EP3447227A1 - Dispositif de porte, en particulier dispositif porte pour la salle blanche, comprenant un élément d'éclairage - Google Patents

Dispositif de porte, en particulier dispositif porte pour la salle blanche, comprenant un élément d'éclairage Download PDF

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Publication number
EP3447227A1
EP3447227A1 EP18189435.3A EP18189435A EP3447227A1 EP 3447227 A1 EP3447227 A1 EP 3447227A1 EP 18189435 A EP18189435 A EP 18189435A EP 3447227 A1 EP3447227 A1 EP 3447227A1
Authority
EP
European Patent Office
Prior art keywords
door
door device
unit
door leaf
illumination
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP18189435.3A
Other languages
German (de)
English (en)
Other versions
EP3447227B1 (fr
Inventor
Günther Schilling
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.)
Schilling Engineering GmbH
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Schilling Engineering GmbH
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Filing date
Publication date
Application filed by Schilling Engineering GmbH filed Critical Schilling Engineering GmbH
Publication of EP3447227A1 publication Critical patent/EP3447227A1/fr
Application granted granted Critical
Publication of EP3447227B1 publication Critical patent/EP3447227B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/04Frames for doors, windows, or the like to be fixed in openings
    • E06B1/52Frames specially adapted for doors
    • E06B1/528Frames specially adapted for doors with ducts for cables or pipes
    • 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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/02Wings made completely of glass
    • 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
    • E06B5/00Doors, windows, or like closures for special purposes; Border constructions therefor
    • E06B5/10Doors, windows, or like closures for special purposes; Border constructions therefor for protection against air-raid or other war-like action; for other protective purposes
    • 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
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • F21V33/006General building constructions or finishing work for buildings, e.g. roofs, gutters, stairs or floors; Garden equipment; Sunshades or parasols

