EP3184890B1 - Dispositif d'éclairage avec un luminaire longitudinal et un élément de protection en matériau plastique - Google Patents

Dispositif d'éclairage avec un luminaire longitudinal et un élément de protection en matériau plastique Download PDF

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Publication number
EP3184890B1
EP3184890B1 EP16201847.7A EP16201847A EP3184890B1 EP 3184890 B1 EP3184890 B1 EP 3184890B1 EP 16201847 A EP16201847 A EP 16201847A EP 3184890 B1 EP3184890 B1 EP 3184890B1
Authority
EP
European Patent Office
Prior art keywords
lamp
wall
cavity
illumination device
protection element
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
EP16201847.7A
Other languages
German (de)
English (en)
Other versions
EP3184890A1 (fr
Inventor
Jörg Goldstein
Steven Schmidt
Stefan Eibl
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.)
Rehau Automotive SE and Co KG
Original Assignee
Rehau AG 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.)
Filing date
Publication date
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Publication of EP3184890A1 publication Critical patent/EP3184890A1/fr
Application granted granted Critical
Publication of EP3184890B1 publication Critical patent/EP3184890B1/fr
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/001Arrangement of electric circuit elements in or on lighting devices the elements being electrical wires or cables
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V3/00Globes; Bowls; Cover glasses
    • F21V3/04Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings
    • F21V3/06Globes; Bowls; Cover glasses characterised by materials, surface treatments or coatings characterised by the material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V31/00Gas-tight or water-tight arrangements
    • F21V31/005Sealing arrangements therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2103/00Elongate light sources, e.g. fluorescent tubes
    • F21Y2103/10Elongate light sources, e.g. fluorescent tubes comprising a linear array of point-like light-generating elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Definitions

  • the present invention relates to a lighting device with an elongated lamp and a protective element made of a plastic material.
  • Known lighting devices with an elongated lamp which has at least one light-emitting diode or preferably a plurality of light-emitting diodes, mostly serve to replace the fluorescent tube which has been known for a long time.
  • LED linear lights are for example from the DE 20 2012 101 571 U1 , of the DE 10 2013 213 767 A1 , of the DE 20 2014 100 258 U1 , of the DE 10 2013 207 612 A1 , of the DE 10 2010 014 520 A1 , of the WO 2015/091820 A1 , DE 299 07 199 U1 or the DE 10 2012 014 164 A1 known.
  • the lighting device according to the invention is characterized in particular by the fact that the lighting device has a protective element made of a plastic material, in the elongated cavity of which at least a portion of the lamp is received or in the elongated cavity of which the lamp is entirely received. Due to the wall of the protective element, the extent of contact of the lamp with corrosive media in the vicinity of the lighting device or in the vicinity of the protective element can be significantly reduced, so that the lighting device is permanently and without damaging influence with liquid and / or gaseous media that have a corrosive effect could damage the electrics / electronics of the luminaire, can be brought into contact.
  • the lighting device according to the invention can therefore be used in particular in mast farms with ammoniacal gases which have a highly corrosive effect, and in fact without the ammoniacal gases having a damaging influence on the lamp accommodated in the protective element or on the section or longitudinal section of the protective element Have light. It can also be used in damp rooms, cold stores, in the area of industrial plants (chemical industry, mining and steel industry).
  • the protective element is advantageously an effective barrier for protection against chemicals, gases, vapors, liquids and moisture.
  • the protective element can consist of a plastic material with flame-retardant properties or high fire resistance, so that effective protection can be provided in the event of a fire.
  • this can prevent parts of the luminaire from dripping from the ceiling as enamel drops (eg made of PC / PMMA), which would also be disadvantageous for safety reasons.
  • it may also be useful for only a section or a longitudinal section of the lamp to be accommodated in the cavity.
  • This section or longitudinal section can be a section or longitudinal section of the lamp which is to be protected against the effects of corrosion, that is to say in particular a section of the lamp with electronic components, while a section or longitudinal section of the lamp which is not accommodated is more resistant to the effects of corrosion Section of the lamp can be.
  • the wall is a closed wall made of a plastic material, this wall is a very effective barrier between the luminaire and the environment, and thus protects against the penetration of media which reduce the functionality and / or service life of the luminaire.
