EP1464770B1 - Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement - Google Patents

Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement Download PDF

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Publication number
EP1464770B1
EP1464770B1 EP03252087A EP03252087A EP1464770B1 EP 1464770 B1 EP1464770 B1 EP 1464770B1 EP 03252087 A EP03252087 A EP 03252087A EP 03252087 A EP03252087 A EP 03252087A EP 1464770 B1 EP1464770 B1 EP 1464770B1
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EP
European Patent Office
Prior art keywords
web
members
web member
socket
spigot
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.)
Expired - Lifetime
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EP03252087A
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English (en)
French (fr)
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EP1464770A1 (de
Inventor
Roy Loftus
William Hugh Burke
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.)
Glass Block Constructions Aust Pty Ltd
Original Assignee
W Loftus and Co Pty Ltd
Glass Block Constructions Aust Pty Ltd
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.)
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Application filed by W Loftus and Co Pty Ltd, Glass Block Constructions Aust Pty Ltd filed Critical W Loftus and Co Pty Ltd
Priority to DE60323932T priority Critical patent/DE60323932D1/de
Priority to AT03252087T priority patent/ATE410568T1/de
Priority to EP03252087A priority patent/EP1464770B1/de
Priority to ES03252087T priority patent/ES2315462T3/es
Publication of EP1464770A1 publication Critical patent/EP1464770A1/de
Application granted granted Critical
Publication of EP1464770B1 publication Critical patent/EP1464770B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C1/00Building elements of block or other shape for the construction of parts of buildings
    • E04C1/42Building elements of block or other shape for the construction of parts of buildings of glass or other transparent material

