EP3312371A1 - Système de barres profilées - Google Patents

Système de barres profilées Download PDF

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Publication number
EP3312371A1
EP3312371A1 EP17196869.6A EP17196869A EP3312371A1 EP 3312371 A1 EP3312371 A1 EP 3312371A1 EP 17196869 A EP17196869 A EP 17196869A EP 3312371 A1 EP3312371 A1 EP 3312371A1
Authority
EP
European Patent Office
Prior art keywords
profile
frame
sash
elements
cover
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
EP17196869.6A
Other languages
German (de)
English (en)
Other versions
EP3312371B1 (fr
Inventor
Peter Stapf
Matthias Pfeiffer
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.)
Roto Frank Fenster und Tuertechnologie GmbH
Original Assignee
Roto Frank AG
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
Application filed by Roto Frank AG filed Critical Roto Frank AG
Publication of EP3312371A1 publication Critical patent/EP3312371A1/fr
Application granted granted Critical
Publication of EP3312371B1 publication Critical patent/EP3312371B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/004Faceplates ; Fixing the faceplates to the wing

Definitions

  • the invention relates to a profile bar assembly for a window frame and a sash of a door or a window.
  • the profile bar assembly may also be referred to as a profile bar system.
  • the profile bar assembly is for a window frame or a sash of a door or a window, thus enabling their construction / production.
  • Profile bar arrangements of the type mentioned are known. They have two different profile bars, namely one for the construction of a window frame and a structure of a sash.
  • the respective profile bar is cut to length according to the height and width of the window or door, and the individual cut-to-length sections are angularly secured together to form the respective frame.
  • the known profile bars are provided with receiving recesses / openings, wherein such a receiving recess or such opening for the lock in the casement profile and the closing element is formed in the frame profile.
  • the invention has for its object to provide a profile bar assembly of the type mentioned, which is flexible and therefore allows different modifications.
  • the fastening formations are formed by fastening elements, which are located on the frame profile, the sash profile and the covers and are each integrally formed on said parts.
  • Each of the fastening elements is designed such that it can cooperate with one another for fastening said parts together with another fastening element, that is, for example, for fastening a cover to a window frame profile, a fastening element on the cover is required, which is provided with a fastening element on the window frame profile can interact.
  • the two mentioned fastening elements are designed differently for this interaction, for example as a latching projection and latching receptacle.
  • a development of the invention provides that the fasteners are formed of the same material with the frame profile, the sash profile and the covers. Accordingly, each of the parts has the same material element (integral), the associated fastener.
  • fastening formations are detachable fastening formations.
  • the fastening formations are detachable fastening formations.
  • the fastening formations are detachable fastening formations.
  • the fastening formations are detachable fastening formations.
  • the cover on the window frame profile fastened it can be solved destructively again from the frame profile due to the releasable fastening training the cover.
  • the fastening formations are preferably releasable latching formations. Accordingly, the covers can optionally be attached to the wing frame profile and the frame profile each latching. If releasable latching arrangements are provided, then the detent can also be canceled again and, if necessary, also be realized again at a later time.
  • the covers are respectively secured to the sash frame profile or the window frame profile by means of at least two mutually spaced, latching connections belonging to the fastening formations. Accordingly, a cover on the casement profile and another cover on the window frame profile are each held with at least two latching connections, which are spaced from each other.
  • the fastening elements designed as latching connections are located on the two longitudinal side edges of the respective cover.
  • the fastening formations extend over the entire lengths of the frame profile, the sash profile and the profile elements. In the case of latching connections, these thus run over the entire length of the respective profile or of the respective profile element.
  • one of the covers is a lock cover and / or that one of the covers is a closing element cover and / or the at least one of the covers is a standard fitting cover.
  • the lock cover serves to cover a lock, which is arranged on the respective frame profile.
  • the closure element cover serves to cover a closure element which cooperates with the lock to bring about a locking function or an unlocking function.
