EP1106745A2 - Vorgefertigtes Deckenelement mit geschäumtem Polyurethan sowie Herstellverfahren - Google Patents
Vorgefertigtes Deckenelement mit geschäumtem Polyurethan sowie Herstellverfahren Download PDFInfo
- Publication number
- EP1106745A2 EP1106745A2 EP00102569A EP00102569A EP1106745A2 EP 1106745 A2 EP1106745 A2 EP 1106745A2 EP 00102569 A EP00102569 A EP 00102569A EP 00102569 A EP00102569 A EP 00102569A EP 1106745 A2 EP1106745 A2 EP 1106745A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- ceiling
- concrete
- lattice girders
- reinforced concrete
- end sections
- 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.)
- Withdrawn
Links
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04C—STRUCTURAL ELEMENTS; BUILDING MATERIALS
- E04C2/00—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
- E04C2/02—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
- E04C2/04—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres
- E04C2/044—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres of concrete
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B5/00—Floors; Floor construction with regard to insulation; Connections specially adapted therefor
- E04B5/02—Load-carrying floor structures formed substantially of prefabricated units
- E04B5/023—Separate connecting devices for prefabricated floor-slabs
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B5/00—Floors; Floor construction with regard to insulation; Connections specially adapted therefor
- E04B5/02—Load-carrying floor structures formed substantially of prefabricated units
- E04B5/04—Load-carrying floor structures formed substantially of prefabricated units with beams or slabs of concrete or other stone-like material, e.g. asbestos cement
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04C—STRUCTURAL ELEMENTS; BUILDING MATERIALS
- E04C2/00—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
- E04C2/02—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
- E04C2/04—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres
- E04C2/049—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres completely or partially of insulating material, e.g. cellular concrete or foamed plaster
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04C—STRUCTURAL ELEMENTS; BUILDING MATERIALS
- E04C2/00—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
- E04C2/02—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
- E04C2/04—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres
- E04C2/06—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials of concrete or other stone-like material; of asbestos cement; of cement and other mineral fibres reinforced
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04C—STRUCTURAL ELEMENTS; BUILDING MATERIALS
- E04C2/00—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
- E04C2/02—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials
- E04C2/26—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups
- E04C2/284—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups at least one of the materials being insulating
- E04C2/288—Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels characterised by specified materials composed of materials covered by two or more of groups E04C2/04, E04C2/08, E04C2/10 or of materials covered by one of these groups with a material not specified in one of the groups at least one of the materials being insulating composed of insulating material and concrete, stone or stone-like material
Definitions
- the invention relates to a prefabricated ceiling element as a prefabricated component.
- the invention relates to a reinforced concrete ceiling, the several such ceiling elements contains.
- the ceiling elements are in a manufacturing company for prefabricated elements produced and then transported to a construction site, where they are in a Buildings are used, preferably put together to a basement ceiling become.
- the invention further relates to a method for producing the ceiling element as a prefabricated component.
- Reinforced concrete ceilings are based on building regulations, standards and technical Rules made significant demands. The most important are one high load-bearing capacity according to structural requirements, high fire resistance, Sound insulation measures to suppress airborne noise and Impact sound and high thermal insulation. More requirements, the more relate to production, assembly and economic aspects, are the production of the reinforced concrete ceiling in an economical production process and a low use of materials. Furthermore, in the event that prefabricated Ceiling elements are used as prefabricated components, the transport weight of the ceiling elements to be low to these ceiling elements from the manufacturing company to be able to be transported economically to the construction site.
- the ceiling elements should be technically simple and economical on the construction site Allow installation to a reinforced concrete ceiling. Furthermore, the Ceiling elements can be used flexibly for different types of buildings his.
- thermal insulation is one of the most important Become criteria for ceiling systems.
- the general goal is that in the Thermal insulation ordinance to exceed the specified thermal insulation values. Around To achieve this becomes a high technical level with previous ceiling systems Effort. This effort is mainly incurred on the construction site and contradicts thus the technical trend towards factory prefabrication. Thermal protection Local measures also represent a significant economic Disadvantage.
