EP2694745B1 - Modulares system von bausteinen - Google Patents

Modulares system von bausteinen Download PDF

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Publication number
EP2694745B1
EP2694745B1 EP12721705.7A EP12721705A EP2694745B1 EP 2694745 B1 EP2694745 B1 EP 2694745B1 EP 12721705 A EP12721705 A EP 12721705A EP 2694745 B1 EP2694745 B1 EP 2694745B1
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Prior art keywords
dovetail
blocks
building blocks
building
modular system
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EP12721705.7A
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English (en)
French (fr)
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EP2694745A2 (de
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Zdenek KRIVINKA
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D29/00Independent underground or underwater structures; Retaining walls
    • E02D29/02Retaining or protecting walls
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D29/00Independent underground or underwater structures; Retaining walls
    • E02D29/02Retaining or protecting walls
    • E02D29/025Retaining or protecting walls made up of similar modular elements stacked without mortar

Definitions

  • a modular system of building blocks especially of construction precast units for buttress or dividing walls, containing a pair of single building parts having unit height of which each building part is furnished with one part of dovetail joint for mutual connection of single building parts by means of dovetail joint while first of the pair of the building parts is a face plate and second of the pair of the building parts is a coupling block.
  • the building industry uses a complete line of precast means with aim to simplify construction works performed at construction site and at the same time to meet the required quality of the construction. For example considering the construction of residential and similar buildings, or construction of industrial objects, the requirements for used building parts can be correctly set.
  • Blocks that after erection make a horizontal cavity are the solution according to CZ 2001-4554 A3 .
  • a raglet is in direction of cavity on upper block, a longitudinal projection in direction of cavity matching with section the raglet on upper surface is on the block lower surface.
  • Layers of blocks are inserted into one another by the longitudinal projection and raglet in direction of constructed wall.
  • a continuos strain moulding can be inserted in the raglet under which in a certain length of the constructed wall a reinforcing mesh (for example geotextile) is inserted which is behind the backing side of the wall covered with earth by which the wall is anchored in the earth.
  • Blocks according to CZ 20854 U1 are equipped with raglet in upper surface and with spring in the lower surface in horizontal direction considering the constructed wall.
  • a longitudinal holder of geogrid which is attached to holder noses can be put into the raglet.
  • the geogrid is basically horizontally anchored in the earth fill at wall backing side.
  • Identical shape blocks with horizontal upper and lower surfaces are situated horizontally according to CZ 289189 B6 .
  • There are holes for pins in the upper part its free ends rise from the upper surface, in the lower part there are approximately triangular cavities with inlet port significantly larger that diameter of pins.
  • Large through cavities of blocks of constructed wall form joint, basically vertical cavities over the complete wall height that are later connected with bar shaped armatures and concrete compound.
  • Block side walls are uneven which enables to form direct, waved or curved layers from the blocks. Particular layers are bound together with pins inserted in the holes and/or raglets in upper and/or lower surfaces. Some of the blocks have through big cavities to reduce the weight and also they can be used for concrete compound connecting more layers.
  • CZ- EP 1415053 T3 suggests blocks with horizontal upper and lower surfaces and same width (distance of face and backing surface of the block) matching thickness of the wall.
  • Block side walls are out of parallel, which enables to form direct, waved or curved layers from the blocks.
  • direct raglets are created in longitudinal direction of the wall, holes for guide pins in upper surface and in side walls alternatively vertical direct raglets and vertical direct projections.
  • large vertical cavities are formed for placing vertical reinforcing means and/or concrete compound; by reinforcing rods laid in the raglets in upper surfaces of the blocks the lines of blocks can also be bound in one layer of the blocks.
  • Ashlar shaped monoblocks with large cavity oriented vertically in view of block orientation in the built wall are subject to protection according to FR 2658217 A1 .
  • All four or at least two opposed vertical walls are equipped with vertical dovetail raglets and/or matching projections.
  • dovetail raglets are formed in two opposed walls of one group of blocks while other groups of blocks have matching projections.
  • a quite large mutual insert play is between the raglets and projections.
  • the blocks are used for construction of outside curved coupled buttress wall, while the tight raglets and matching projections on two other surfaces of other blocks enable assembly of anchoring wall connected with the outside wall.
  • the anchor walls rise from the outside buttress wall radially, the mutual radial gaps are filled with earth.
  • Relatively flat large blocks with lightening cavities according to FR 2729409 A1 are designed for construction of vertical or skew buttress walls.
  • a wedge-shaped raglet in form of equal trapezoid is formed over the block complete height in the central part of the blocks while one block side wall has same falling like the trapezoid side slope of the wedge-shaped raglet.
  • Wedges in shape of this raglet are part of the construction while length of one wedge side is approximately a double of block height. Every two adjacent blocks laying on one another can be coupled by the wedge.
  • a vertical wall is constructed using the wedges, if they are oriented with wider part of the raglet down, a skew wall is constructed using the wedges with falling matching the falling of the trapezoid wall.