  • the standard fitting cover serves to cover a standard fitting, such as a displaceable drive rod formed with a lock pin, wherein the lock pins naturally protrude from the cover. For cooperation of these locking pin with strike plates / closing blocks is provided that a further standard fitting covers also allows the installation of the strike plates / closing blocks.
  • the closing element cover is a rigid locking pin cover or a vomziehsch increasinglyzapfenabdeckung.
  • a rigid lock pin cover a holding element of a locking pin is covered, which allows the attachment of a positionally changeable locking pin.
  • a drive arrangement is covered, with which the locking pin can be moved axially, for example, to make a release or locking of the door or the window.
  • the locking pin itself is not covered, since it must protrude beyond the respective cover in order to perform its function (unless it is in its retracted position when it is retractable).
  • the frame profile, the sash profile and the profile elements made of plastic, in particular electrically non-conductive plastic consist, It is plastic profiles, in particular plastic chamber profiles.
  • the frame profile, the sash profile and the profile elements are made of metal or there is a hybrid form, that is, certain profiles / elements are made of metal and other plastic or at least one profile consists of both metal and plastic ,
  • a development of the invention provides that the window frame profile, the sash profile and / or the profile elements have electrical current paths. For example, if the mentioned lock is electrically actuated and / or electrically driven in order to perform a lock function, then the electrical current paths enable an electrical supply and / or control function.
  • the current paths are injected / injected as conductor tracks in / on the frame profile, the sash profile and / or the profile elements and / or glued as foil conductors on the frame profile, the sash profile and / or the profile elements and / or as conductive plastic sheets on / in the frame profile, the sash profile and / or the profile elements are injected / injected.
  • fastening elements in particular screws, consist of electrically conductive material, which screwed into the frame profile, the sash profile and / or the profile elements in such a way are that they electrically contact the current paths, under which electrical supply paths and / or electrical data paths are to be understood, and at the same time serve as holding means for and electrical connection means to electrical (s) mounting or electrical (n) attachments (s) of the profile bar assembly.
  • the electrical installation or electrical attachments may be, for example, the mentioned lock.
  • the fasteners then take on a dual function by serving on the one hand the attachment of parts and on the other hand allow an electrical power supply for electrical supply and / or electrical control.
  • the built-in or attachment may also have separate electrical contacts which when pressing the screws on or indent and thereby produce electrical connections to the current paths.
  • the invention further relates to a frame and a sash of a door or a window, wherein the frame and sash is created by means of a profile bar assembly according to one or more of the preceding embodiments.
  • the FIG. 1 shows a trained as a door 1 closure element 2 of a property.
  • the door 1 is, for example, a front door. However, the invention can also be implemented in the case of closure elements designed as windows (not shown).
  • the door 1 has a sash 3, which is mounted in a frame 4 rotatable about a vertical axis 5.
  • the door 1 is in the Figures 1 and 2 partially open, with the FIG. 1 an inside view and the FIG. 2 an outside view shows.
  • the inside view is a view of the door 1 from the inside of the property and the outside view is a view of the door 1 from outside the property.
  • each of the locks 6 can cooperate with a closing element 7, wherein the closing elements 7 are located on the casement 3.
  • Each closing element 7 has a locking element 8, which is designed as a locking pin 9.
  • the locks 6 and the closing elements 7 are located in a rebate air zone 10 of the closure element 2, preferably on those vertical beams 11 and 12 of the sash 3 and the frame 4, which lie opposite the vertical axis 5.
  • Figures 1 and 2 are a total of four locks 6 and four closing elements 7 provided in said area, of course, more or fewer locks 6 and closing elements 7 are possible and even more spars of sash 3 and frame 4 with locks 6 and closing elements 7 may be provided, for example horizontally extending spars.
  • the hinge side of the door so the side that has the vertical axis 5, with at least one lock 6 and at least one closing element 7 in addition to provide.
  • at least one lock 6 and at least one closing element 7 will be discussed below - unless there are special designs.