- the lattice girders serve both as reinforcement in structural engineering Sense as well as a spacer between the two concrete slices.
- the Lattice girders therefore have a double function.
- the lattice girders are made accordingly designed to meet structural requirements. These lattice girders serve as Truss girders and serve to transmit thrust to the middle and End support of the ceiling element.
- the lattice girders form small thermal bridges between the two washers, however, is the cross section of the steel elements the lattice girder is relatively small, so that the heat flow is also relatively small.
- the cavity that results between the two disks is already in the Production foamed with polyurethane foam.
- the cured polyurethane layer supports the structural function of the lattice girders and the concrete panels.
- Such production can be advantageous on a circulating pallet system take place economically in production.
- the required thermal insulation can be adjusted via the thickness of the polyurethane layer.
- a relatively light, prefabricated ceiling construction is achieved, which is only slight Has thermal bridges. This can save a significant amount of energy can be achieved.
- the ceiling elements can be large-format as prefabricated components getting produced. As a result, they can be opened relatively easily and quickly the construction site. Elaborate concreting work is thus kept to a minimum reduced.
- a reinforced concrete ceiling is also specified, the several contains such ceiling elements as prefabricated components.
- a reinforced concrete ceiling can be used variably because of the overall height and the design of the lattice girders can be chosen according to the structural requirements.
- the large-format ceiling elements have due to their manufacturing method in the production plant good flatness. This flatness is for further expansion of the building is of great advantage because of the usual leveling can be dispensed with.
- the invention relates to a method for producing a ceiling element as a prefabricated component according to the features of claim 11.
- a second is applied to the cured polyurethane foam Concrete disc concreted, the end sections of those protruding from the polyurethane foam Lattice girders.
- the cured polyurethane foam serves So in the production as a carrier for the initially liquid concrete layer second concrete disc.
- the cured polyurethane foam sufficient structural stability for that of polyurethane foam Enclosed lattice girder forms, so that for the entire ceiling element sufficient ability to absorb horizontal pulling and pushing forces given is.
- the surface just subtracted so that this surface as the outer surface of the ceiling element can be easily treated further.
- FIG. 1 shows schematically the structure of a prefabricated ceiling element as Prefabricated component.
- the ceiling element comprises a lower disk 10 made of reinforced concrete and an upper plate 12 made of reinforced concrete.
- each disc 10, 12 there are end sections concreted by lattice girders 14, i.e. the longitudinal bars 15a and cross bars 15b and associated welded strut nodes 15c are completely embedded in concrete.
- Both the lower disk 10 and the upper disk 12 are through Round bars arranged crosswise, some of which are designated 15 by way of example are reinforced.
- prefabricated reinforcing steel mesh can be used as reinforcement be provided.
- In the cavity 16 between the two disks 10, 12 is filled with polyurethane foam during the production, which hardens.
- a total thickness D of 200 to 300 mm for an application example as a basement ceiling element.
- Typical values for the length L are ⁇ 12 m and for the width B ⁇ 3m.
- FIG. 2 shows a cross section through the ceiling element. Same parts are called the same. Between the lower disc 10 and the upper disc 12 the cavity 16 is completely filled with polyurethane. The lattice girders 14 form thermal bridges between the two panes 10, 12. Because of the Small cross sections of the lattice girder 14 is the heat flow between the two Disks 10, 12 relatively small, so that the polyurethane layer as a heat insulating Layer comes into effect. In this way, high thermal insulation with relatively low weight and simple construction of the ceiling element reached. It can be clearly seen in FIG. 2 that both the lower disk 10 as well as the upper disc 12 is reinforced by round steels 15, which act as longitudinal reinforcement and as transverse reinforcement the structural requirements for a Help meet blanket.
- Figure 3 shows a cross section through the ceiling element.
- the polyurethane layer has a recess in the area 20.
- this recess 20 there is steel reinforcement introduced with longitudinal rods 22 in the longitudinal direction.
- the density of the lattice girders 14 is also increased. That way achieved a static increase in the ceiling load capacity in this area 20.
- Figure 4 shows a longitudinal section through the ceiling element.