  • At least one area of the wall is designed to be translucent with an inner surface facing the light-emitting diode light exit surface, or it is understood that at least one area of the wall which has an inner surface facing the light-emitting light exit surface is designed to be translucent or from a translucent plastic material, so that light generated by the lamp or the light-emitting diode or diodes can be radiated into the surroundings of the lighting device.
  • the wall of the protective element or the protective element consists entirely of a translucent plastic material. Due to the limitation to a single type of material, such a protective element can be produced particularly advantageously in a simple and practical manner by extrusion, extrusion blow molding and / or co-extrusion or injection molding.
  • the protective element can particularly preferably be an injection molded or extruded protective element.
  • the protective element can particularly preferably be an injection molded or extruded protective element.
  • the protective element can be formed in one piece in a particularly advantageous manner, particularly in order to achieve simple manufacture by injection molding or extrusion.
  • the protective element can be made in one piece and transparent.
  • the plastic material from which the protective element is made can comprise homo- and / or copolymers and / or mixtures thereof. This plastic material can preferably also be uncrosslinked, partially crosslinked or fully crosslinked.
  • the plastic material from which the protective element is made can preferably be selected from fluoropolymers, fluorine-containing polyurethane, silicones, polyolefin homo- and / or polyolefin copolymers, cyclic polyolefin copolymers (COC, COP), poly-alpha-olefin copolymers, polyolefin elastomers, ionomers, polyesters, Polyester copolymers, polyvinyl chloride, polyamide, polystyrene, polystyrene copolymer, methyl methacrylate-acrylonitrile-butadiene-styrene copolymer, acrylic ester-styrene-acrylonitrile copolymer, styrene-acrylonitrile cop
  • thermoplastic elastomers based on olefins TPV (i.e. cross-linked thermoplastic elastomers based on olefins)
  • TPU i.e. thermoplastic elastomers based on urethane
  • TPE-E i.e. thermoplastic polyester elastomers
  • TPE-S i.e. styrene block copolymers
  • TPE-A i.e. thermoplastic copolyamides, e.g. PEBAX
  • fillers fire and Flame retardant additives, fillers, pigmentation
  • the translucent plastic material from which the protective element or the wall of the protective element consists comprises partially or entirely homo- and / or copolymers and / or mixtures thereof.
  • the translucent plastic material can be uncrosslinked, partially crosslinked or fully crosslinked.
  • the translucent plastic material can be selected from fluoropolymers, silicones, polyolefins, polystyrenes, polyamides, acrylate copolymers, polyacetate copolymers, polyphenylene sulfone, polyether sulfone, polyethylene terephthalate, polybutylene terephthalate, polymethyl (meth) acrylates, poly (meth) acrylates and polycarbonates, polycarbonate, polycarbonate, polyurethane (Fire and flame retardant additives) included.
  • the lighting device comprises the elongated lamp and the protective element, the lamp having at least one light-emitting diode, the protective element having an elongated cavity, at least a portion of which Luminaire is received in the cavity, wherein the protective element has the wall surrounding the cavity, and wherein the wall is a closed wall.
  • the wall surrounding the cavity consists of the translucent material or consists entirely or if the protective element consists of a translucent plastic material or consists entirely of, the light generated by the luminaire can advantageously be used without significant deflections to the outside or into the surroundings of the Radiate or transmit light device.
  • the lamp has at least one light-emitting diode, the light preferably having a plurality of at least five or at least ten or at least twenty light-emitting diodes.
  • the light-emitting diodes of the lamp can be arranged, for example, in rows, or can be arranged in a single row or in multiple rows.
  • the lighting device is preferably between 20 cm and 10 m long and preferably has between three and thirty light-emitting diodes over a longitudinal section of 10 cm, depending on the design and the requirements regarding luminous flux and light distribution.
  • a wall is to be understood in each case that does not have a single opening or a single opening or a single passage that can be found in FIGS extends from the wall bounded or limited cavity.
  • a closed or dense wall With a closed or dense wall, the advantageous protection against liquid and / or gaseous media which have a corrosive effect and / or could damage the electronics of the lamp or lighting device can be realized.
  • a closed wall or a closed wall of the protective element does not mean a wall that necessarily forms a closed cavity or that necessarily forms a closed cavity of the protective element.