  • the mentioned vertical beams 11 and 12 are - according to FIG. 1 - on the open side of the door 1 and on the hinge side. Also in the upper part of the door 1 corresponding horizontal bars 13 and 14 are present. Because the Figures 1 and 2 Do not show the threshold range of the door 1, a corresponding horizontal spar 13 of the sash 3 is not apparent, but present.
  • the vertical bars 11 and 12 and the horizontal bars 13 and 14 belong to a profile bar assembly 15.
  • the profile bar assembly 15 serves to realize the sash frame 3 and the frame 4, that is, the profile bar assembly 15 includes a frame profile 16 and a sash profile 17. These two Profiles 16 and 17 are cut to length in the manufacture of the door 1 and connected at an angle, whereby the frame 4 and the sash 3 are formed.
  • the two vertical beams 11 and the two horizontal beams 13 of the sash 3 are formed by similar sash profiles 17. The same applies to the frame 4.
  • FIG. 3 shows a portion of the frame profile 16 and a correspondingly long portion of the frame profile 16 can be assigned to first profile element 18. Further shows the FIG. 3 one of the castles 6.
  • the FIG. 4 shows a portion of the sash profile 17 and a correspondingly long portion of a second profile element 20, which is the sash profile 17 attributable. Furthermore, the shows FIG. 4 one of the already mentioned closing elements 7.
  • the Figures 3 and 4 show the mentioned components in an exploded view. These are in the Figures 5 and 6 shown in the assembled state.
  • FIGS. 7 to 10 show profile bar assemblies 15 each in cross section. It can be seen that the casement profile 17 relative to the frame profile 16 has a different profile cross section, that is, the profile cross sections of these two components are different. Furthermore, from the FIGS. 7 and 8th It can be seen that the two profile elements 18 and 20 have a different profile cross-section. On the profile elements 18 and 20 of Figures 9 and 10 will be discussed in more detail in the following concrete explanation of these two figures. First, an explanation follows FIGS. 7 and 8th ,
  • the FIG. 7 shows that the frame profile 16 has two end profiles 21 and 22, which are interconnected via two connecting profiles 23 and 24.
  • the end profiles 21 and 22 and the connection profiles 23 and 24 are preferably formed as extruded profiles.
  • the arrangement is such that on the end profiles 21 and 22 receiving grooves 25 are formed, in the end widening Einsetzrandkanten 26 of the connection profiles 23 and 24 are used.
  • the procedure is preferably such that the receiving grooves 25 are closed after insertion of the connection profiles 23 and 24 by deformation of material such that a firm, immovable fit of the connection profiles 23, 24 and end profiles 21, 22 is present to each other.
  • the connection profile 24 is facing the folding zone 10 and constructed in such a chamber-like manner that a thermal insulation is realized.
  • the two end profiles 21 and 22 have angle profile webs 27, the parallel extending webs 28 and facing each other webs 29 have. Between the ends of the webs 29, an opening 30 of a first receiving cavity 31 is formed.
  • the first receiving cavity 31 is closed by means of the first profile element 18.
  • the lock 6 is received fixed and covered by the first profile element 18. Accordingly, the first profile element 18 forms a cover 32.
  • the cover 32 may also be referred to as an adapter profile.
  • the first profile element 18 is configured in cross-section substantially U-shaped with two legs 33 and a central web 34, wherein in the assembled state, the central web 34 extends parallel to the outside spaced apart from the webs 29, resulting in an increase in the volume of the first receiving cavity 31 , Overall thus a greater depth is present, which is required for the inclusion of the castle 6.
  • the legs 33 barb-like locking elements 35 end, which engage behind the webs 29 with locking lugs 36, wherein the ends 38 of the locking elements 35 are supported on surfaces 37 of the end profiles 21 and 22, whereby a secure and positionally immutable support of the first profile element 18 on the frame profile 16 is achieved.
  • the locking elements 35 have inlet slopes 39, which simplify the latching operation.
  • the attachment of the first profile element 18 to the frame profile 16 is carried out in a simple manner by the profile element 18 is pressed for locking with the frame profile 16 aligned against the frame profile 16 so that the ends of the webs 29 move along the inlet slopes 39, wherein a resulting from the material elasticity of the first profile element 18 and / or the frame profile 16 resulting deformation and then the detent position is achieved by returning or most extensive return of the elastic deformation.
  • a corresponding structure is present in the casement profile 17.
  • two connection profiles 43 and 44 are provided which are formed as the connecting profiles 23 and 24 and the two end profiles 41 and 42 connect to each other, in a corresponding manner, as described previously in the frame profile 16, grooves 45 and Einsetzrandkanten 46 are provided for secure attachment of the parts together.