Definitions

  • This invention relates to the field of forming curved block walls, and in particular to such walls utilising glass blocks, although the invention is not limited to or exclusive to such types of blocks. Moreover, the invention relates particularly to a modular interconnecting web member as specified in the preamble of Claim 1.
  • Such a web member is known eg from US-A-5 640 818 or US-A-5 655 345 .
  • US 5,640,818 describes a glass brick wall assembly comprising a plurality of generally rectangular glass bricks arranged in horizontal runs.
  • the wall has horizontally extending elongate separation strips comprising sections connected together by hinge means so that adjacent sections are set at a pivoted position relative to one another.
  • the frame sections making up the rectangular frame are formed of straight aluminium extrusions and facilitate the laying of the glass blocks to form a precisely vertical wall with precise alignment of the blocks to ensure complete coverage of the requisite area whilst optimising the aesthetics in having regular spacing between the blocks.
  • straight frame sections is convenient and satisfactory for the construction of rectilinear walls, a problem arises when it is desired to construct a curved wall, given the rigid nature of the frame sections.
  • this curved frame 11' comprises a pair of T-bar members 13' and a transverse joiner bar 15', which is pop riveted at either end to the respective inwardly projecting toe portions 17' of the T-bars to laterally fix the bars in position and create a composite frame.
  • the T-bars 13' are rolled within a rolling machine, one bar with its toe on the inside and the other bar with its toe on the outside to achieve the requisite radius of curvature.
  • extruded aluminium bar has a temper which changes from material to material and which effects the degree of curvature arising for the same amount of applied stress to the bar. Consequently, in practice, the amount of curvature for different bars is difficult to control so as to achieve precisely the same radius of curvature for each bar.
  • a modular interconnecting web member for forming curved block walls comprising:
  • the convex end of the tongue and the concave end of the recess are knurled with teeth precisely disposed to locate and frictionally retain an interconnecting tongue and recess of adjoining members at one of a predetermined set of angular alignments when the spigot of the adjoining male end is disposed in the socket of the adjoining female end.
  • the spigot is annular having an inner aperture to accommodate a discrete locking pin, the pin being of substantially commensurate size to the aperture but having a flared portion to ensure fixed locking engagement between the spigot and the socket when corresponding male and female ends of adjoining members are interconnected and the locking pin is impressed into the aperture.
  • the inner side of the web portion has an inner flange centrally disposed between the side flanges and coextending longitudinally therewith, to reinforce the socket.
  • a transverse convex portion is disposed at the distal end of the inner flange symmetrical therewith and protruding axially from the female end, adjacent and radiused with respect to the socket; and the opposing distal end of the inner flange terminates with an abutting end, spaced from the centre point of the spigot a distance commensurate to the radius of the convex portion with respect to the socket; whereby the abutting end of one web member may be disposed in abutting relationship with the convex portion of another adjoining web member, when the spigot and socket of the respective web members are interconnected, irrespective of the relative angular relationship adopted between the adjoining web members, thereby providing and maintaining planar stability to the block supporting platforms thereof.
  • a plurality of transversely extending and opposing inner ribs are disposed on the inner side of the web portion to define a pair of tapered grooves extending longitudinally in conjunction with the side flanges, one tapered groove being disposed adjacent one side flange, and the other tapered groove being disposed adjacent to the other side flange, symmetrically about the centre of the web member, each tapered groove being provided for selectively accommodating a further discrete external flange member for forming a fin projecting externally through the common plane.
  • the side flanges are each formed with a longitudinally extending groove internally thereof for forming a screw flute to facilitate affixing the web member orthogonally to an end frame member.
  • a framing system comprising a system for constructing a curved block wall comprising:
  • the framing system includes a further external flange member for affixing to the inner side of the web member for forming an externally projecting fin that also follows the line of the track to facilitate locating the track upon a cavity wall.
  • a method for constructing a block wall comprising:
  • the method includes affixing a further external flange member to the inner side of the web members for forming an externally projecting fin that also follows the line of the track to facilitate locating the track upon a cavity wall.
  • the embodiment is directed towards a composite framing system for constructing a curved wall from glass blocks of standard design, a method for forming the framing system and the block wall, and a modular elongated web member that is integral to the system.
  • the modular interconnecting web member 11 is a specially configured element which is injection moulded from plastic.
  • the web member 11 effectively forms an elongated web portion having an outer web portion 12a and an inner web portion 12b, which when affixed to external flanges forms a composite frame section that constitutes both a sill section and a head section of a frame within which the glass blocks may be laid to construct a glass block wall matrix.
  • This elongated web portion has a male end 13, an opposing female end 15, a pair of side flanges 17, an inner side 19 and an outer side 21.
  • the male end 13 has a convexly curved and radiused tongue 23, which has a deformable spigot 25 protecting transversely thereof on the inner side 19 of the web portion.
  • the spigot 25 is annular, being provided with a central aperture 27 that extends through from the upper side 21 to the inner side 19.
  • the spigot 25 is split with three slots 29 to be deformable radially of the aperture 27.
  • the female end 15 has a concavely curved and radiused recess 31, which is of complementary size and shape to the tongue 23. As shown in the drawings, the recess 31 extends axially along the outer side 21 of the web portion to define a planar face 33 which is stepped down from the remainder of the outer surface which is contiguous with the tongue 23.
  • the female end 15 also has a socket 35 formed therein which is open on the outer side 21 of the web portion and extends transversely therethrough towards the inner side of the web portion at the centre of the recess radius.
  • the socket 35 is also formed with an annular wall 37, which is not split, but to the contrary, is reinforced by a centrally and axially extending inner flange 39 on the inner side 19 of the web portion.
  • the inner flange 39 assists with radial deformation of the socket walls 37 to facilitate locking engagement of the spigot 25 of an adjoining member, which will be described in more detail later.
  • the socket 35 is of commensurate size to the external diameter of the spigot 25 so that the spigot of an adjoining member may be positively engaged therein.
  • a transverse convex portion 38 is disposed at the distal end 39a of the inner flange 39, symmetrical therewith.
  • the outer surface of the convex portion 38 protrudes axially of the female end 15 marginally beyond the corresponding distal ends 17a of the side flanges 17, and is adjacent and radiused with respect to the socket 35.