  • the closed wall only delimits or delimits a cavity which, of course, can also have at least one open end via which the cavity is connected to the outside environment or via which the cavity is accessible from outside the cavity or from outside the protective element.
  • translucency or a “translucent design”
  • this translucency or translucent design at least for a part of the spectrum of visible light or for the whole Spectrum of visible light is available.
  • the protective element can advantageously be in the form of a sleeve, a tube or tubular and / or tubular or preferably have a tubular and / or tubular section.
  • the protective element can particularly preferably be designed in the form of a straight tube.
  • a tubular protective element with a circumferential wall that delimits or delimits the hollow space of the tubular protective element can be produced in a very simple and practical way by extrusion or injection molding.
  • the protective element can particularly preferably also consist of a shrink tube material shrunk onto the lamp or consist entirely of it, or be designed in the form of a shrink tube shrunk onto the lamp, as a result of which advantageously a very firm, tight connection between the protective element and the lamp can be realized.
  • the protective element can be latched with a holding element.
  • the holding element can in particular be a holding element which can be fastened to a building wall - in particular also to a ceiling. By simply latching the protective element with the holding element, the entire lighting device can be held on the building wall via the holding element or connected to the building wall.
  • the holding element can be designed in a manner known to the person skilled in the art to be fastened to the building wall.
  • the holding element can e.g. screwable to the building wall or e.g. be glued to the building wall.
  • the protective element or the wall of the protective element comprises a translucent element and a base element or consists of a translucent element and a base element, the translucent element being detachably connected to the base element, and the base element being detachably connectable to the holding element.
  • the luminaire can be accommodated in the protective element or in the cavity of the protective element in a simple and practical manner or preferably be arranged in a media-tight manner.
  • the provided releasable connectivity of the base element and the translucent element also simplifies the effort for realizing the latching connection with the holding element, since first only the base element has to be latched to the holding element and then the translucent element can be connected to the base element.
  • the releasable connection of the translucent element to the base element can be realized in any way known to the person skilled in the art.
  • the releasable connection can comprise at least one releasable snap connection or at least one releasable snap connection or at least one releasable clip connection or at least one releasable positive connection or at least one releasable screw connection.
  • the at least one area of the wall of the protective element that faces the light-emitting diode light exit surface Has inner surface is a region of the translucent element or that this area is provided on the translucent element.
  • the luminaire in the cavity is at least partially cohesively connected to the inner surface of the wall.
  • a stable and preferably media-tight connection between the lamp and the protective element can be achieved by means of a material connection or a material flat connection of the lamp to the inner surface of the wall of the protective element.
  • the light-emitting diode light exit surface lies flat at least in regions on the inner surface of the wall of the protective element and is integrally connected to the inner surface of the wall.
  • This planar contact of the light emitting diode light surface on the inner surface of the wall of the protective element enables a very low-reflection and low-loss light transmission of the light generated by the light emitting diode or diodes into the protective element, from which the light, after enforcing the protective element, enters the surroundings of the lighting device occurs.
  • the integral connection or the flat integral connection of the light-emitting diode exit surface of the light-guiding body with the inner surface of the wall enables a very firm connection to be achieved, along with a substantial improvement in the stability or strength of the entire lighting device.
  • the light-emitting diode light exit surface can be provided in a particularly practical manner on a light-guiding body of the luminaire made of a translucent material.
  • At least one seal or at least one liquid seal is clamped between the light-emitting diode light exit surface and the wall of the protective element or between the light and the wall of the protective element.
  • the light-emitting diode or the light-emitting diodes
  • the liquid seal is clamped in the vicinity of one end of the lighting device between the light emitting diode surface and the wall of the protective element held or clamped in the vicinity of one end of the lighting device between the lamp and the wall of the protective element.
  • the liquid seal is preferably flush with the lamp.
  • the cavity of the protective element has two open ends, each end being closed at least in regions by a closure cap made of a plastic material.
  • a closure cap made of a plastic material.
  • each end of the cavity is completely or completely closed by the respective sealing cap, so that the lamp is arranged in a closed cavity, whereby contact of the lamp with corrosive media in the vicinity of the lighting device is advantageously excluded or almost excluded can.