  • the end profiles 41 and 42 and the connection profiles 43 and 44 are formed as extruded profiles.
  • angle webs 47 are provided in the casement profile, the webs 48 and 49 and between the ends 40 of the webs 49 have an opening 50. Due to the explained construction, a second receiving cavity 51 is formed on the casement profile 17 between the angle profile webs 47, which is covered by means of a cover 52 formed by the second profile element 20.
  • the cover 52 may also be referred to as an adapter profile.
  • the cover 52 is U-shaped in cross-section and has two legs 53 and a central web 54, 53 locking elements 55 are formed at the ends of the legs which have latching lugs 56 and engage behind the webs 49, wherein the ends 60 of the locking elements 55th on surfaces 57 of the end profiles 41 and 42 are supported.
  • the central web 54 of the cover 52 is aligned with the webs 49, the depth of the second receiving cavity 51 is formed smaller than the depth of the first, enlarged receiving cavity 31 , Within the second receiving cavity 51, a holding element 88 of the closing element 7 is arranged. From the holding element 88 is a locking pin 9, which protrudes from the cover 52 and can cooperate with the lock 6 for locking or unlocking.
  • the locking elements 35, 55 and the behind of the locking elements 35, 55 webs 29 and 49 are fastening elements 61 and together form Befest Trents fielden 89 for holding the covers 32 and 52 on the frame profile 16 and sash profile 17. Since the Befest Trents section 89 not by separate parts, but through parts of the covers 32 and 52 and the frame profile 16 and the sash frame profile 17 are formed, it is integrally integrated mounting formations 89th
  • the design is such that the same profile and the correspondingly cooperating mounting formations 89, the first profile member 18 instead of its attachment to the frame profile 16 could also be done on the sash profile 17.
  • FIG. 8 largely corresponds to the FIG. 7 , but with the difference that the lock 6 is not on the frame 4, so the frame frame 16, but in the sash 3, namely the sash profile 17, is arranged. Accordingly, the closing element 7 is on the frame 4, so the frame profile 16.
  • the result is that the second profile element 20 is no longer - as in FIG. 7 -
  • FIGS. 7 and 8th are the same frame profiles 16 and sash profiles 17. It is clear that it is made possible by the invention, the two profile elements 18 and 20, so the covers 32 and 52 optionally, so depending on the application, the selected profile, So the frame profile 16 and the sash profile 17, assign.
  • FIG. 9 shows another embodiment of the invention.
  • the FIG. 7 lies with the FIG. 9 however, the difference is that instead of the one in the FIG. 7 used closing element 7, which has a rigid locking pin 90 as a locking pin 9, a closing element 7 is used, which is provided with a remindziehsch enjoyedzapfen 91.
  • the cover 52 is a rigid lock pin cover 92.
  • the cover 52 is a rigid lock pin cover 92.
  • the closing element 7 has a closing element housing 93 which protrudes far into the interior of the casement profile 17 (a corresponding breakthrough is provided).
  • a special cover 102 For mounting the closing element 7 of FIG. 9 is provided as a second profile element 20, a special cover 102.
  • the cover 102 may also be referred to as an adapter profile.
  • the cover 102 has on one side corresponding to the cover 52 a latching element 55 and on the other side a curved spring tongue 103, which allows latching on the casement profile 17.
  • the cover 102 further has a groove 104 for receiving a faceplate 105 and a drive rod 106.
  • a drive rod 106 By an axial displacement of the drive rod 106, which can be made for example by means of a handle, in particular door handle, can be (according to FIG. 1 ) drive all closing elements 7 of the closure element 2 at the same time, so that all locking pins 9 can be actuated.
  • FIGS. 7 and 8th can also be described in the embodiment of FIG. 9 interchanging the covers 32 and 102 depending on the particular application chosen.
  • FIG. 10 shows a further embodiment of the invention, in which again the same frame profile 16 and sash profile 17 is used, but as the first profile element 18 and second profile element 20 for both the frame profile 16 and the sash profile 17 same covers 112 are used, which differs from distinguish the previously discussed covers by each having a groove 113, which is preferably designed as a standard fitting, that is, it allows the installation of a conventional standard fitting with drive rod, locking pin and striking plates. These covers 112 may also be referred to as adapter profiles.
  • the groove 113 may, if desired, also include a faceplate.
  • the attachment formations 89 for latching the covers 112 are designed to be compatible with all other covers 32, 52 and 102.
