge 84 extends in the winding direction of the surface web 74.
  • the holding parts on the second outer edge 84 are arranged symmetrically to the holding parts, for example to the holding parts 76, 78, on the first outer edge 80 , For reasons of clarification of the constant increase in distance, the distance of the holding parts against the winding direction is exaggerated greatly increased.
  • Fig. 6a-6f shows the winding of a first series of holding parts on a winding shaft of a flat protective device 85.
  • a guide rail of the flat protective device 85 for guiding the holding parts is not shown for reasons of clarity.
  • Fig. 6a shows the winding shaft 86, on which a surface web 88 is rolled up.
  • the winding direction is indicated by an arrow 90.
  • the holding parts are identical to the holding part 36 according to Fig. 3c educated.
  • the length l of the holding parts in the winding direction is the same.
  • the holding parts are arranged in the winding direction on an outer edge 92 of the surface web 88.
  • the first wound on the winding shaft 86 holding part is the numeral 1 designated and arranged at a distance A from another designated by the numeral 2 holding part.
  • Fig. 6b shows the flat protective device 85 after a rotation of the winding shaft 86.
  • two more, designated by the numeral 2 holding parts have lined up on the winding shaft 86.
  • Fig. 6c-6f show the two-dimensional protection device 85 in each case after a further rotation of the winding shaft 86. With each revolution, two holding parts more in the range of the winding shaft 86 are lined up until the holding parts (see Fig. 6f ) form a first row 94 of substantially continuous juxtaposed holding parts.
  • the added at the respective rotation holding parts are in Fig. 6a-6f denoted by the number of this revolution. For example, the added in the 5th turn holding parts are designated by the numeral 5.
  • Distance A and length l of the holding parts are thus chosen so that with each revolution of the winding shaft two holding parts are lined up new on the winding shaft. With each winding, the distance A changed so that the holding parts come to rest despite a winding radius of a previously wound holding part.
  • the holding parts protrude with their guide elements in the longitudinal direction of the winding shaft 86 beyond the winding shaft 86. As a result, space can be obtained transversely to the axis of rotation of the winding shaft 86 in order to be able to arrange the holding parts more effectively without bulging.
  • Fig. 6g shows the flat protective device 85 with several layers (rows) wound up holding parts.
  • the holding parts are arranged radially congruent superimposed with respect to the axis of rotation of the winding shaft 86.
  • the distance of the holding parts thus increases against the winding direction after closing the first row 94 steadily to the in Fig. 6g to achieve shown "stacking" of the holding parts.
  • the holding parts can be arranged in this way particularly space-saving, so that there is a comparison with the prior art known surface protection devices significantly reduced winding thickness.
  • Fig. 7 shows several holding parts 96, 98, 100, 102 in their manufacture.
  • the holding parts 96, 98, 100, 102 each have a guide element 104, 106, 108, 110.
  • the guide elements 104, 106, 108, 110 are integrally formed.
  • the guide elements 104, 106, 108, 110 are made of plastic and are molded onto a flag textile 112.
  • the banner textile 112 comprises in Fig. 6 visible first tabs 114, 116, 118, 120 and may also have identical underlying second tabs shown in FIG Fig. 6 are not visible.
  • the banner textile 112 is at his in Fig. 6 inside lying sides completely with a thermoplastic layer (see the thermoplastic adhesive layer 72 in Fig. 3c ).
  • the holding parts 96, 98, 100, 102 are separated by a separation method, in particular by cutting, along the dashed lines.
  • the separation is in Fig. 6 indicated by cutter knife.
  • the corners of the flag textile 112 are truncated by a cutting process.
  • the holding parts 96, 98, 100, 102 thus obtained are identical to the holding parts 36 according to FIG Fig. 3c educated.
  • Fig. 8a to 11b show in summary preferred variants of the holding part according to the invention in a perspective or sectional view.
  • Fig. 8a shows a structurally particularly simple and thus inexpensive to produce holding part 122.
  • the holding part 122 has a single first flag 124.
  • the first flag 124 is in the form of a flag textile.
  • the first lug 124 is preferably provided with a thermoplastic plastic layer at least on one surface side, in particular on both surface sides.
  • the first flag 124 may be formed entirely of a thermoplastic.
  • Fig. 8b shows the holding part 122, wherein from Fig. 8b it can be seen that to the first flag 124, a guide member 126 is molded from plastic.
  • Fig. 9a shows an adhesive part 128, the holding part 122 according to Fig. 8a equivalent.
  • the holding part 128 has a first lug 130 and a second lug 132.
  • the two lugs 130, 132 are not connected to one another at the end.
  • Fig. 9b shows the holding part 128 according to Fig. 9a , being out Fig. 9b it can be seen that the two lugs 130, 132 are molded onto each other in abutment with a guide element 134.
  • the two lugs 130, 132 are preferably formed from a textile flag material and have on the mutually facing surface surfaces on a thermoplastic layer of plastic.
  • Fig. 10a shows a holding part 136, the holding part 128 according to Fig. 9a equivalent.
  • the holding part 136 has a first lug 138 and a second lug 140, which are formed from a one-piece lug material.
  • Fig. 10b shows the holding part 136, wherein Fig. 10b It can be seen that the flag material of the lugs 138, 140 is folded over at the end in a guide element 142.
  • Fig. 11a shows a holding part 144, the holding part 136 according to Fig. 10a corresponds, wherein a first flag 146 and a second flag 148 are integrally formed from a single end-folded flag material.
  • Fig. 11b shows the holding part 144.
  • an insert 150 is provided between the first lug 146 and the second lug 148.
  • the insert 150 is in the form of a retaining cord.
  • the invention relates to a flat protective device.
  • the two-dimensional protective device has a surface web which can be wound onto a winding shaft in the winding direction. At at least one, in particular at both, extending in the winding direction outer edges of the surface web holding parts are arranged, which are spaced in the winding direction so that the accumulating when rolling the surface sheet in the winding shaft holding parts forms a first series of substantially seamless adjacent holding parts, said project the holding parts in the longitudinal direction of the winding shaft at least in sections over the outer edge of the surface sheet.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Operating, Guiding And Securing Of Roll- Type Closing Members (AREA)
  • Storage Of Web-Like Or Filamentary Materials (AREA)