  • the opposing distal end 39b of the inner flange 39 similarly projects marginally beyond the corresponding distal ends 17b of the side flanges 17 at the male end of the web member, and terminates with an abutting end 40.
  • the abutting end 40 is spaced from the centre axis of the spigot 25, a distance that is commensurate to the radius of the convex portion from the centre axis of the socket 35. In this manner, the abutting end 40 of one web member may be disposed in abutting relationship with the outer surface of the convex portion 38 of another adjoining web member, when the spigot and socket of the respective web members are interconnected. This will be described in further detail later.
  • the side flanges 17 coextend from the inner side 19 of the web portion and form a pair of legs for the member to stand upon a substantially planar surface when forming the framing system.
  • the side flanges 17 are equidistant so that the bottom edges 41 thereof terminate in a common plane, which is parallel to the plane defined by the outer surface 21.
  • Each of the side flanges 17 are provided with longitudinally extending grooves 43 on the outer side thereof.
  • the grooves 43 are effectively disposed at the junction between the outer web portion 12a and the inner web portion 12b.
  • the grooves 43 are sized to respectively accommodate the toe portion of an external flange member in the form of a T bar that will be described in more detail later.
  • the side flanges 17 are substantially rectangular in cross section and are formed with a series of transverse ribs 45 and flutes 47 to facilitate the moulding and strengthening thereof.
  • the side flanges are also each formed with a longitudinally extending inner groove 49 which forms a screw flute to facilitate affixing the web member orthogonally to an end frame member that will also be described in more detail later.
  • the inner side 19 of the web portion is also formed with a plurality of inner ribs 51 extending transversely from confronting faces on the inner side 17a of the side flanges 17 and the inner flange 39.
  • the distal ends of the transverse ribs 51 define a pair of tapered grooves 53, whereby the grooves are at their widest spacing 53a towards the opposing ends of each of the side flanges 17 and are at their narrowest spacing 53b adjacent the median of the side flanges.
  • the tapered grooves are provided for accommodating a further external flange member that forms a weather fin that will similarly be described in more detail later.
  • the outer side 21 of the web portion is divided into an outer web portion 12a and an inner web portion 12b.
  • the outer web portion 12a defines a planar block supporting platform and the inner web portion 12b defines a planar surface for receiving the underside of the tongue 23 of an adjoining web member.
  • the size of the step of the recess 31 is commensurate to the thickness of the tongue 23 so that when the tongue is juxtaposed with the face 33, the upper surface of the outer web portions of the adjoining members are contiguous and coplanar.
  • the convex end of the tongue 23 and the concave end of the recess 31 are both knurled with teeth 55, which are precisely disposed to locate and frictionally retain an interconnecting tongue and recess of adjoining members at one of the predetermined set of angular alignments when the spigot of the adjoining male end is disposed in the socket of the adjoining female end of two adjoining web members.
  • one web member 11 a is to be adjoined to a second web member 11 b.
  • the web member 11 a is disposed with the tongue 23 thereof above the recess 31 of the other web member 11 b at the desired angular orientation of one to the other.
  • the spigot of the one member 11 a is located within the socket of the other member and the confronting teeth 55 of the tongue and recess engaged at the requisite alignment.
  • the abutting end 40 of inner flange 39 will be brought into confronting and abutting relationship with outer surface of the convex portion 38.
  • This abutting relationship functions to provide and maintain planar stability of the block supporting platforms of the adjoining web members, irrespective of the relative angular relationship adopted between the web members.
  • a radial mark 59a is disposed on the outer edge of the tongue 23 and a corresponding mark 59b is disposed on the outer web portion adjacent the recess 31, at the requisite locations.
  • the web member 11 a is simply rotated into the correct rectangular orientation relative to the other web member 11 b on inserting the spigot 25 into the socket 35, allowing the teeth of the respective tongue and recess to engage at the appropriately aligned position.
  • the abutting end 40 will simply be angularly shifted in position along the outer surface of the convex portion 38, but will maintain its confronting and abutting relationship thereto, to provide the planar stability to the adjoining web members, irrespective of the particular angular position adopted between the two.
  • an appropriate mark 59c may be provided on the outer web portion adjacent the recess 31 that may be aligned with the mark 59a on the tongue of the member 11 a to facilitate correct orientation of the two members prior to the pin 57 being impressed to lockingly engage the members together.
  • T-bar members 65 having an intermediate toe are rolled to adopt the general curvature of the track and are malletted into position with the toe being frictionally engaged within the longitudinal grooves 43. Due to the frictional engagement, the T-bars 65 will adopt the curvature of the track as opposed to their own curvature facilitating construction of the sill.
  • An end jamb member 67 is disposed at either end of the track, whereby the jamb member abuts the corresponding end of the end web member and the threaded fasteners 69 are screwed in to position so that the shank of the fastener is accommodated within the screw flutes formed by the longitudinally extending inner grooves 49, affixing the jamb section to the track.
  • the web members are particularly sized so that the distance between successive centres of the pinned spigot and socket connections correspond to half a full block size and a full half block size. In this manner, half blocks can be used to form curved portions of the wall, as well as full blocks. In the case of full blocks following a curve, two adjoining web members will be interconnected rectilinearly and then will be angularly oriented and interconnected to a successive pair of rectilineal web members.
  • the particular sizing also permits the tongue portion of the end web member to be docked at the appropriate end of the track so that a corresponding jamb section 67 can be positioned adjacent to the remaining side flanges of the end web member so that the screw flutes provided therein can be reached by corresponding fasteners 69.
  • the T-bar 65 can be used as a further external flange inserted into the tapered groove 53 to form a weather fin.
  • the tapered nature of the groove is required to accommodate angular orientations of adjoining web members from the rectilineal position, allowing the T-bar to follow the requisite contour from one web member to the successive web member within the same groove.
  • the T-bar is retainedly grooved at the toe end and one of the flange ends so that it may be used either as a side flange member with the grooved end of the toe of the T-bar engaged within the groove 43 of the side flange 17, or a weather fin with the grooved end of the flange of the T-bar engaged within the groove 53 of the web member.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Joining Of Building Structures In Genera (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)
  • Automatic Assembly (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Claims (11)