Definitions

  • the invention relates to a door device, in particular a clean room door device.
  • the object of the invention is in particular to provide a generic door device with improved properties in terms of an advantageously uniform and particularly advantageous variable lighting of the door leaf.
  • the object is achieved by the features of claim 1, while advantageous embodiments and modifications of the invention can be taken from the dependent claims.
  • the invention is based on a door device, in particular a clean room door device, with at least one frame unit, with at least one at least partially translucent door leaf and with at least one illumination unit integrated at least partially in the frame unit, which has at least one light source and at least partial illumination, in particular Illumination, the door panel is provided, wherein the lighting unit is provided to initiate light of the lamp at least substantially parallel to a main extension plane of the door leaf in the door leaf.
  • the lighting unit is provided to initiate at least a substantial part of a light of the lighting means at least substantially parallel to a main extension plane of the door leaf in the door leaf.
  • the lighting unit is provided to initiate at least 20%, preferably at least 40%, and more preferably at least 60%, of a light of the luminous means into the door leaf at least substantially parallel to a main extension plane of the door leaf.
  • a "clean room door device” is to be understood as meaning, in particular, a door device, preferably a door, for a clean room device, in particular for a clean room system.
  • a clean-room door device which appear sensible to a person skilled in the art are conceivable, for example as a clean-room access door or a clean-room lock-door.
  • a "cleanroom device” in this context is to be understood in particular to mean a device which forms at least part of a cleanroom system. Preferably, this is to be understood in particular as meaning a device which comprises at least one space of a clean room system.
  • the clean room device comprises only components for a room of a clean room system.
  • a "frame unit” is to be understood as meaning, in particular, a unit which forms at least one frame, in particular a frame, of the door device.
  • the Zargentician forms in particular a door opening of the door device limiting frame for the door leaf.
  • the Zargentician is provided at least in a closed state of the door device for receiving the door leaf.
  • An "at least partially translucent door leaf” is to be understood in this context in particular as a door leaf which is translucent in at least one subarea.
  • this is to be understood in particular as meaning a door leaf which in at least one subregion in particular transmits at least more than 10%, preferably more than 50% and particularly preferably more than 80% of a spectral range of a visible light.
  • the spectral range of visible light has a wavelength ⁇ of about 350 nm to 800 nm.
  • the door is at least partially translucent, ie in particular translucent, but not transparent, so in particular not image or view permeable.
  • a "lighting unit” should be understood to mean, in particular, a unit which is provided for at least partial illumination, in particular illumination, of an object, in particular of the door leaf.
  • the lighting unit is in particular provided to at least partially illuminate, in particular illuminate, the object, in particular the door leaf, in order to display information, in particular a status.
  • the lighting unit is provided to illuminate the door at least partially from the inside out.
  • at least substantially parallel is to be understood in this context, in particular, that a deviation from parallel in particular 0 °, less than 25 °, preferably less than 10 ° and particularly preferably less than 5 °.
  • a "main extension plane" of a structural unit is to be understood in particular as meaning a plane which is parallel to a largest side surface of a smallest imaginary cuboid which just completely surrounds the structural unit, and in particular runs through the center of the cuboid.
  • “provided” is intended to be understood in particular specially programmed, designed and / or equipped.
  • the fact that an object is intended for a specific function should in particular mean that the object fulfills and / or executes this specific function in at least one application and / or operating state.
  • the inventive design of the door device can be provided in particular an advantageous uniform and particularly advantageous variable lighting of the door leaf. Furthermore, in particular a structurally simple illumination of the door leaf can be achieved.
  • the lighting unit has at least one linear optic which is provided to introduce light from the luminous means into the door leaf, at least substantially parallel to the main extension plane of the door leaf.
  • the linear optics is intended to initiate at least a substantial part of a light of the luminous means into the door leaf at least substantially parallel to a main extension plane of the door leaf.
  • the linear optics is intended to initiate at least 20%, preferably at least 40% and particularly preferably at least 60%, of a light of the luminous means into the door leaf at least substantially parallel to a main extension plane of the door leaf.
  • Linear optics should be understood in this context, in particular an optical unit, in particular a light-conducting optics, which is provided for a light steering and / or light pipe.
