EP0195176A2 - Dispositif pour remplir des corps creux de granulés - Google Patents

Dispositif pour remplir des corps creux de granulés Download PDF

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Publication number
EP0195176A2
EP0195176A2 EP85890144A EP85890144A EP0195176A2 EP 0195176 A2 EP0195176 A2 EP 0195176A2 EP 85890144 A EP85890144 A EP 85890144A EP 85890144 A EP85890144 A EP 85890144A EP 0195176 A2 EP0195176 A2 EP 0195176A2
Authority
EP
European Patent Office
Prior art keywords
section
spacer frame
line
frame
granules
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
EP85890144A
Other languages
German (de)
English (en)
Other versions
EP0195176A3 (en
EP0195176B1 (fr
Inventor
Peter Lisec
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP0195176A2 publication Critical patent/EP0195176A2/fr
Publication of EP0195176A3 publication Critical patent/EP0195176A3/de
Application granted granted Critical
Publication of EP0195176B1 publication Critical patent/EP0195176B1/fr
Expired legal-status Critical Current

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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
    • 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
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • E06B3/673Assembling the units
    • E06B3/67304Preparing rigid spacer members before assembly
    • E06B3/67317Filling of hollow spacer elements with absorbants; Closing off the spacers thereafter
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/063Fluid conveyor or applicator
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • Y10T29/49879Spaced wall tube or receptacle
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/51Plural diverse manufacturing apparatus including means for metal shaping or assembling
    • Y10T29/5136Separate tool stations for selective or successive operation on work
    • Y10T29/5137Separate tool stations for selective or successive operation on work including assembling or disassembling station
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/51Plural diverse manufacturing apparatus including means for metal shaping or assembling
    • Y10T29/5191Assembly