  1. Modulares Zwischenverbindungselement (11) zum Ausbilden bogenförmiger Wände aus Blöcken, enthaltend:
    einen länglichen Verbindungsabschnitt (12a, 12b), dadurch gekennzeichnet, dass er über ein Steckerende (13), ein gegenüberliegendes Kupplungsende (15), ein Paar Seitenflansche (17), die sich gemeinsam von einer Innenseite (19) des Verbindungsabschnittes (12a, 12b) erstrecken und ein Paar Schenkel bildet, damit das Element auf einer im wesentlichen planen Oberfläche stehen kann, und eine Blockauflagerfläche verfügt, die auf der Außenseite (21) des Verbindungsabschnittes vorgesehen ist;
    wobei das Steckerende (13) eine konvex abgerundete und kreisförmige Zunge (23) und einen verformbaren Zapfen (25) hat, der quer zur Zunge von der Innenseite (19) des Verbindungsabschnittes am Zentrum des Zungenradius' hervorragt, und das Kupplungsende (15) eine konkav gekrümmte konkav abgerundete und kreisförmige Aussparung (31) komplementärer Größe und Form zur Zunge (23) sowie eine Buchse (35), die auf der Außenseite (21) des Verbindungsabschnittes geöffnet ist und sich querverlaufend zu diesem hindurch zur Innenseite (19) des Verbindungsabschnittes am Zentrum des ausgenommenen Radius' erstreckt, enthält; und
    die Flansche (17) jeweils eine in Längsrichtung verlaufenden Rille (43) auf ihrer Außenseite (43) enthalten, um jeweils ein separates externes Flanschelement (65) entlang der Außenseite des Verbindungsabschnittes aufzunehmen;
    wobei das Steckerende (13) des Verbindungselementes verriegelnd mit dem Kupplungsende (15) eines weiteren Verbindungselementes verbunden werden kann, wobei die Zunge (23) und der Zapfen (25) in die Ausnehmung bzw. die Buchse (35) mit Reibungspassung einrasten, wobei das eine Verbindungselement in einer beliebigen relativen Winkelanordnung im Bezug auf das andere Verbindungselement um die Zapfen- und Buchsenverbindung angeordnet ist;
    wobei die Blockauflagerplattformen eine zusammenhängende, im wesentlichen plane Oberfläche auf der Außenseite (21) der Zwischenverbindungselemente (11) bilden und die Bodenränder (41) der sich gemeinsam erstreckenden Flansche (17) jedes Elementes in einer gemeinsamen Ebene enden.
  2. Modulares Zwischenverbindungselement (11) nach Anspruch 1, bei dem das konvexe Ende der Zunge (23) und das konkave Ende der Aussparung (31) mit Zähnen (55) gerändelt sind, die präzise ausgebildet sind, um eine Zwischenverbindungszunge und eine Ausnehmung von aneinander grenzenden Elementen an einer einer vorbestimmten Anordnung von Winkelausrichtungen anzuordnen und durch Reibung festzuhalten, wenn sich der Zapfen (25) des angrenzenden Steckerendes (13) in der Buchse (35) des angrenzenden Kupplungsendes (15) befindet.
  3. Modulares Zwischenverbindungselement (11) nach Anspruch 1 oder 2, bei dem der Zapfen (25) ringförmig ist und eine Innenöffnung (27) aufweist, um einen separaten Arretierstift (57) aufzunehmen, wobei der Arretierstift (57) eine im wesentlichen angemessene Größe für die Öffnung hat, jedoch einen gebördelten Abschnitt aufweist, um eine feste Verriegelungsverbindung zwischen dem Zapfen (25) und der Buchse (35) sicherzustellen, wenn jeweilige Stecker- und Kupplungsenden aneinander grenzender Elemente miteinander verbunden sind und der Arretierstift (57) in die Öffnung (27) gepresst Ist.
  4. Modulares Zwischenverbindungselement (11) nach einem der vorhergehenden Ansprüche, bei dem die Innenseite (19) des Verbindungsabschnittes einen Innenflansch hat, der zentral zwischen den Flanschen (17) angeordnet ist und sich zusammen mit diesem in Längsrichtung erstreckt, um die Buchse (35) zu verstärken.
  5. Modulares Zwischenverbindungselement (11) nach Anspruch 4, enthaltend einen querverlaufenden konvexen Abschnitt (38), der am äußersten Ende des Innenflansches (39) symmetrisch dazu angebracht ist und axial vom Kupplungsende (15) hervorragt, benachbart und abgerundet im Bezug auf die Buchse (35); und wobei das gegenüberliegende äußerste Ende (39b) des Innenflansches (39) in einem Anschlagende (40) endet, das von der Mittelachse des Zapfens (25) in einem geeigneten Abstand zum Radius des konvexen Abschnittes (38) von der Mittelachse der Buchse beabstandet ist; wodurch das Anschlagende (40) eines Verbindungselementes in anschlagender Beziehung mit dem konvexen Abschnitt (38) eines weiteren angrenzenden Verbindungselementes angeordnet sein kann, wenn der Zapfen (25) und die Buchse (35) der entsprechenden Verbindungselemente miteinander verbunden sind, unabhängig von der relativen Winkelbeziehung, die zwischen aneinander grenzenden Verbindungselementen eingenommen ist, wodurch eine Flächenstabilität für die Blockauflagerflächen derselben gegeben und beibehalten wird.