  • the lock 6 since the lock 6 has an electric motor drive, which requires an electrical supply voltage and / or an electrical control device of the lock 11 requires data communication, it is provided that the frame profile 16 and / or the sash profile 17 and / or the profile elements 18 and 20 electrical Have current paths (not shown).
  • the current paths can be strip conductors which are injected / injected into / onto the frame profile, the casement profile and / or the profile element.
  • foil conductor tracks on the frame profile, the sash profile and / or the Profile elements are glued.
  • electrically conductive plastic sheets are injected / injected onto / in the frame profile, the sash profile and / or the profile elements.
  • fastening elements in particular screws, of electrically conductive material are used, which are screwed into the frame profile, the sash profile and / or the profile elements such that they electrically contact the current paths and thus serve as a holding means for and electrical connection means to the lock 6.
  • the first profile element 18 and / or the second profile element 20 is formed as a prefabricated strip, which is mounted as a whole - as described - and at least one lock 6 and / or at least one closing element 7 and / or
  • Operating components such as a keypad, and / or communication means and / or electrical supply means and so on has, that is, all these components are already pre-assembled to the respective profile element 18 and / or 20 installed, so that the profile element 18 and / or 20 than Entire - as described - is connected to the frame profile 16 or wing frame profile 17.
  • the assembly is considerably simplified.
  • the FIG. 11 shows a transmission unit 120, which is associated with the closure element 2, in particular the door 1, and / or the profile bar assembly 15.
  • the transmission unit 120 is an electrically-mechanical transmission unit 120.
  • the transmission unit 120 has a guide body 121 in which electrical cables 122 are arranged or embedded. This may also be the already mentioned electric current paths.
  • the guide body 121 has a guide channel 123, which is guided on one side 124 of the guide body 121 to the outside, so that a longitudinal slot 125 results.
  • a displacement element 126 which can be moved according to the arrows 127 relative to the guide body 121, so in the guide channel 123 can be moved back and forth.
  • the displacement element 126 has driving projections 128, in the embodiment of FIG. 11 designed as a helix.
  • the transmission unit 120 is associated with the closure element 2, in particular the frame 4.
  • the transmission unit 120 passes by a plurality of locks 6, which are also located in the frame 4.
  • an actuating unit 129 which may be formed as a handle of the closure element 2, a lever, a lock cylinder and so on, it is possible to move the displacement element 126 according to the arrows 127, this movement being transmitted to the individual locks 6, For example, to make a mechanical emergency release of these locks 6.
  • the electrical cable 122 of which in the FIG. 11 purely exemplary three pieces are shown, the supply of the individual locks 6 with an electrical voltage for an electric drive unit of each lock 6 and / or for the supply or discharge of data / control signals.
  • the electric zigzag arrow represents the electrical supply and the opposing arrows show the mechanical displacement of the displacement element 126.
  • FIG. 13 It can be seen that by means of a mechanical connecting element 130, the transmission unit 120 is mechanically coupled to a lock 6, specifically to the mechanical part 131 of the lock 6. Furthermore, the electric cables 122 are electrically connected to an electrical part 133 of the lock 6 by means of electrical connection elements 132.
  • the magnification I of the FIG. 13 The mechanical coupling and the magnification II shows the electrical connection. On the mechanical coupling is in FIG. 14 discussed in more detail.
  • the electrical connection is made such that the connecting elements 132, which may be formed, for example, as screws or pins, are driven into the guide body 121 such that their tips 134 penetrate into the corresponding electrical cable 122, while penetrating any existing insulation 135 , whereby an electrical contact is made, which is guided into the electrical part 133 of the lock 6.
  • the connecting elements 132 which may be formed, for example, as screws or pins
  • FIG. 14 shows that the mechanical connecting element 130 has a toothing 136, which engages in the longitudinal slot 125 and cooperates with the driving projections 128 of the displacement element 126, that engages there, so that a displacement of the displacement element 126 is transmitted via the connecting element 130 to the respective lock 6.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wing Frames And Configurations (AREA)
EP17196869.6A 2016-10-19 2017-10-17 Système de barres profilées Active EP3312371B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016012610.8A DE102016012610A1 (de) 2016-10-19 2016-10-19 Profilstabanordnung