  • this is to be understood, in particular, as optics which are provided for bundling a light incident from at least one side.
  • the optics is provided for a linear focusing of the light, so that at least a substantial part of the emergent light beams are aligned at least substantially parallel to one another.
  • the linear optics may be both passive, such as a lens, or active, such as a mirror array, trained.
  • the linear optics is passively formed.
  • an advantageously uniform illumination of the door leaf can be achieved.
  • an advantageously high efficiency can be achieved.
  • the proportion of light coupled in, in particular a light coupled into the door leaf can be increased to 64% by means of the linear optics, compared with 24% without any appearance.
  • the frame unit has at least one frame limb which comprises a groove in which at least one light source of the illumination unit is arranged.
  • the Zargentician comprises at least two, preferably at least three frame legs.
  • at least one of the frame legs of the Zargentician is provided to a vertical arrangement.
  • the frame leg comprises a groove in which at least one lighting means of the lighting unit is arranged, which is provided to a vertical arrangement.
  • the groove preferably has an at least substantially constant cross-section along a main extension direction of the frame limb.
  • a "vertical arrangement" is to be understood as meaning, in particular, an arrangement in which a main extension direction of the frame limb extends at least substantially vertically.
  • a "main direction of extension" of an object should in particular be understood to mean a direction which runs parallel to a longest edge of a smallest geometric cuboid which just completely encloses the object.
  • at least substantially should be understood in this context in particular that a deviation from a predetermined value in particular less than 25%, preferably less than 10% and particularly preferably less than 5% of the specified value.
  • the lighting unit has at least one cover to cover the groove of the frame leg.
  • the cover is provided in particular to lock directly to the frame legs.
  • the cover is provided to cover and seal the groove of the frame leg.
  • the cover is in particular provided to seal the lamp with respect to an environment.
  • “sealing” should in particular be understood to mean that an undesired mass transfer from one room to another is prevented or at least limited.
  • it should be understood in particular that an exchange of fluids between rooms is prevented or at least limited.
  • the cover has at least one base body and at least one extruded to the main body seal.
  • the seal is formed by a TPE seal.
  • the at least one seal is deformed during assembly of the cover, in particular bent.
  • the cover has at least two seals, which are arranged on opposite sides of the base body.
  • a "an-extruded seal” is to be understood in particular as meaning that the at least one seal is produced together or after the main body in an extrusion process.
  • this is to be understood in particular as meaning that the seal and the base body are produced in a common extrusion process.
  • this is to be understood in particular as meaning that the seal and the base body are produced in a common multi-component extrusion process.
  • An advantageous cleanability of the door device can be provided.
  • a GMP-compliant door device can be provided thereby.
  • the linear optics of the lighting unit is at least partially formed integrally with the cover of the lighting unit.
  • the linear optics of the lighting unit is formed integrally with the main body of the cover of the lighting unit.
  • one-piece should in particular be cohesively connected, as for example by a welding process and / or bonding process, etc., and particularly advantageous molded, as understood by the production of a cast and / or by the production in a single or Mehrkomponentenspritzvon.
  • an advantageously simple installation of the door device can be achieved.
  • an advantageously reliable positioning of the linear optics, in particular over the cover can be achieved.
  • a number of components can be kept low.
  • the linear optics and a seal can be advantageously realized with the same element.
  • the linear optics and the cover are made in a multi-component extrusion process.
  • a one-piece construction can already be produced during production.
  • various properties of the linear optics and the cover can be advantageously realized thereby.
  • the linear optics have a much higher translucency with respect to the cover.
  • the linear optic is translucent and the cover is opaque.
  • the cover is provided in particular to avoid a Vorbeistrahlen the light source to the door over.
  • an advantageous light pipe can be achieved.
  • a Vorbeistrahlen on the door can be avoided.
  • a large scatter can be avoided.
  • the linear optics has an at least substantially trapezoidal cross-section, wherein the legs of the trapezoid are convex.
  • the linear optics in a cross section, in particular in a plane perpendicular to a main extension direction, at least substantially in the shape of an isosceles trapezium.
  • a base side of the trapezoid is flush with a front of the cover off.
  • the legs of the trapezoid are convex.
  • the legs of the trapezoid are shaped in particular mirror-symmetrical to each other.
  • the linear optics has a constant cross section along the main extension direction.
  • the door leaf comprises at least one glass pane, which occupies at least a substantial part of a main extension plane of the door leaf.