Definitions

  • the invention relates to a device for filling hollow bodies with granules, in particular spacer frames for insulating glass with granular, hygroscopic material, with a line connecting a storage container for the granules with an outlet opening.
  • spacer frames of insulating glass panes are regularly filled with granular, hygroscopic material (molecular sieve) in order to bind the moisture contained in the interior of the pane.
  • hygroscopic material molecular sieve
  • the procedure is usually that the hollow profile sections are filled with the hygroscopic material and then closed at both ends with foam plugs. This can be done, for example, with the aid of the device known from AT-PS 365 551.
  • Spacer frames for insulating glass which have been made from a single hollow profile section by multiple bending, cannot be filled with the hygroscopic material before bending, because on the one hand too much time elapses before the spacer frame is installed in the insulating glass and a considerable part of the capacity of the hygroscopic Material is exhausted before the insulating glass is finished and, on the other hand, because when the hollow profile strip is bent, granules are crushed to dust, which then penetrates through the openings in the hollow profile strip into the inside of the pane and is deposited on the inner surfaces of the glass panes.
  • a device has therefore already been proposed (cf. DE-OS 32 24 862) with which integrally curved spacer frames for insulating glass can be filled with hyroscopic material.
  • a problem with the handling of granular hygroscopic material is that it is very abrasive, so that conventional shut-off devices such as valves, slides and the like. Like., Which are used to control the bulk flow, wear out very quickly. On the other hand, there is a risk that the granules will be crushed to dust when the shut-off elements are actuated, which again sets the disadvantage described above.
  • the invention has for its object to provide a device of the type mentioned, with which the bulk flow when filling hollow bodies, in particular spacer frames, without the risk that the granules are crushed and shut-off devices are provided which are subject to increased wear and tear can.
  • a device for filling hollow bodies with granules is characterized in that the line for the granules is deflected upwards in front of the outlet opening and has a section with a cross section which is smaller than the cross section of the remaining section immediately in front of the outlet opening the line that the axis of the section with a smaller cross-section is offset, in particular upwards, relative to the axis of the section of the line in its region adjacent to the section of the line with a smaller cross-section, and that the line is provided with a vibration generator and / or a device for Generating a feed gas stream is assigned.
  • the granulate moves through the line for the granulate via the outlet opening into the one to be filled Hollow body.
  • the vibration generator is stopped or the feed gas flow is interrupted, the granules accumulate in the transition from the section of the line with a larger cross section to the section of the line with a smaller cross section, which is further reinforced by the fact that the section of the line connected to the Exit opening is adjacent, is deflected upwards.
  • the vibration generator and / or the conveying gas flow are effective again, the jam in the granulate is removed and this flows back into the hollow body to be filled.
  • the storage container for the granulate is arranged above the outlet opening, the section of the line having a larger cross section being deflected from a vertical section into a horizontal section of the line.
  • the end of the filling process can be determined simply by assigning a pouring flow detector to the line for the granulate.
  • a pouring flow detector to the line for the granulate.
  • an embodiment in which the bulk flow detector monitors the granulate movement in the line according to the radar principle has proven itself.
  • the bulk flow detector emits a control signal that stops the vibration generator or the device for generating the conveying gas flow when the granulate is stationary in the line.
  • the hollow body to be filled can be removed from the device after the filling process has ended, without there being any risk of granules still emerging from the outlet opening, since immediately after the vibration generator and / or the bulk flow has stopped in the line for the Granules that form a traffic jam.
  • the invention further relates to a device for filling spacer frames for insulating glass of the type known from DE-OS 32 24 862, which is equipped with at least one, but preferably two filling devices according to the invention and with a holder for the spacer frame to be filled and with at least one, but preferably two processing arrangements, which are arranged on a machine frame and are each equipped with a drilling device for creating filling openings in the spacer frame to be filled and with a device for closing the filling openings after the filling process has ended.