  • At least one of the closure caps can be made translucent at least in some areas or entirely, or at least partially or entirely made of a translucent plastic material. Depending on the application, a translucent design of at least one of the closure caps may be desired in order to allow light generated by the lamp to pass continuously through the closure cap.
  • Each of the closure caps can preferably be integrally connected, in particular welded or glued, to close the ends with the protective element or also with the lamp received or completely received in the cavity.
  • the lighting device has at least one electrical cable or line, which is set up for the power supply of the lamp and / or for the transmission of control signals to the lamp, the lamp being completely in the cavity of the protective element is received, the electrical cable being connected to a plug which is attached to the side of the sealing cap facing the cavity, the cable extending continuously from the plug through the sealing cap into the surroundings of the protective element or to the outside of the cavity extends, wherein the connector for transmitting the supply current and / or the control signals to the lamp is connected to a mating connector provided on the lamp.
  • a lighting device designed in accordance with this practical embodiment can be assembled in a simple and practical manner.
  • the cap with the plug is to be connected to the lamp or the protective element in order to close or at least partially close the respective end of the cavity, the plug also being able to be connected to the mating plug when connecting or closing.
  • the connector and the mating connector can be inserted into each other.
  • the connection to the electrical cable for the power supply and / or control signal supply of the lamp can also be accomplished by a simple connection process for connecting the closure cap to the end of the protective element or to the lamp.
  • a seal or a liquid seal is particularly preferably provided to prevent the plug from being exposed to liquid or to seal the plug against the ingress of liquid, which is held clamped between the closure cap and the section of the cable accommodated in the closure cap and extends all around the section .
  • a strain relief is provided for the electrical cable in order to prevent the electrical cable from undesirably transmitting it to other components when subjected to tensile stress.
  • the use of the above liquid seal can also be dispensed with, namely in that the portion of the cable accommodated in the sealing cap has a circumferential outer surface which has at least one material connection to the sealing cap to seal the plug against the ingress of liquid.
  • the contact of the plug with liquid or moisture from the outside environment can advantageously be excluded or almost eliminated.
  • the protective element consists of a first part, a second part and a material web, the material web extending along the entire length of the cavity in the longitudinal direction of the cavity or protective element (or parallel to the longitudinal axis of the cavity or Protective element), the first and second parts being connected to one another by the material web and pivotable about the material web, and the first and second parts for forming the wall surrounding the cavity can be connected to one another by pivoting about the material web (or can also be connected to each other in a latching manner) or connected to one another by a releasable latching connection or releasably connected to one another, which can be produced or formed by pivoting the first part relative to the second part or vice versa.
  • first and second parts which can be latched together are tightly connected to one another after the latching connection has been established by gluing and / or by welding.
  • the light-emitting device can be assembled in a very simple and practical manner by providing the protective element which is preferably formed in one piece in the above preferred embodiment, because the wall surrounding the cavity can be realized in a simple and practical manner by the pivoting of the two parts.
  • the lamp can be arranged, for example, on the first part and then the second part can be snap-connected to the first part to form the cavity and to delimit or delimit the lamp with the cavity or the protective element.
  • the thickness or material thickness of the material web is a maximum of 50 percent of the thickness or material thickness of the first and second parts.
  • the protective element is in this further preferred embodiment is preferably formed in one piece, the protective element being particularly preferably an extruded or injection-molded protective element in this further preferred embodiment.
  • the luminaire can preferably also be received in a form-fitting manner in the protective element
  • the lighting device can have an elasticity or bendability, in which or with which the lighting device can be wound onto a drum or a reel with a diameter of at least 50 cm. Due to the flexible or bendable design of the lighting device, it can be arranged in any spatial direction during installation in a building.
  • the rectilinear lighting device 10 comprises an elongated and rectilinearly extending lamp 12 and an elongated and rectilinearly extending protective element 14 made of a plastic material.
  • the rectilinearly extending lamp 10 has a plurality of light-emitting diodes 16 arranged in succession in rows, of which the sectional illustration shows Fig. 1 only one is illustrated.
  • the protective element 14 has an elongated cavity 20.
  • the lighting device 10 also has an in Fig. 1 Unillustrated electrical cable, which is set up for the power supply of the lamp 12 and for transmitting control signals to the lamp 12, namely from an unillustrated external power source and control signal source.