  • the door is completely formed by the glass.
  • the glass pane is in particular formed by a frosted glass pane and / or a satin-finished glass pane. Due to the matting of both door surfaces of the glass pane, light of the lighting unit can be coupled out in particular flat and is thus visible from both sides.
  • the glass sheet is made of glass.
  • the glass pane consists at least partially of a different material to glass, such as acrylic glass.
  • a particularly advantageous door leaf can be provided.
  • an advantageously flat, easy-to-clean door leaf can be provided.
  • the illumination unit is provided for a planar illumination of the glass pane.
  • the lighting unit is in particular provided to illuminate the glass pane at least substantially uniformly.
  • the glass pane is illuminated by the illumination unit from the inside out.
  • the lighting unit is provided to initiate light of the luminous means into the glass pane at least substantially parallel to a main extension plane of the door leaf, wherein the light breaks in each case in an edge region of the glass pane, in particular in a satin-finished edge region of the glass pane, and is scattered outwards ,
  • an advantageously large-area and homogeneous illumination of the door leaf can be achieved. Good visibility of the lighting can be guaranteed.
  • the lighting unit has at least one light source carrier on which the light source is fixed and which is held via a latching connection in the groove of the frame leg.
  • the illuminant carrier preferably has at least one latching unit with at least one latching element for producing the latching connection.
  • the groove has at least one corresponding latching element.
  • a "light source carrier” is to be understood as meaning, in particular, a carrier for receiving a light source.
  • the carrier serves to stabilize and positionally fixed arrangement of the lamp.
  • the carrier is substantially rigid.
  • the carrier serves in particular for heat dissipation of heat arising at the light source.
  • the carrier preferably has a high thermal conductivity.
  • the carrier is in particular at least partially made of aluminum.
  • a "latching unit” is to be understood in particular as meaning a unit having at least one latching element, which is elastically deflected during a fastening operation, in order subsequently to lock by an internal clamping force behind a corresponding latching element.
  • a “latching element” is to be understood in particular to mean a resilient element for producing a latching connection, which is intended to be elastically deflected during assembly.
  • the lighting unit is provided for displaying a defined information to illuminate the door in a defined color.
  • the lighting unit is provided to illuminate the door in different colors, each color is assigned a defined information, in particular a defined status and / or a defined state.
  • the door leaf is used in particular for a visualization of the information.
  • the door is intended in particular to illuminate flat in different colors.
  • various information about a representation are conceivable. For example, a status of the door device and / or the space behind it can be displayed. Alternatively or additionally, a specific room information, such as a clean room zone and / or a clean room class, can be displayed. As a result, in particular the door device can be used to display information.
  • an existing surface can thereby be used as a large display area, which in particular ensures high visibility of information even from a distance.
  • the lighting means of the lighting unit is formed by an RGB LED strip.
  • the luminous means can emit different light colors.
  • the light source can be driven to emit any desired light color.
  • Clean room system with at least one room and with at least one space-limiting door device according to one of the preceding claims. It is proposed that the lighting unit is provided for outputting a status of the space limited by the door device. As a result, in particular, the door device can be used to display a status. As a result, it is possible in particular to dispense with additional displays, which makes it possible in particular to dispense with possibly difficult-to-clean additional devices. In addition, an existing surface can thereby be used as a large display area, which in particular ensures high visibility of information even from a distance. It can be ensured that the status is recorded even at a greater distance. As a result, for example, a fault status could be perceived quickly and reliably.
  • FIG. 1 shows a clean room system 36 in a schematic representation.
  • the cleanroom system 36 has at least one space 38, 40, 42 and at least one door device 10, 10 ', 10 "delimiting the space 38, 40, 42.
  • the cleanroom system 36 has three spaces 38, 40, 42 closed in an operating state.
  • the clean room system 36 has a first door device 10, a second door device 10 'and a third door device 10 ".
  • the first door device 10 connects a first space 38 of the three spaces 38, 40, 42 with an environment.
  • the two door device 10 'and the third door device 10 "connect the first space 38 to a second space 40 or a third space 42, respectively.
  • the second door device 10' connects the first space 38 to the second space 40 and the third door device 10" connects the first space 38 with the third space 42.
  • the first space 38 is formed by a lock space.
  • the first room 38 connects an environment to the other rooms 40, 42.