  • such a device is characterized in that the holder of the processing arrangement has a clamping device which engages on one leg of the spacer frame and a pressure stamp, that the processing device has a plate opposite the pressure stamp, which has a contact surface which extends parallel to the plane of the spacer frame and in which a hole for the passage of a drill of the drilling device, a channel for the granulate and a channel for a mass for closing the filler opening in the spacer frame and that drive motors are provided for a relative movement between the plate and the spacer frame, initially around the leg of the spacer frame Place the hole for the drill, then the mouth of the channel for the granulate and finally the mouth of the channel for the mass to close the filling opening in the spacer frame.
  • the specially designed clamping device reliably holds the leg or legs of the spacer frame, via which the filling process is to be carried out.
  • the pressure stamp for pressing the spacer frame against the plate is arranged opposite in the rest position of the mouth of the channel for the granulate and closes the mouth when the spacer frame is removed.
  • This stamp therefore has a double function; on the one hand he holds the spacer frame in contact with the plate and on the other hand he closes the mouth of the line for the granulate so that it is protected from moisture.
  • the or each machining arrangement has a base plate and an auxiliary plate which can be displaced relative to the latter, the plate with the hole for the drill of the drilling device and the channels for the granulate or the mass for closing the filling opening at a distance holder frame and a storage cylinder for the mass for closing the opening in the spacer frame on the movable auxiliary plate, the clamping device and the pressure stamp is arranged on the base plate.
  • This embodiment has the advantage, inter alia, that after the opening created in the spacer frame is closed, a protruding mass is wiped off by a sliding movement of the spacer frame relative to the plate.
  • the auxiliary plate is guided on the base plate over a horizontal rail and in the region of its lower edge between rollers on the base plate.
  • the metering of the mass for closing the opening (s) created in the spacer frame is particularly easy if a feed cylinder for the mass for closing the filler opening in the spacer frame is assigned a piston which can be pushed forward and through which a predetermined amount of mass required for a closing process can be inserted into the in the plate provided channel for the mass for closing the filler opening in the spacer frame can be pressed, and that in the channel a pushable piston for squeezing the mass from the channel is received in the filler opening in the spacer frame.
  • the clamping device on the processing arrangement has a stop arranged rigidly on the base plate and a clamping jaw which can be placed on the leg of the spacer frame and is pivotably mounted on the base plate.
  • the spacer frame is clamped from both sides and additionally pressed against the plate by the pressure stamp, so that it moves between in the relative movements From stand frame and plate is held securely.
  • the pivotable clamping jaw is angled and is pivotably mounted on the base plate about a preferably vertical axis via two legs perpendicular to its pressure surface. If, according to a further proposal of the invention, the pressure stamp extends through the movable clamping jaw between the legs thereof, then a spatially advantageous arrangement results.
  • the drilling device can be pushed forward on the base plate for carrying out the drilling work transversely to the level of the spacer frame.
  • a horizontally aligned bar provided with hooks, into which hooks a spacer frame can be hung and that the processing arrangement (s) one (the) vertical leg (s) of the spacer frame is (are) assigned.
  • the stop of the clamping device can be placed on the outer surface and the clamping jaw on the inner surface of one leg of the spacer frame.
  • the plate with the hole for the drill and the channels for the granulate or the mass for closing the filler opening of the spacer frame can be placed on a surface of one leg of the spacer frame that runs parallel to the plane of the spacer frame.
  • a guide rail which is preferably arranged higher than the guide rail, is provided on the displaceable machining arrangement on the side of the spacer frame facing away from the machine frame. This ensures that the leg of the spacer frame associated with the movable machining arrangement is moved into the vicinity of the plate before the clamping device is closed and the plunger is moved forward when the movable machining arrangement is delivered.
  • a device for filling spacer frames 1 for insulating glass panes comprises two processing arrangements 2 and 3 carried by a machine frame (not shown in more detail).
  • the processing arrangement 2 is fixed in the machine frame and the processing arrangement 3 is horizontally displaceable in the machine frame.