  • the lamp 12 is completely or completely received in the cavity 20 of the protective element 14 4.
  • the electrical cable is connected to a plug 13 of the lamp 12 (not illustrated) and is led out of the cavity 20 (not illustrated).
  • the protective element 14 has a wall 22 surrounding the cavity 20.
  • the wall 22 is a closed wall 22 made of a plastic material. Because the wall 22 is a closed wall 22 made of a plastic material, this wall 22 is a very effective barrier between the lamp 12 and a corrosive medium in the vicinity of the lighting device 10, such as an ammoniacal gas.
  • the lamp 12 comprises a base body 15, which consists of a polymer material or plastic material and a metal reinforcement 25.
  • the light emitting diodes 16 are attached to a carrier element 21 which is enclosed in the base body 15.
  • the receptacle 27 of electronics (not illustrated) and the plug 13 are also provided on the carrier element 21.
  • the light fixture 12 also has a light guide body 32 made of a translucent plastic material and a light-emitting diode light exit surface 24, the light-emitting diode light exit surface 24 being provided on the light guide body 32.
  • the region 23 of the wall 22 of the protective element 14, which has an inner surface 26 facing the light-emitting diode light exit surface 24 or an inner surface region 26 facing the light-emitting diode light exit surface 24, is designed to be translucent, so that the light 12 or the light-emitting diodes 16 produces something Light can be emitted into the surroundings of the lighting device 10 (see also schematic light arrows).
  • the protective element 14 comprises a translucent element 62 and a base element 58, the translucent element 62 or the wall of the translucent element 62 - as well as the light guide body 32 molded onto the base body 15 - being designed in cross section in the form of a segment of a circle.
  • the light guide body can also be, for example, rectangular, polyhedral or elliptical or concave, or in a mixed form thereof, at least in some areas.
  • the light-emitting diode light exit surface 24 is in the embodiment according to Fig. 1 spaced from the inner surface 30 of the wall 22, but in an alternative embodiment can also bear against the inner surface 30 of the wall 22 of the protective element 14 or lie flat and be integrally connected to the inner surface 30 of the wall 22.
  • the base body 15 is received in a form-fitting manner in the protective element 14.
  • the base body 15 has two longitudinal elements 17 which extend in the longitudinal direction of the lighting device 10 and which are each inserted into the longitudinal element receptacles 19 of the base element 58.
  • a liquid seal (not illustrated) can also be held in a clamping manner between the light-emitting diode light exit surface 24 and the wall 22 of the protective element 14.
  • FIG. 2 An exemplary further possible design of a lamp 12 of an inventive Illuminating device shows Fig. 2 .
  • the lamp 12 after Fig. 2 differs essentially from the lamp 12 Fig. 1 in that the base body 15, which likewise has metal reinforcement 25, has an arcuate wall region 29.
  • a contacting element 31 is provided for establishing an electrically conductive connection to the electrical cable.
  • the light guide body 32 of the lamp 12 after Fig. 2 not integrally formed on the base body 15 but snapped or clipped into two latching receptacles 56 extending in the longitudinal direction of the lamp 12.
  • This releasable snap-in connection or clip connection advantageously enables the luminaire 12 to be assembled in a simple and practical manner.
  • the lighting device 10 after Fig. 3A differs from the lighting device 10 Fig. 1 inter alia in that each end 36 of the cavity of the extruded protective element 14 is closed by a closure cap 38, the Fig. 3 only one of the two caps 38 shows.
  • the closure caps 38 are used to close the ends 36 of the cavity 20 with the lamp 12 completely or completely accommodated in the cavity 20 (in Figure 3A not illustrated, cf. Figure 3B , illustrated there only very schematically) by welding and / or gluing and / or 3D printing processes.
  • the closure caps 38 could also be integrally connected to the protective element 14 on the end face.
  • the closure caps 38 can alternatively also be glued to the lamp 12 and / or be connected by a 3D printing process and / or integrally.
  • the lighting device 10 after Figure 3A comprises an electrical cable 40 which is set up to supply power to the lamp 12 and to transmit control signals to the lamp 12 from an external power source and control signal source (not illustrated).