  • the second room 40 and the third room 42 are each formed by clean rooms.
  • the first space 38 is bounded by walls.
  • the first space 38 has a clean air unit 44.
  • the clean air unit 44 is provided for a clean air flush of an interior of the first space 38.
  • the clean air unit 44 is partially integrated in one of the walls. In principle, however, would be also another, a professional appear useful construction of the spaces 38, 40, 42 conceivable.
  • the door devices 10, 10 ', 10 are each formed by a full-glass door
  • the door devices 10, 10', 10 are each formed by a frameless, full-glass door.
  • the door devices 10, 10 ', 10 are of identical design, and a description of the first door device 10 can accordingly also be applied to the other door devices 10', 10".
  • the door device 10 is formed by a clean room door device.
  • the door device 10 has a frame unit 12.
  • the frame unit 12 forms a frame of the door device 10.
  • the frame unit 12 has at least one frame leg 24, 46, 48.
  • the frame unit 12 has three frame legs 24, 46, 48.
  • the frame unit 12 has two vertical frame legs 24, 46 and a horizontal frame legs 48 connecting the vertical frame legs 24, 46.
  • the frame legs 24, 46, 48 are each formed by extruded profiles. In principle, however, another embodiment of the frame legs 24, 46, 48, which appears expedient to a person skilled in the art, would also be conceivable.
  • the door device 10 has an at least partially translucent door leaf 14.
  • the door leaf 14 is completely translucent.
  • the door leaf 14 comprises a glass pane 32, which occupies at least a substantial part of the main extension plane 20 of the door leaf 14.
  • the door leaf 14 is completely formed by the glass pane 32.
  • the door leaf 14 also comprises a frame in which the glass pane 32 is at least partially enclosed.
  • the glass sheet 32 is satin finished.
  • the glass pane 32 is not transparent ( FIG. 2 ).
  • the first door device 10 has at least two hinges 50, 52.
  • the first door device 10 has two hinges 50, 52.
  • the first door device 10 has an upper hinge 50 and a lower hinge 52.
  • the hinges 50, 52 are arranged with a first end on an edge region of the door leaf 14 and firmly glued to it and / or screwed. In principle, however, another connection method between the hinges 50, 52 and the door leaf 14, which would appear meaningful to a person skilled in the art, would also be conceivable.
  • a second, opposite the first end rotatable end of the hinges 50, 52 are connected to the frame unit 12.
  • the upper hinge 50 is in an upper region of the door leaf 14 with connected to the door leaf 14 and the lower hinge 52 is connected in a lower portion of the door leaf 14 with the door leaf 14.
  • the hinges 50, 52 are connected to the door leaf 14 on the same side of the door leaf 14.
  • the first door device 10 has a door opener 54.
  • the door opener 54 is integrated in the upper hinge 50.
  • the door opener 54 has a not further visible motor, which is arranged in a rotational axis of the upper hinge 50 ( FIG. 2 ).
  • the first door device 10 has a handle unit 56.
  • the handle unit 56 has an outer base body 58, an inner base body, not shown, an outer door handle 60 and an inner door handle, not shown.
  • the main body 58 are fixed and rigidly connected to the door leaf 14 of the door device 10.
  • the outer body 58 is not further visible screwed through the door 14 through to the inner body. In principle, however, another solid connection between the basic bodies 58 and the door leaf 14, which would appear meaningful to a person skilled in the art, would also be conceivable.
  • the outer body 58 is in a closed state of the door device 10 directly to the frame unit 12 at.
  • the door handles 60 of the handle unit 56 are fixedly connected to the respective main bodies 58.
  • the door handles 60 are each formed by a handle.
  • the door handles 60 are each formed by a strap handle ( FIG. 2 ).
  • the door device 10 further comprises a sealing unit 78.
  • the sealing unit 78 is formed by a arranged on the frame unit 12 sealing lip.
  • the sealing unit 78 has a fastening region, which is intended to engage in attachment of the sealing unit 78 into a groove of the frame unit 12.
  • the sealing unit 78 has a sealing area, which is provided in a closed state of the door device 10 for abutment with the door leaf 14.
  • the sealing area is intended to be pressed in a closed state of the door device 10 to a seal perpendicular to the main plane of extension of the door leaf 14 against the door leaf 14.
  • the sealing region of the sealing unit 78 protrudes perpendicular to the main extension plane of the door leaf 14 from the frame unit 12.
  • the sealing unit 78 is arranged on a frame extension of the frame unit 12, which serves as a stop for the door leaf 14.
  • the door device 10 has an at least partially integrated in the Zargentician 12 lighting unit 16.
  • the lighting unit 16 is completely integrated in the frame unit 12.
  • the lighting unit 16 is provided for at least partial illumination and illumination of the door leaf 14.
  • the lighting unit 16 is provided for a complete illumination of the door leaf 14.
  • the lighting unit 16 is provided depending on an operating state to a complete illumination of the door leaf 14.
  • the lighting unit 16 is provided for a planar illumination of the glass pane 32.
  • the illumination unit 16 has a lighting means 18.