  6. Modulares Zwischenverbindungselement (11) nach einem der vorhergehenden Ansprüche, enthaltend eine Vielzahl in Querrichtung verlaufender und gegenüberliegender Innenstege (51), die auf der Innenseite (19) des Verbindungsabschnittes angeordnet sind, um ein Paar abgeschrägter Rillen (53) zu bilden, die sich in Längsrichtung in Verbindung mit den Flanschen (17) erstrecken, wobei eine abgeschrägte Rille benachbart zu einem Seitenflansch und die andere abgeschrägte Rille benachbart zum anderen Seitenflansch, symmetrisch um das Zentrum des Verbindungselementes angeordnet sind, wobei jede abgeschrägte Rille vorgesehen ist, um wahlweise ein weiteres separates externes Flanschelement aufzunehmen, um eine Rippe zu bilden, die nach außen durch die gemeinsame Ebene hervorragt.
  7. Modulares Zwischenverbindungselement (11) nach einem der vorhergehenden Ansprüche, bei dem die Seitenflansche (17) jeweils mit einer sich in Längsrichtung erstreckenden Rille (49) im Inneren derselben ausgebildet sind, um eine Schraubennut auszubilden, mit der das Verbindungselement orthogonal an einem Stirnrahmenelement befestigt werden kann.
  8. Wandbausystem zum Errichten einer Bogenförmigen Wand aus Blöcken, enthaltend:
    ein modulares Zwischenverbindungselement (11) nach einem der vorhergehenden Ansprüche zum Ausbilden einer Spur (61), entlang derer die Blöcke (63) ausgelegt werden können, wobei das Element gegenüberliegende Teile einer formschlüssigen Verriegelungseinrichtung an gegenüberllegenden Enden desselben aufweist, so dass die Elemente hintereinander miteinander verbunden werden können, um die Spur in vorgeschriebenen Winkelausrichtungen zueinander auszubilden; und
    ein Paar externer Flanschelemente (65), von denen eines auf jeder Seite des Verbindungselementes befestigt wird, so dass die Flanschelemente die vorgeschriebene Winkelausrichtung der Verbindungselemente (11) einnehmen, wenn sie verbunden sind;
    wobei sich die externen Flansche (65) mit den Verbindungselementen zusammenschließen, um mit diesen einen Kanal zu bilden, in dem sich die Enden eines Blocks befinden können, um der Linie der Spur zu folgen.
  9. Wandbausystem nach Anspruch 8, bei dem das Wandbausystem ein weiteres externes Flanschelement (65) enthält, das an der Innenseite (19) des Befestigungselementes befestigt wird, um eine nach innen hervorragende Rippe auszubilden, die ebenfalls der Linie der Spur (61) folgt, um eine Anordnung der Spur auf einer Hohlraumwand zu erleichtern.
  10. Verfahren zum Errichten einer Wand aus Blöcken, umfassend:
    auslegen einer Spur (61) modularer Zwischenverbindungselemente (11) nach einem der Ansprüche 1 bis 7 entlang einer Oberfläche, auf der die Wand errichtet werden soll;
    festes Verriegeln der benachbarten Verbindungselemente (11) miteinander in einer vorgeschriebenen Winkelanordnung entsprechend der beabsichtigten Linie und Krümmung der Wand;
    Befestigen der externen Flanschelemente (65) an jeder Seite der Spur (61), so dass die Flanschelemente die vorgeschriebene Linie der Krümmung der Spur einnehmen und einen Kanal erzeugen, in dem sich die Enden der Blöcke befinden können, um der Linie der Spur zu folgen.
  11. Verfahren nach Anspruch 10, enthaltend das Befestigen eines weiteren externen Flanschelementes (65) an der Innenseite (19) der Verbindungselemente (11), um eine nach außen hervorragende Rippe auszubilden, die ebenfalls der Linie der Spur (61) folgt, um eine Anordnung der Spur auf einer Hohlraumwand zu erleichtern.
EP03252087A 2003-04-02 2003-04-02 Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement Expired - Lifetime EP1464770B1 (de)