  • the electrical cable 40 is connected to a plug 42, which is attached to the side of the closure cap 38 facing the cavity 20 or the lamp 12, through which the cable 40 extends continuously from the plug 42 into the surroundings of the protective element 14 or to extends outside the cavity 20.
  • the plug 42 is connected to a mating connector 44 provided on the light 12 for transmitting the supply current and / or the control signals to the light 12.
  • the section 46 of the cable 40 accommodated in the closure cap 38 has a circumferential outer surface 48 which penetrates to seal the plug 42 Liquid (and therefore also for sealing the mating connector 44 and the lamp 12 against the ingress of liquid) has a cohesive connection to the closure cap 38 which extends all around the outer surface 48.
  • the section 46 of the cable 40 is thus embedded in the closure cap 38 to form a material bond with the closure cap 38.
  • a liquid seal 45 could also be provided to prevent the plug 42 from being exposed to liquid or to seal the plug 42 against the ingress of liquid, which could be clamped between the closure cap 38 and the section 46 of the cable 40 accommodated in the closure cap 38 and rotating all around could extend around section 46.
  • the protective element 14 of the lighting device 10 after Figure 3A is - like the protective element 14 of the lighting device 10 after Fig. 1 - Can be latched with a holding element 28, the Figure 3A illustrates the locked state.
  • the holding element 28 can be fastened to a building wall by a plurality of screw connections or alternatively by at least one adhesive connection or alternatively by at least one latching connection or alternatively by at least one cable suspension (not illustrated).
  • the protective element 14 also comprises a translucent element 62 and a base element 58 here.
  • the base element 58 comprises two latching elements 60 extending in the longitudinal direction of the lighting device 10, each in latching element receptacles 63 of the holding element 28 by moving base element 58 and holding element 28 towards one another can be snapped into place.
  • the base element 58 and the translucent element 62 are detachably connected to one another by a snap connection or clip connection, in which the translucent element 62 is snapped or clipped into two snap receptacles 64 of the base element 58 extending in the longitudinal direction of the lamp 12.
  • This releasable latching connection or clip connection advantageously enables the lighting device 10 to be assembled in a simple and practical manner.
  • the Fig. 4 shows a schematic sectional illustration of a protective element of a further lighting device according to the invention, only the protective element 14 being shown here for simplicity.
  • the one-piece protective element 14 consists of a first part 50, a second part 52 and a material web 54, the material web 54 - which is formed with a significantly smaller material thickness than the first part 50 and the second part 52 - extending in the longitudinal direction of the protective element 14 extends.
  • the first and the second part 50, 52 are connected to one another by the material web 54 and can be pivoted relative to one another about the material web 54 (cf. also double arrow).
  • the first and second parts 50, 52 can be latched together to form the wall 22 surrounding the cavity 20 by pivoting around the material web 54.
  • the Fig. 4 illustrates the connected state with a locking connection 66 (only illustrated very schematically)

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Claims (10)

  1. Dispositif d'éclairage (10) avec une lampe (12) allongée et un élément de protection (14) composé d'un matériau plastique,
    - dans lequel la lampe (12) présente au moins une diode électroluminescente (16),
    - dans lequel l'élément de protection (14) présente une cavité (20) allongée,
    - dans lequel au moins une section de la lampe (12) est logée dans la cavité (20),
    - dans lequel l'élément de protection (14) présente une paroi (22) entourant la cavité (20),
    - dans lequel la paroi (22) est une paroi (22) fermée,
    - la lampe (12) présente en outre un corps de guidage de lumière (32) composé d'un matériau plastique laissant passer la lumière et une surface de sortie de lumière de diode électroluminescente (24), dans lequel la surface de sortie de lumière de diode électroluminescente (24) est prévue au niveau du corps de guidage de lumière (32),
    caractérisé en ce que
    au moins une zone (23) de la paroi (22) est réalisée de manière à laisser passer la lumière avec une surface intérieure (26) tournée vers la surface de sortie de lumière de diode électroluminescente (24),
    dans lequel l'élément de protection (14) peut être relié par enclenchement avec un élément de maintien (28),
    dans lequel l'élément de protection (14) comprend un élément laissant passer la lumière (62) et un élément de base (58), dans lequel l'élément laissant passer la lumière (62) est relié de manière amovible à l'élément de base (58), et dans lequel l'élément de base (58) peut être relié par enclenchement à l'élément de maintien (28).