Publications (2)

Publication Number Publication Date
EP3312371A1 true EP3312371A1 (fr) 2018-04-25
EP3312371B1 EP3312371B1 (fr) 2019-05-15

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EP17196869.6A Active EP3312371B1 (fr) 2016-10-19 2017-10-17 Système de barres profilées

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EP (1) EP3312371B1 (fr)
DE (1) DE102016012610A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110656847A (zh) * 2019-10-29 2020-01-07 高科建材(咸阳)铝材科技有限公司 一种高强度防开裂抗变形塑窗

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE9211040U1 (de) * 1992-08-18 1993-12-23 Carl Fuhr Gmbh & Co, 42579 Heiligenhaus Aus armierten Kunststoff-Hohlprofilen bestehende Türen, Fenster o.dgl.
DE202010011238U1 (de) * 2010-08-10 2010-10-21 Kfv Karl Fliether Gmbh & Co. Kg Fenster oder Türe

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE6941760U (de) * 1969-10-24 1970-03-05 Otto Gemuenden Kunststoffprofile fuer fensterrahmen
DE8709264U1 (de) * 1987-07-04 1988-11-10 Niemann, Hans Dieter, 5014 Kerpen Kunststoffrahmen für Fenster, Türen od.dgl.
DE202005000608U1 (de) * 2005-01-14 2006-05-24 SCHÜCO International KG Profil für ein Fenster, eine Tür oder ein Fassadenelement und Tür, Fenster oder Fassadenelement
DE102011082229B4 (de) * 2011-09-07 2020-07-09 Bks Gmbh Schloss

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE9211040U1 (de) * 1992-08-18 1993-12-23 Carl Fuhr Gmbh & Co, 42579 Heiligenhaus Aus armierten Kunststoff-Hohlprofilen bestehende Türen, Fenster o.dgl.
DE202010011238U1 (de) * 2010-08-10 2010-10-21 Kfv Karl Fliether Gmbh & Co. Kg Fenster oder Türe

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110656847A (zh) * 2019-10-29 2020-01-07 高科建材(咸阳)铝材科技有限公司 一种高强度防开裂抗变形塑窗

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DE102016012610A1 (de) 2018-04-19
EP3312371B1 (fr) 2019-05-15

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