  • the structure of the machining arrangement 2 and 3 is explained below with reference to FIGS. 1 a and 2 using the example of the machining arrangement 2 which is stationary in the machine frame.
  • the processing arrangement 2 has a base plate 10 connected to the machine frame and an auxiliary plate 11 which is guided horizontally back and forth on it.
  • the auxiliary plate 11 is on the base plate 10 via a guide rail 12 supported.
  • guide rollers 14, which are mounted on the base plate 10 rest on both sides.
  • a pressure medium motor 15 is provided in the exemplary embodiment shown for moving the auxiliary plate 11 relative to the base plate 10.
  • a plate 16 is provided on the movable auxiliary plate 11.
  • This plate 16 has a hole 17 for the passage of a drill 18 which is guided on the base plate 10 or - as in the exemplary embodiment - on the auxiliary plate 11, transversely to the surface extension of the base plate 10 or the auxiliary plate 11 and pushed back and forth.
  • a pressure medium motor 20 which engages, for example, the motor 19 for the drill 18, is provided.
  • a channel 21 for the supply of granules.
  • another channel 22 opens into the plate 16, via which a mass can be supplied, with which the filling openings created in the legs 6 and 7 of the spacer frame 1 can be closed again after the filling process has ended.
  • This mass is kept in a cartridge 23 which can be acted upon by the piston of a pressure medium motor 24.
  • a further piston 25 is assigned to the channel 22 and can be advanced by a pressure medium motor 26. When the piston 25 is pushed forward, the amount of mass pressed by the actuation of the pressure medium motor 24 into the channel 22 is pushed out of the cartridge 23 out of the mouth 27 of the channel 22 and pressed into the filler opening created in the spacer frame in order to close it.
  • a clamping device 30 is provided, which by the Base plate 10 is worn.
  • the clamping device 30 comprises a stop 31 and a pivotable clamping jaw 32 which is angled and is pivotably mounted about two legs 33 on a carrier 34 connected to the base plate 10 about a substantially vertical axis.
  • a pressure medium motor 35 is provided for actuating the jaw 32.
  • the clamping jaw 32 In the embodiment of the clamping jaw 32 shown in FIG. 1b, the latter is simply angled, ie its legs 33 are perpendicular to its pressure surface 36, the piston rod of the pressure medium motor 35 engaging an extension 37.
  • a pressure stamp 40 protrudes toward the plate 16, wherein in the rest position of the processing arrangement 2 the pressure stamp 40 closes the mouth 41 of the channel 21, through which the granulate can be fed.
  • the pressure stamp 40 is pressed forward with the aid of a spring 42, so that, as can be seen in FIG. 1, it rests against a side surface of the vertical leg 6 of the spacer frame 1 and presses it against the plate 16.
  • a pressure medium motor 43 is assigned to the pressure stamp 40, by means of which the pressure stamp 40 can be lifted off the frame leg 6 or the plate 16.
  • the pressure medium motor 43 and thus also the pressure stamp 40 are fastened to the carrier 34 via an auxiliary carrier 44 and are thus rigidly connected to the base plate 10 of the machining arrangement 2.
  • the movable processing arrangement 3 has a corresponding, partially mirror-symmetrical structure with the proviso that in the plate 16 of the movable processing arrangement 3, the mouth 41 of the channel 21 for granules, the mouth 27 of the channel 22 for the Sealing compound and the hole 17 for the passage of the drill 18 are arranged in the same order as in the plate 16 of the stationary processing arrangement 2 (see FIG. 3 ff.).
  • guide strips 50 are also provided, which are arranged in the same vertical plane as the front surfaces of the plates 16, so that the legs 6 and 7 of the spacer frame 1 rest against the guide rails 50 with the spacer frame 1 hanging vertically.
  • a further guide bar 51 is provided on the movable processing arrangement just below its clamping device 30, which bears against the leg 7 of the spacer frame 1 from the front.
  • These guide strips 50 and 51 - the guide strip 51 is preferably attached to the auxiliary plate 11 - ensure that when the movable machining arrangement 3 is delivered, the leg 7 of the spacer frame 1 is approximately in the correct position for the clamping device 30 to take effect and, moreover, during delivery the movable machining arrangement does not collide with it (for example with the jaw 32 or the plate 16).
  • the device for filling the spacer frame 1 with granules is described below with reference to FIG. 10 and FIG. 2, it being noted that this device is also independent of the previously described device for filling Spacer frame can be used wherever bulk flows of granules, in particular of abrasive granules that can be easily crushed to dust, have to be controlled.
  • the device for filling hollow bodies with granules comprises a storage container 60 for the granules, which is connected via a line 61 to an outlet opening 41, the outlet opening 41 being provided in the embodiment shown in the plate 16 of the device according to FIGS. 1 and 2.
  • a filling opening 62 is arranged in the hollow body to be filled, which is the leg 6 of the spacer frame 1 in the exemplary embodiment shown.