  2. Dispositif d'éclairage (10) selon la revendication 1, caractérisé en ce que la lampe (12) est reliée au moins par endroits par liaison de matière à la surface intérieure (30) de la paroi (22) dans la cavité (20).
  3. Dispositif d'éclairage (10) selon la revendication 2, caractérisé en ce que la surface de sortie de lumière de diode électroluminescente (24) repose au moins par endroits à plat au niveau de la surface intérieure (30) de la paroi (22) de l'élément de protection (14) et est reliée par liaison de matière à la surface intérieure (30) de la paroi (22).
  4. Dispositif d'éclairage (10) selon la revendication 1, caractérisé en ce qu'au moins un joint d'étanchéité aux liquides est maintenu par serrage entre la surface de sortie de lumière de diode électroluminescente (24) et la paroi (22) de l'élément de protection (14).
  5. Dispositif d'éclairage (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que la cavité (20) présente deux extrémités (36) ouvertes, dans lequel chaque extrémité (36) est fermée au moins par endroits par un capot de fermeture (38) composé d'un matériau plastique.
  6. Dispositif d'éclairage (10) selon la revendication 5, caractérisé en ce que le dispositif d'éclairage (12) présente au moins un câble électrique (40), qui est mis au point pour l'alimentation en courant de la lampe (12) et/ou pour la transmission de signaux de commande à la lampe (12),
    - dans lequel la lampe (12) est logée en totalité dans la cavité (20) de l'élément de protection (14),
    - dans lequel le câble électrique (40) est raccordé à une fiche (42), qui est installée au niveau du côté, tourné vers la cavité (20), d'un des capots de fermeture (38),
    - dans lequel le câble (40) s'étend depuis la fiche (42) en traversant par le capuchon de fermeture (38) dans l'environnement de l'élément de protection (14),
    - dans lequel la fiche (42) est reliée à une contre-fiche (44) prévue au niveau de la lampe (12) pour la transmission du courant d'alimentation et/ou des signaux de commande à la lampe (12).
  7. Dispositif d'éclairage (10) selon la revendication 6, caractérisé en ce qu'est prévu un joint d'étanchéité aux liquides (45) servant à éviter l'action exercée par un liquide sur la fiche (42), qui est maintenu par serrage entre le capuchon de fermeture (38) et la section (46), logée dans le capuchon de fermeture (38), du câble (40) et s'étend en périphérie autour de la section (46).
  8. Dispositif d'éclairage (10) selon la revendication 6, caractérisé en ce que la section (46), logée dans le capuchon de fermeture (38), du câble (40) présente une surface extérieure (48) périphérique, qui présente au moins une liaison par liaison de matière avec le capuchon de fermeture (38) pour étanchéifier la fiche (42) par rapport au liquide entrant.
  9. Dispositif d'éclairage (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément de protection (14) est constitué d'une première partie (50), d'une deuxième partie (52) et d'une entretoise de matériau (54), dans lequel l'entretoise de matériau (54) s'étend dans le sens longitudinal de l'élément de protection (14) le long de l'ensemble de la longueur de la cavité (20), dans lequel la première et la deuxième partie (52, 54) sont reliées l'une à l'autre par l'entretoise de matériau (54) et peuvent pivoter l'une à l'encontre de l'autre autour de l'entretoise de matériau (54), et dans lequel la première et la deuxième partie (52, 54) peuvent être reliées l'une à l'autre par enclenchement par pivotement autour de l'entretoise de matériau (54) pour réaliser la paroi (22) délimitant la cavité (20).
  10. Dispositif d'éclairage (10) selon l'une quelconque des revendications précédentes, caractérisé en ce que la lampe (12) est logée par complémentarité de forme dans l'élément de protection (14).
EP16201847.7A 2015-12-22 2016-12-02 Dispositif d'éclairage avec un luminaire longitudinal et un élément de protection en matériau plastique Active EP3184890B1 (fr)

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DE102015122510.7A DE102015122510A1 (de) 2015-12-22 2015-12-22 Leuchtvorrichtung mit einer länglichen Leuchte und einem Schutzelement aus einem Kunststoffmaterial

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