  • the lighting means 18 of the lighting unit 16 is formed by an RGB LED strip. In principle, however, another embodiment of the illuminant 18 which appears expedient to a person skilled in the art would also be conceivable.
  • a frame leg 24 of the frame unit 12 comprises a groove 26, in which the lighting means 18 of the lighting unit 16 is arranged.
  • the first vertical frame leg 24 of the frame unit 12 comprises a groove 26, in which the lighting means 18 of the lighting unit 16 is arranged.
  • a main extension direction of the luminous means 18 extends parallel to a main extension direction 62 of the frame limb 24.
  • the luminous means 18 extends along the main extension direction 62 over substantially an entire extent of the frame limb 24.
  • the illumination unit 16 is intended to light the bulbs 18 parallel to the main plane of extension 20 of the door leaf 14 in the door 14 to initiate.
  • the illumination unit 16 has a linear optics 22 which is provided to introduce light from the illuminant 18 into the door leaf 14 parallel to the main extension plane 20 of the door leaf 14.
  • the linear optics 22 is arranged in a beam path of the luminous means 18.
  • the linear optics 22 is elongated.
  • a main extension direction of the linear optics 22 extends parallel to a main extension direction of the luminous means 18.
  • the linear optics 22 extends along the main direction of extension of the luminous means 18 over a total extension of the luminous means 18.
  • the linear optics 22 is constant over the total extension to the illuminant 18 (FIG. FIG. 3 ).
  • the linear optics 22 has a substantially trapezoidal cross section, wherein the legs 30, 30 'of the trapezoid are convex.
  • the linear optics 22 has, in a plane perpendicular to the main extension direction of the linear optics 22, a cross-section which essentially has the shape of an isosceles trapezium.
  • a Base side of the trapezoid is flush with a front side.
  • the legs of the trapezoid are convex.
  • the legs of the trapezoid are also mirror-symmetrical to each other.
  • the linear optics 22 has a constant cross section along the main extension direction.
  • FIG. 4 shows a light distribution of the linear optics 22.
  • the linear optics 22 generates in a cross-sectional plane perpendicular to the main extension plane 20 of the door leaf 14, a light distribution 82 at an outlet with a very narrow characteristic.
  • the very narrow light distribution allows a deep penetration into the glass pane 32 of the door leaf 14 and thereby prevents a rapid light fall.
  • the linear optics 22 generates a broad light distribution 84 in a plane parallel to the main extension plane 20 of the door leaf 14.
  • the broad light distribution 84 superimposes and mixes the light of the individual LEDs of the luminous means 18, whereby a conical effect can be minimized.
  • the illumination unit 16 has a light source carrier 34, on which the light source 18 is fixed.
  • the light-emitting means 18 is glued to the illuminant carrier 34.
  • the illuminant carrier 34 extends along the main extension direction of the luminous means 18 over an entire extent of the illuminant 18.
  • the illuminant carrier 34 is held in the groove 26 of the frame limb 24 via a latching connection.
  • the light source carrier 34 has a latching unit with two latching elements 74, 76 for producing the latching connection.
  • the latching elements 74, 76 are provided for latching with corresponding latching elements of the groove 26.
  • the latching elements 74, 76 are arranged on two opposite outer sides of the illuminant carrier 34, which extend parallel to the main extension direction 62 of the frame limb 24.
  • a first latching element 74 is formed by a locking lug arranged directly on an outer edge of the illuminant carrier 34.
  • the second latching element 76 is formed by a cylindrical sealing lip.
  • the second locking element 76 is made of an elastomer and is carried out separately from a main body of the illuminant carrier 34.
  • the second latching element 76 is received in a recess of the main body of the illuminant carrier 34.
  • the illuminant carrier 34 via the second latching element 76 is pivoted as a rotation axis in the groove 26 until the first latching element 74 engages in the groove 26.
  • the light source carrier 34 also serves to dissipate heat arising from the light bulb 18 heat.
  • the light source carrier 34 has a high thermal conductivity for this purpose.
  • the illuminant carrier 34 consists essentially of aluminum.
  • the illuminant carrier 34 is, apart from the second locking element 76, made of aluminum.
  • the frame unit 12 is also made of aluminum.
  • the illumination unit 16 also has a cover 28 for covering the groove 26 of the frame leg 24.
  • the cover 28 of the lighting unit 16 seals in a mounted state, the bulb 18 from an environment. Further, the cover 28 is locked in a mounted state directly to the frame legs 24.
  • the cover 28 in each case has a latching web 64, 66 on two outer sides running parallel to the main extension direction 62 of the frame limb 24.
  • the cover 28 has a main body 68.
  • the latching webs 64, 66 are arranged on opposite outer sides of the main body 68.
  • the latching webs 64, 66 extend parallel to the main extension direction 62 of the frame leg 24 over an entire extent of the groove 26.
  • the latching webs 64, 66 extend, viewed in a sectional plane perpendicular to the main extension direction 62 of the frame leg 24, substantially perpendicular to a main extension plane
  • the latching webs 64, 66 protrude substantially perpendicular to a main direction of extension of the main body 68 from the main body 68.