- a transverse reinforcement with cross bars 24 is introduced in the area of the recess 20. This Cross reinforcement increases the load-bearing capacity in the transverse direction.
- Figure 5 shows the complete structure of a reinforced concrete ceiling, the two ceiling elements 30, 32 includes.
- the reinforced concrete ceiling is a basement ceiling and sits on Edges on outer walls, e.g. the wall 34 on.
- Around the circumference of the reinforced concrete ceiling a circumferential ring belt reinforcement 36 is attached.
- At butt sections is a connecting element between the two ceiling elements 30, 32 38 arranged.
- On a longitudinal joint surface 40 between the ceiling elements 30, 32, a further connecting element 42 is provided, which the ceiling elements 30, 32 connects to one another in the direction of the longitudinal axis.
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Building Environments (AREA)
- Casting Or Compression Moulding Of Plastics Or The Like (AREA)
Abstract
Description
- Figur 1
- schematisch den Aufbau eines Deckenlements,
- Figur 2
- einen Querschnitt durch das Deckenlement nach Figur 1 mit ausgeschäumtem Hohlraum,
- Figur 3
- einen Querschnitt durch das Deckenelement, wobei in einer Ausnehmung in der Polyurethanschicht eine Bewehrung in Längsrichtung vorgesehen ist,
- Figur 4,
- einen Längsschnitt mit in einer Ausnehmung verstärktem Querträger, und
- Figur 5
- eine Stahlbetondecke mit zwei Deckenelementen, die miteinander verbunden sind.
Claims (14)
- Vorgefertigtes Deckenelement als Fertigbauteil,dadurch gekennzeichnet, daß zwei Scheiben (10, 12) aus Stahlbeton durch mehrere Gitterträger (14) im Abstand voneinander gehalten sind,daß Endabschnitte der Gitterträger (14) in der jeweiligen Scheibe (10, 12) einbetoniert sind,und daß der Raum zwischen den Scheiben (10, 12) vollständig mit geschäumtem Polyurethan ausgefüllt ist.
- Deckenelement nach Anspruch 1, dadurch gekennzeichnet, daß der Raum zwischen den Scheiben (10, 12) Ausnehmungen (20) im ausgehärteten Polyurethan hat, in denen Querträger (24) und/oder Längsträger (22) aus Stahlbeton angeordnet sind.
- Deckenelement nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß mindestens eine der Scheiben (10,12), vorzugsweise beide Scheiben, eine Bewehrung (15) aus Stahl enthält.
- Deckenelement nach Anspruch 3, dadurch gekennzeichnet, daß als Bewehrung kreuzweise angeordnete Rundstähle (15) vorgesehen sind.
- Deckenelement nach Anspruch 3 oder 4, dadurch gekennzeichnet, daß als Bewehrung vorgefertigte Betonstahlmatten vorgesehen sind.
- Deckenelement nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die Endabschnitte der Gitterträger zumindest die Längsstäbe (15a) mit angeschweißten Strebenknoten (15c) umfassen.
- Stahlbetondecke, dadurch gekennzeichnet, daß sie mehrere Deckenelemente (30, 32) nach einem der vorhergehenden Ansprüche 1 bis 5 enthält.
- Stahlbetondecke nach Anspruch 7, dadurch gekennzeichnet, daß sie einen Ringgurt (36) mit Koppelschloß enthält, welcher die Deckenelemente (30, 32) umfangsseitig untereinander verbindet.
- Stahlbetondecke nach einem der Ansprüche 7 oder 8, dadurch gekennzeichnet, daß sie in Richtung der Längsachse integrierte Verbindungselemente (38) enthält, welche die einzelnen Deckenelemente (30, 32) in Richtung der Längsachse untereinander verbindet.
- Stahlbetondecke nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß sie als Kellerdecke oder Geschoßdecke verwendet wird.