Priority Applications (4)

Application Number Priority Date Filing Date Title
DE60323932T DE60323932D1 (de) 2003-04-02 2003-04-02 Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement
AT03252087T ATE410568T1 (de) 2003-04-02 2003-04-02 Rahmensystem und verfahren zur herstellung gebogenener wände aus blöcken und verbindungselement
EP03252087A EP1464770B1 (de) 2003-04-02 2003-04-02 Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement
ES03252087T ES2315462T3 (es) 2003-04-02 2003-04-02 Sistema de armadura y procedimiento para formar paredes curvas en bloques, y elemento de ensamblaje de interconexion para el mismo.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP03252087A EP1464770B1 (de) 2003-04-02 2003-04-02 Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement

Publications (2)

Publication Number Publication Date
EP1464770A1 EP1464770A1 (de) 2004-10-06
EP1464770B1 true EP1464770B1 (de) 2008-10-08

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EP03252087A Expired - Lifetime EP1464770B1 (de) 2003-04-02 2003-04-02 Rahmensystem und Verfahren zur Herstellung gebogenener Wände aus Blöcken und Verbindungselement

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EP (1) EP1464770B1 (de)
AT (1) ATE410568T1 (de)
DE (1) DE60323932D1 (de)
ES (1) ES2315462T3 (de)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101506449B (zh) 2006-06-28 2015-04-01 弗莱克斯-厄彼理蒂概念公司 形成弯曲结构的装置和方法
US7941983B2 (en) 2006-11-17 2011-05-17 Flex-Ability Concepts, L.L.C. Apparatus and methods of forming a curved structure

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AUPM874394A0 (en) * 1994-10-12 1994-11-03 Wirkus, Michelle Ann Improvements to brick walls
US5655345A (en) * 1995-09-18 1997-08-12 Thompson; Earl G. Curved wall glass block assembly
AUPR581601A0 (en) 2001-06-19 2001-07-12 Glass Block Constructions (Aust) Pty Ltd Construction system and frames therefor for glass block walls

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Publication number Publication date
ES2315462T3 (es) 2009-04-01
EP1464770A1 (de) 2004-10-06
ATE410568T1 (de) 2008-10-15
DE60323932D1 (de) 2008-11-20

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