  • the latching webs 64, 66 each have on their opposite sides facing away from each other on a locking lug, which are provided with to lock the frame leg 24.
  • the locking lugs engage in an assembled state of the cover 28 in recesses of the groove 26 of the frame leg 24 a.
  • the cover 28 is arranged in an assembled state in the groove 26 of the frame leg 24.
  • the cover 28 extends parallel to a main extension direction 62 of the frame leg 24 over an entire extent of the frame leg 24.
  • the main body 68 and the locking webs 64, 66 of the cover 28 are produced together in an extrusion process. In principle, however, another manufacturing method which would appear meaningful to a person skilled in the art would also be conceivable.
  • the cover 28 has at least one seal 70, 72.
  • the cover 28 has two on the main body 68 on-extruded seals 70, 72.
  • the seals 70, 72 are each formed by a TPE seal. In principle, however, another embodiment of the seals 70, 72 which appears expedient to a person skilled in the art would also be conceivable.
  • the seals 70, 72 are arranged on opposite outer edges of the main body 68.
  • the seals 70, 72 are each arranged on opposite outer edges of the main body 68 in a groove of the main body 68.
  • the seals 70, 72 extend parallel to the main extension direction 62 of the frame leg 24 over a total extent of the cover 28.
  • the seals 70, 72 protrude parallel to the main extension direction of the main body 68 from the main body 68.
  • the seals 70, 72 have in a sectional plane perpendicular to the main extension direction 62 of the frame leg 24 has a cross-section which consists essentially of two squares overlapping on one corner in each case. One of the squares is arranged in the groove of the main body 68, while the other protrudes from the main body 68.
  • the seals 70, 72 have a constant cross section along the main extension direction of the main body 68.
  • the seals 70, 72 are deformed during assembly of the cover 28, in particular bent.
  • the seals 70, 72 are pushed away at an installation down and lie down against the lower edges of the groove 26 of the frame leg 24.
  • the projecting from the main body 68 square of the respective seal 70, 72 is thereby rotated by approximately 45 °, so that a base side of the square is flush with the bottom of the base body 68 of the cover 28. This allows a substantially flat, flush and highly dense connection between the cover 28 and the frame leg 24 can be achieved.
  • the linear optics 22 of the illumination unit 16 is partially formed integrally with the cover 28 of the illumination unit 16.
  • the linear optics 22 of the illumination unit 16 is integrally formed with the base body 68 of the cover 28 of the illumination unit 16.
  • the linear optic 22 and the cover 28 are made in a multi-component extrusion process.
  • the linear optic 22 and the cover 28 are fabricated together in a multi-component extrusion process.
  • On a side facing away from the light source 18 of the linear optics 22 extends along the two transition edges between the linear optics 22 and the cover 28 each have a wedge-shaped groove.
  • the wedge-shaped grooves extend parallel to a main direction of extent of the cover 28.
  • the linear optics 22 extends on a side facing the light source 18 until shortly before the light source 18.
  • the light source 18 and the linear optics 22 are non-contacting. In principle, however, it would also be conceivable for the linear optics 22 to be applied directly to the illuminant 18.
  • the linear optics 22 has a much higher translucency than the cover 28.
  • the linear optic 22 is translucent while the cover 28 is opaque.
  • the cover 28 is provided to prevent a Vorbeirrahlen the illuminant 18 past the door 14 over.
  • the linear optics 22 are arranged completely in a beam path between the luminous means 18 and the door leaf 14 in a closed state, while the cover 28 adjoins the linear optics 22 on both sides.
  • the lighting unit 16 is provided for displaying a defined information to illuminate the door 14 in a defined color.
  • the lighting unit 16 is provided for outputting a status of the space 38, 40, 42 delimited by one of the door devices 10, 10 ', 10 ", for which purpose the light source 18 can be driven to emit any desired color of light Clean-room electronics unit 80.
  • the clean-room electronics unit 80 is provided for monitoring the clean-room system 36, in particular the rooms 38, 40, 42 of the clean-room system 36. Furthermore, the clean-room electronics unit 80 is provided for controlling the lighting unit 16.
  • the clean-room electronics unit 80 is responsible for controlling the cleanroom electronics unit 80 For example, the door leaf 14 can be activated in white, green or red by means of the clean-room electronics unit 80.
  • the clean room electronics unit 80 monitors to a status of the rooms 38, 40, 42 of the clean room system 36 and outputs these are provided via the door devices 10, 10 ', 10 ".
  • the clean room electronics unit 80 is further coupled to the clean air unit 44.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Arrangements Of Lighting Devices For Vehicle Interiors, Mounting And Supporting Thereof, Circuits Therefore (AREA)
EP18189435.3A 2017-08-25 2018-08-17 Dispositif de porte, en particulier dispositif porte pour la salle blanche, comprenant un élément d'éclairage Active EP3447227B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102017119559.9A DE102017119559A1 (de) 2017-08-25 2017-08-25 Türvorrichtung, insbesondere Reinraumtürvorrichtung