- Verfahren zum Herstellen eines Deckenelements als Fertigbauteil,bei dem eine erste Betonscheibe (10) bereitgestellt wird, in die Endabschnitte von Gitterträgern (14) einbetoniert sind,auf diese erste Betonscheibe (10) mit den hervorstehenden Gitterträgern (14) Polyurethanschaum bis zu einer Höhe aufgetragen wird, daß Endabschnitte der Gitterträger (14) noch aus dem Polyurethanschaum hervorragen,anschließend der Polyurethanschaum ausgehärtet wird,und bei dem auf den ausgehärteten Polyurethanschaum eine zweite Betonscheibe (12) betoniert wird, welche die hervorstehenden Endabschnitte der Gitterträger (14) enthält.
- Verfahren nach Anspruch 11, dadurch gekennzeichnet, daß die Endabschnitte der Gitterträger (14) zumindest Längststäbe (15a) mit angeschweißten Strebenknoten (15c) umfassen.
- Verfahren nach Anspruch 11 oder 12, dadurch gekennzeichnet, daß mindestens eine der Betonscheiben (10, 12) vorzugsweise beide Scheiben, eine Bewehrung (15) aus Stahl enthält.
- Verfahren nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die Oberseite der zweiten Betonscheibe nach dem Auftragen des Betons eben abgezogen wird.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE29921645U | 1999-12-09 | ||
DE29921645U DE29921645U1 (de) | 1999-12-09 | 1999-12-09 | Vorgefertigtes Deckenelement mit geschäumtem Polyurethan |
Publications (2)
Publication Number | Publication Date |
---|---|
EP1106745A2 true EP1106745A2 (de) | 2001-06-13 |
EP1106745A3 EP1106745A3 (de) | 2001-08-22 |
Family
ID=8082717
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP00102569A Withdrawn EP1106745A3 (de) | 1999-12-09 | 2000-02-07 | Vorgefertigtes Deckenelement mit geschäumtem Polyurethan sowie Herstellverfahren |
Country Status (2)
Country | Link |
---|---|
EP (1) | EP1106745A3 (de) |
DE (1) | DE29921645U1 (de) |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1422356A1 (de) * | 2002-11-21 | 2004-05-26 | Schwörer Haus KG | Fertigbauteil mit Dämmaterial und in Beton eingebetteten Heizleitungen sowie zugehöriges Herstellungsverfahren |
EP1529893A2 (de) | 2003-09-10 | 2005-05-11 | Schwörer Haus KG | Deckenelement als Halbfabrikat und zugehöriges Herstellverfahren |
DE10348767B3 (de) * | 2003-10-21 | 2005-09-15 | Wahls, Manfred, Dipl.-Ing. | Verfahren zur Herstellung einer Kerndämmstoff-Verbunddecke sowie Kerndämmstoff-Verbunddecke |
ITMI20100071A1 (it) * | 2010-01-21 | 2011-07-22 | Isoltech Srl | Manufatto per solai prefabbricati. |
EP2767373A1 (de) | 2013-02-15 | 2014-08-20 | Bayer MaterialScience AG | Verfahren zur Herstellung eines mehrschichtigen, bewehrten Betonelements |
CN111535490A (zh) * | 2020-05-11 | 2020-08-14 | 中力建设集团有限公司 | 一种装配式楼板及其施工方法 |
US11053675B1 (en) * | 2018-11-17 | 2021-07-06 | Juan Jose Santandreu | Construction panel and construction panel assembly with improved structural integrity |
US11085186B2 (en) * | 2017-07-04 | 2021-08-10 | Shandong University | Thermal-insulated exterior wall boards, dedicated molds and making methods thereof |
EP4481129A1 (de) * | 2023-06-23 | 2024-12-25 | Marijus Seduikis | Vorgefertigtes baukit, verfahren zur herstellung dieses kits und verfahren zur konstruktion eines gebäudes mit diesem baukit |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE10116976A1 (de) * | 2001-04-05 | 2002-10-10 | Hofmann Gmbh & Co | Selbsttragendes Deckenelement und Verfahren zu dessen Herstellung |