  • the hollow body is pressed against the plate 16 by a pressure stamp 40, the pressure stamp 40 closing the mouth 41 when the hollow body is removed. This is particularly important in the case of hygroscopic granules (molecular sieve), as is used to fill spacer frames.
  • the line 61 comprises a vertical section 63, a horizontal section 64 and an obliquely upwardly extending section 65, the end of the obliquely upwardly extending section 65 immediately adjacent to the mouth 41 being oriented essentially horizontally.
  • the sections 63 and 64 of the line 61 have a larger cross section (diameter) than the section 65 of the same which extends obliquely upwards.
  • the obliquely upwardly extending section 65 with a smaller cross section is offset upwards from the horizontal section 64, so that a step 67 results in the line 61 in the transition region of the sections with a larger cross section to the section with a smaller cross section.
  • a line is assigned to the line 61 and / or the storage container 60, which generates vibration strokes which are aligned parallel to the section 63 of the line 61 and predominantly act downwards.
  • a device for generating a conveying gas stream which is dried in the case of granules made of hyroscopic material, must be assigned.
  • a line flow detector 68 is assigned to line 61, preferably the vertical section 63 thereof, which detects movements of the granules through line 61, for example with the aid of the radar principle.
  • the filling flow detector which now no longer detects any movement of the granulate, emits a control signal which indicates the vibration generator and / or the device for generating the conveying gas flow stops.
  • the hollow body now filled with granules can then be removed. Since the granulate jams in the transition region 66 between the line sections 63, 64 with a larger cross section and the upwardly directed section 65 of the line with a smaller cross section, if no vibrations are generated or no conveying gas flow is passed through the line 61, there is no risk that at removed hollow body of granules from the reservoir 60 via the line 61 from the mouth 41.
  • the pressure stamp 40 therefore does not have the task of preventing granules from escaping from the mouth 41, but rather serves only to press the hollow body against the plate 16 and to close the mouth against the ingress of moisture from the outside.
  • the vertical legs 6 and 7 of the spacer frame 1 are arranged opposite the holes 17 for the drill 18, so that, as shown in FIG. 6, the drill 18 operates to produce the filling openings in the spacer frame 1 can be.
  • the auxiliary plate 11 and thus also the plate 16 connected to it are displaced, so that the mouths 41 of the channels (lines 61) for the supply of granulate face the previously created fill holes 62.
  • the vibration generator is set in operation and generates a conveying gas flow, so that the granules from the storage container '60 enters via line 61 into the spacer frame 1 ( Figure 7).
  • the auxiliary plates 11 By pressing the pressure medium motors 15 again, after the filling process, for. B. controlled by the bulk flow detector 68, the auxiliary plates 11 relative to the base plates 10 of both processing arrangements 2 and 3 moves one step until the mouths 27 of the Channels 22 for supplying mass from the cartridge 23 are aligned (position according to FIG. 8). Now the pressure medium motors 24 are actuated in order to press a predetermined amount of mass from the cartridges 23 into the channel 22, whereupon the pressure medium motors 26 actuate the press-in punches 25 so that the amount of mass contained in the channel 22 is used to close the filling openings 62 is pressed into the vertical legs 6 and 7 of the shield holder frame 1.
  • the now stationary piston of the pressure medium motor 24 prevents a backflow of mass from the channel 22 into the cartridge 23.
  • the plates 16 for actuating the pressure medium motors 15 are turned again to the right or, as in FIG. 1, in relation to the legs 6 and 7 held by the clamping devices 30 9 shown, shifted to the left in order to smoothly strip the mass closing the filling openings 62.
  • a completely filled spacer frame can be removed from the device.
  • the workflow just described for filling spacer frames can take place partially or completely automatically, for which purpose the device, not shown, is assigned to limit switches (for example light barriers and the like) which control the movements, in particular the delivery of the movable processing arrangement 3.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Drilling And Boring (AREA)
  • Devices And Processes Conducted In The Presence Of Fluids And Solid Particles (AREA)
  • Control And Other Processes For Unpacking Of Materials (AREA)
  • Basic Packing Technique (AREA)
EP85890144A 1985-03-18 1985-06-26 Dispositif pour remplir des corps creux de granulés Expired EP0195176B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AT0080485A AT383582B (de) 1985-03-18 1985-03-18 Vorrichtung zum fuellen von hohlkoerpern mit granulat
AT804/85 1985-03-18