Publications (2)

Publication Number Publication Date
EP3447227A1 true EP3447227A1 (fr) 2019-02-27
EP3447227B1 EP3447227B1 (fr) 2020-03-25

Family

ID=63311810

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Application Number Title Priority Date Filing Date
EP18189435.3A Active EP3447227B1 (fr) 2017-08-25 2018-08-17 Dispositif de porte, en particulier dispositif porte pour la salle blanche, comprenant un élément d'éclairage

Country Status (3)

Country Link
EP (1) EP3447227B1 (fr)
DE (1) DE102017119559A1 (fr)
DK (1) DK3447227T3 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202004016897U1 (de) * 2004-10-29 2005-01-20 SWS Gesellschaft für Glasbaubeschläge mbH Glasrahmenleiste mit Leuchtdioden und Abdichtungen, insbesondere zum Aufsetzen auf die Kanten von Glasplatten unterschiedlicher Dicke
DE102006012433A1 (de) * 2006-03-17 2007-09-20 Thyssen Polymer Gmbh Multifunktionsfenster
JP2010257790A (ja) * 2009-04-24 2010-11-11 Panasonic Electric Works Co Ltd 照明付き収納装置
DE102013114724A1 (de) * 2013-12-20 2015-06-25 Schilling Engineering GmbH Reinraumvorrichtung
DE102016101461A1 (de) * 2015-02-02 2016-08-04 Claus Chabina Zargenprofil für ein Türelement in einem Trennwandsystem

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001123777A (ja) * 1999-10-25 2001-05-08 Matsushita Electric Works Ltd 門廻り照明装置
DE20220187U1 (de) * 2002-12-23 2003-04-17 Schneider & Fichtel Gmbh Türeinrichtung für Gebäuderäume
DE20313874U1 (de) * 2003-09-06 2004-02-05 Ruotolo, Bruno Glastür oder Glasfenster

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202004016897U1 (de) * 2004-10-29 2005-01-20 SWS Gesellschaft für Glasbaubeschläge mbH Glasrahmenleiste mit Leuchtdioden und Abdichtungen, insbesondere zum Aufsetzen auf die Kanten von Glasplatten unterschiedlicher Dicke
DE102006012433A1 (de) * 2006-03-17 2007-09-20 Thyssen Polymer Gmbh Multifunktionsfenster
JP2010257790A (ja) * 2009-04-24 2010-11-11 Panasonic Electric Works Co Ltd 照明付き収納装置
DE102013114724A1 (de) * 2013-12-20 2015-06-25 Schilling Engineering GmbH Reinraumvorrichtung
DE102016101461A1 (de) * 2015-02-02 2016-08-04 Claus Chabina Zargenprofil für ein Türelement in einem Trennwandsystem

Also Published As

Publication number Publication date
DK3447227T3 (da) 2020-06-15
DE102017119559A1 (de) 2019-02-28
EP3447227B1 (fr) 2020-03-25

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