Claims (8)

  1. Dispositif de protection plat (85), comprenant un arbre d'enroulement (86) et une bande plate (74, 88), qui peut être enroulée sur l'arbre d'enroulement (86) dans la direction d'enroulement, plusieurs éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) espacés dans la direction d'enroulement étant disposés ou formés sur un bord extérieur (80, 84, 92) de la bande plate (74, 88), lesdits éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) étant guidés, au moins par sections, dans un rail de guidage du dispositif de protection (85), les longueurs (1) des éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) et la distance (A) entre les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) dans la direction d'enroulement étant choisies de manière que les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) d'une première section de la bande plate enroulée sur l'arbre d'enroulement (86) forment une première file (94) d'éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) se rejoignant essentiellement sans intervalle, et que les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) font saillie, au moins par sections, par rapport au bord extérieur de la bande plate dans la direction longitudinale de l'arbre d'enroulement,
    caractérisé en ce que
    la distance (A) entre les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) et l'épaisseur des éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) perpendiculaires au plan de la bande plate (74, 88) sont choisies de manière que les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) chacun sont disposés se superposant de manière radiale quand plusieurs files (94) d'éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) superposées sont formées.
  2. Dispositif de protection plat selon la revendication 1,
    caractérisé en ce que
    les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) ont la même longueur (1) dans la direction d'enroulement.
  3. Dispositif de protection plat selon l'une quelconque des revendications précédentes,
    caractérisé en ce que
    le dispositif de protection (85) est formé de manière qu'un nombre t d'éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) est enroulé à chaque rotation de l'arbre d'enroulement (86) dès que le premier élément de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) a été enroulé, les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) suivants rejoignant les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144) déjà enroulés dans la direction d'enroulement ou contre la direction d'enroulement essentiellement sans intervalle, au moins jusqu'à une première file (94) ait été formée.
  4. Dispositif de protection plat selon l'une quelconque des revendications précédentes,
    caractérisé en ce qu'
    au moins un élément de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144), en particulier tous les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144), comprend un premier drapeau (14, 114, 116, 118, 120, 124, 130, 138, 146) monté au côté supérieur de la bande plate (74, 88).
  5. Dispositif de protection plat selon la revendication 4,
    caractérisé en ce qu'
    au moins un élément de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144), en particulier tous les éléments de retenue (10, 24, 36, 76, 78, 96, 98, 100, 102, 122, 128, 136, 144), comprend un deuxième drapeau (16, 132, 140, 148) monté au côté inférieur de la bande plate (74, 88) opposé au côté supérieur.
  6. Dispositif de protection plat selon la revendication 4 ou 5,
    caractérisé en ce que
    le premier drapeau (14, 114, 116, 118, 120, 124, 130, 138, 146) et/ou le deuxième drapeau (16, 132, 140, 148) est lié à la bande plate (74, 88) au moyen d'une couche adhésive thermoplastique (72).
  7. Dispositif de protection plat selon la revendication 5 ou revendication 6 en combinaison avec la revendication 6,
    caractérisé en ce que
    le premier drapeau (14, 114, 116, 118, 120, 124, 130, 138, 146) et le deuxième drapeau (16, 132, 140, 148) sont faits d'un textile de drapeau (18, 112) d'une seule pièce qui est plié dans la zone d'un élément de guidage (12, 26, 38, 104, 106, 108, 110, 126, 134, 142).
  8. Dispositif de protection plat selon la revendication 7,
    caractérisé en ce que
    le textile de drapeau (18, 122) comprend un cordon de retenue (70) s'étendant dans la direction d'enroulement dans la zone ou il est plié.
EP15177424.7A 2014-07-23 2015-07-20 Dispositif de protection plat doté d'éléments de retenue séparés Active EP2977542B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014110401.3A DE102014110401A1 (de) 2014-07-23 2014-07-23 Flächige Schutzeinrichtung mit beabstandeten Halteteilen

Publications (2)

Publication Number Publication Date
EP2977542A1 EP2977542A1 (fr) 2016-01-27
EP2977542B1 true EP2977542B1 (fr) 2017-06-28

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Application Number Title Priority Date Filing Date
EP15177424.7A Active EP2977542B1 (fr) 2014-07-23 2015-07-20 Dispositif de protection plat doté d'éléments de retenue séparés

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EP (1) EP2977542B1 (fr)
DE (1) DE102014110401A1 (fr)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61179989A (ja) 1985-02-01 1986-08-12 林口 精三 建物・機器類の開口部遮断装置
GB8624735D0 (en) * 1986-10-15 1986-11-19 Clark Door Ltd Roller door assemblies
US20070256799A1 (en) * 2006-05-02 2007-11-08 Macauto Industrial Co., Ltd. Sun screen device
DE102008006157A1 (de) 2008-01-26 2008-10-23 Daimler Ag Windschottanordnung
EP2757224B1 (fr) 2011-06-24 2017-02-15 Hayashiguchi Mfg Co., Ltd. Dispositif d'écran à rouleaux

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EP2977542A1 (fr) 2016-01-27
DE102014110401A1 (de) 2016-01-28

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