DE10300024A1 (de) * | 2003-01-03 | 2004-07-22 | Neu, Jörg | Bauelement für den Wohnungs- und Gesellschaftsbau |
FR2939817B1 (fr) * | 2008-12-11 | 2016-12-30 | Adrien Sarnari | Bloc elementaire prefabrique pour la construction d'un mur a isolation exterieure |
Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19823387A1 (de) | 1997-07-01 | 1999-01-28 | Joachim Glatthaar | Verfahren zur Herstellung einer Fertigteilwand für die Erstellung von Gebäuden |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR2329816A1 (fr) * | 1975-10-30 | 1977-05-27 | Selam | Element de plancher prefabrique isolant et coupe-feu |
FR2355137A1 (fr) * | 1976-06-15 | 1978-01-13 | Otce Omnium Tech Etu Const Equ | Element prefabrique de couverture ou de plancher |
DE3610030C1 (de) * | 1986-03-25 | 1987-02-05 | Rapp Albert Bruno | Bauelement fuer Hochbauwerke |
AT396274B (de) * | 1991-04-23 | 1993-07-26 | Avi Alpenlaendische Vered | Bewehrungskoerper fuer eine deckenplatte |
JPH1025854A (ja) * | 1996-07-12 | 1998-01-27 | Jiyoisuto:Kk | 軽量コンクリート板 |
EP0940516A1 (de) * | 1998-03-06 | 1999-09-08 | Structherm Ltd | Bauplatte |
-
1999
- 1999-12-09 DE DE29921645U patent/DE29921645U1/de not_active Expired - Lifetime
-
2000
- 2000-02-07 EP EP00102569A patent/EP1106745A3/de not_active Withdrawn
Patent Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19823387A1 (de) | 1997-07-01 | 1999-01-28 | Joachim Glatthaar | Verfahren zur Herstellung einer Fertigteilwand für die Erstellung von Gebäuden |
Cited By (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP1422356A1 (de) * | 2002-11-21 | 2004-05-26 | Schwörer Haus KG | Fertigbauteil mit Dämmaterial und in Beton eingebetteten Heizleitungen sowie zugehöriges Herstellungsverfahren |
EP1529893A2 (de) | 2003-09-10 | 2005-05-11 | Schwörer Haus KG | Deckenelement als Halbfabrikat und zugehöriges Herstellverfahren |
EP1529893A3 (de) * | 2003-09-10 | 2006-06-07 | Schwörer Haus KG | Deckenelement als Halbfabrikat und zugehöriges Herstellverfahren |
EP2749704A2 (de) | 2003-09-10 | 2014-07-02 | Schwörer Haus KG | Deckenelement als Halbfabrikat und zugehöriges Herstellverfahren |
EP2749704A3 (de) * | 2003-09-10 | 2014-09-10 | Schwörer Haus KG | Deckenelement als Halbfabrikat und zugehöriges Herstellverfahren |
DE10348767B3 (de) * | 2003-10-21 | 2005-09-15 | Wahls, Manfred, Dipl.-Ing. | Verfahren zur Herstellung einer Kerndämmstoff-Verbunddecke sowie Kerndämmstoff-Verbunddecke |
ITMI20100071A1 (it) * | 2010-01-21 | 2011-07-22 | Isoltech Srl | Manufatto per solai prefabbricati. |
EP2767373A1 (de) | 2013-02-15 | 2014-08-20 | Bayer MaterialScience AG | Verfahren zur Herstellung eines mehrschichtigen, bewehrten Betonelements |
US11085186B2 (en) * | 2017-07-04 | 2021-08-10 | Shandong University | Thermal-insulated exterior wall boards, dedicated molds and making methods thereof |
US11053675B1 (en) * | 2018-11-17 | 2021-07-06 | Juan Jose Santandreu | Construction panel and construction panel assembly with improved structural integrity |
CN111535490A (zh) * | 2020-05-11 | 2020-08-14 | 中力建设集团有限公司 | 一种装配式楼板及其施工方法 |
EP4481129A1 (de) * | 2023-06-23 | 2024-12-25 | Marijus Seduikis | Vorgefertigtes baukit, verfahren zur herstellung dieses kits und verfahren zur konstruktion eines gebäudes mit diesem baukit |
Also Published As
Publication number | Publication date |
---|---|
EP1106745A3 (de) | 2001-08-22 |
DE29921645U1 (de) | 2000-02-17 |
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