Publications (3)

Publication Number Publication Date
EP0195176A2 true EP0195176A2 (fr) 1986-09-24
EP0195176A3 EP0195176A3 (en) 1987-05-27
EP0195176B1 EP0195176B1 (fr) 1988-09-14

Family

ID=3500087

Family Applications (1)

Application Number Title Priority Date Filing Date
EP85890144A Expired EP0195176B1 (fr) 1985-03-18 1985-06-26 Dispositif pour remplir des corps creux de granulés

Country Status (4)

Country Link
US (1) US4670954A (fr)
EP (1) EP0195176B1 (fr)
AT (1) AT383582B (fr)
DE (2) DE3564977D1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4781878A (en) * 1987-03-09 1988-11-01 Peter Lisec Method for producing and sealing an opening in a hollow molding
DE3740922A1 (de) * 1987-12-03 1989-06-22 Bayer Isolierglasfab Kg Verfahren und vorrichtung zur herstellung eines abstandhalter-rahmens
DE4036087A1 (de) * 1989-11-27 1991-07-04 Peter Lisec Schuettstromdetektor

Families Citing this family (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT391682B (de) * 1987-10-05 1990-11-12 Lisec Peter Anlage zum foerdern von abstandhalterrahmen fuer isolierglas
DK168164B1 (da) * 1990-12-05 1994-02-21 Skovgaard & Co As Fremgangsmåde samt apparat til fyldning af en lukket afstandsramme med tørremiddel
DE4231683A1 (de) * 1992-03-31 1993-10-07 Lenhardt Maschinenbau Verfahren und Vorrichtung zum Herstellen von Abstandshalterrahmen zur Verwendung zwischen den Glastafeln von Isolierglasscheiben
AT399501B (de) * 1993-03-12 1995-05-26 Lisec Peter Verfahren zum teilweisen füllen von hohlkörpern mit granulat und vorrichtung zur durchführung des verfahrens
IT1266114B1 (it) * 1993-08-02 1996-12-20 For El Base Di Vianello Fortun Dispositivo per il riempimento di telai distanziatori per vetro-camera con materiale igroscopico
AT410066B (de) * 2000-05-09 2003-01-27 Lisec Peter Verfahren zum verbinden von hohlprofilleisten durch schweissen
ITVE20070034U1 (it) * 2007-10-16 2009-04-17 Dallan Spa Dispositivo per l'introduzione di sali disidratanti all'interno di profilati metallici tubolari per vetrocamera.
DE102008028010B4 (de) 2008-06-09 2010-04-01 Bystronic Lenhardt Gmbh Vorrichtung zum Füllen von Abstandhalterrahmen für Isolierglasscheiben mit einem Trocknungsmittel
US8905085B2 (en) 2011-09-09 2014-12-09 Erdman Automation Corporation Apparatus for edge sealing and simultaneous gas filling of insulated glass units
AT522243B1 (de) 2019-07-11 2020-09-15 Lisec Austria Gmbh Verfahren und Vorrichtung zum Füllen von Hohlprofilleisten
KR102814070B1 (ko) * 2022-08-30 2025-06-02 주식회사 아이지스 흡습제 주입기
AT525628B1 (de) 2022-12-19 2023-06-15 Lisec Austria Gmbh Verfahren und Vorrichtung zum Füllen von Hohlprofilleisten mit Füllmaterial

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3380145A (en) * 1964-01-08 1968-04-30 Pittsburgh Plate Glass Co Method of fabricating multiple glazing unit
DE2401472C3 (de) * 1974-01-12 1979-03-29 Karl Lenhardt-Maschinenbau, 7531 Neuhausen Vorrichtung zum Abfüllen von fließfähigem, körnigem Gut aus einem Vorratsbehälter in Hohlraumprofile mit geringem Querschnitt
AT365551B (de) * 1977-03-02 1982-01-25 Lisec Peter Vorrichtung zum fuellen rohrfoermiger profile mit koernigem material
DE2905841C2 (de) * 1979-02-15 1984-04-19 Josef Käuferle KG Stahlbau, 8890 Aichach Verfahren und Anlage zur Herstellung einer Verbundplatte
US4279065A (en) * 1979-10-18 1981-07-21 Sten Sernevi Machine designed to fill hollow profile rods with a granular material
AT383581B (de) * 1982-04-19 1987-07-27 Lisec Peter Vorrichtung zum fuellen von abstandhalterrahmen mit hygroskopischem material
US4453865A (en) * 1982-07-21 1984-06-12 Stone & Webster Engineering Corp. Automatic pressure sensitive regulation assembly

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4781878A (en) * 1987-03-09 1988-11-01 Peter Lisec Method for producing and sealing an opening in a hollow molding
DE3740922A1 (de) * 1987-12-03 1989-06-22 Bayer Isolierglasfab Kg Verfahren und vorrichtung zur herstellung eines abstandhalter-rahmens
US4912837A (en) * 1987-12-03 1990-04-03 Franz Xaver Bayer Isolierglasfabrik Kg Method of and apparatus for making spacer frames for use in multiple-pane windows
DE4036087A1 (de) * 1989-11-27 1991-07-04 Peter Lisec Schuettstromdetektor
US5134279A (en) * 1989-11-27 1992-07-28 Peter Lisec Photo-optical bulk stream detector for a conduit

Also Published As

Publication number Publication date
US4670954A (en) 1987-06-09
ATA80485A (de) 1986-12-15
AT383582B (de) 1987-07-27
DE3564977D1 (en) 1988-10-20
EP0195176A3 (en) 1987-05-27
DE8519191U1 (de) 1985-08-22
EP0195176B1 (fr) 1988-09-14

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