  • US 4990032 suggests a buttress wall formed by "left” and “right” blocks with face surface. On the opposed side there are aligned potent anchoring shaped ribs open in direction into earth fill. In an alternative version the open ribs are equipped with horizontal raglets into which horizontal anchors formed by steel reinforcing grids can be fixed after construction of the wall.
  • Reinforcing means for less sloped fills are designed by US 5174688 .
  • the system includes hollow deflection tough blocks with plane face wall, backside is formed by a flat arch which is coupled in the place of arch biggest deflection with face wall centre by means of a cross-bar.
  • Particular block lines located in the longitudinal direction of the fill are coupled with concrete bars oriented into the earth, the single block lines are distant from one another for rod length forming thus "stairs" determining falling of the fill.
  • the height of single step is formed by two panels placed at each other. The panels are mutually coupled with rods equipped with holes in the ends for placing anchoring vertical pins sunk into the earth.
  • the wall interior is in addition poured with concrete.
  • the buttress wall is formed by one layer of blocks creating thus a face while by means of ribs, vertical armature and by long anchor rods coupled with it fixed in earth fill at backing side eventually in concrete compound between the earth and blocks.
  • the solution according to US 5688078 is suitable only for the buttress wall. It contains basically vertical face part formed by layers of face plates that have in their backing side a blind dovetail raglet in which a longitudinal rib is always inserted that has one dovetail spring at each vertical edge. With one spring the rib is coupled with dovetail raglet of the face plate in a way it is put vertically to it, on the second spring other construction elements of the buttress wall can be coupled in direction from the face plate. Number of joints of particular elements reduces toughness of the buttress wall structure and increases number of construction elements. Considering the blind dovetail raglet in face plates the particular layers are not vertically coupled which is one of the signs of the protected solution.
  • CN 201292599 Y creates by means of dovetail joints cladding sandwiches formed by thin external bearing plates, a thermal insulation board is placed between them.
  • Solution according to DE29601827 U1 describes two-piece building block for building of vertical walls.
  • One its part forms a face plate, of back (reverse) side of which there gets out at least one perpendicular transverse wall.
  • this cross wall is connected, by means of vertical dove-tail-shaped recesses, with back concrete plate which is in connected state parallel with the face plate.
  • High of both parts is the same.
  • This solution cannot be used as blocks, which would be designed for buttress wall build by dry-walling from block.
  • US 4090298 A describes general connection of beams, that is mutual connection of ceiling joist with ceiling beams by means of dove-tail-shaped recesses, which is narrowing downwards, so the dove-tail-shaped recesses transmits the vertical forces.
  • This document does not relate to elements useable for building of buttress wall, it solves only mutual connection - not composition of block on each other.
  • Goal of the invention is to design a construction precast unit enabling its variable application under different conditions at construction site and in addition it should be technologically less demanding while the tendency is to design such building elements that will provide the required strength even by dry way of construction.
  • Goal of the invention is obtained by modular system of building blocks containing a pair of building elements with unit height whose base is that it contains at least another one face plate and/or at least another coupling block with different height than the unit one while the other face plate and/or coupling block are equipped with relevant part of dovetail joint. Due to mutual coupling the different heights of building blocks enable to join single elements of layers aligned one above another and form thus a stiff structure even in vertical direction of the construction.
  • the coupling block is furnished with parallel dovetail springs at two opposed sides which enables to couple together two face plates turned mutually with backing sides.
  • the building blocks units produced in this way are suitable for construction of dividing walls.
  • the coupling block is formed as a monolith containing two plates concurring one another in shape of letter "T", while the plate aligned in axis of coupling block symmetry is furnished with dovetail spring on the surface opposed to the plate forming the cross-bar of the letter "T".
  • the construction precast unit is thus formed by joining of the coupling block to the face plate while the diagonal of the "T" coupling block is parallel with the face plate.
  • the construction precast unit is suitable for construction of buttress wall, the cross-bar is a mean for anchoring the precast unit in the earth fill.
  • the plate forming cross-bar of the letter "T” has a dovetail raglet parallel with dovetail spring in the surface reversed from other plate. At the same time it is convenient if the axis of dovetail raglet lies in the level of coupling block symmetry. Therefore the coupling blocks thus can be chained in direction to earth whereby a very good anchoring of the buttress wall in terrain is obtained.
  • the chaining of coupling blocks in "T" shape enables its application even for construction of a wide dividing wall.
  • At least one of the building elements is made from concrete.
  • Such a construction precast unit has a high strength and durability which is especially suitable for construction of buttress walls.
  • the building blocks according to the invention provide an easy assembly, variability and high stiffness of final construction.
  • the construction also meets the aesthetic ones.
  • fig. 1 is a diagonal view at face plate with one dovetail raglet
  • fig. 2 a diagonal view of face plate with two dovetail raglets
  • fig. 3 a diagonal view of short coupling block in shape of ashlar furnished with two dovetail springs
  • fig. 4 a diagonal view of closing coupling block in shape of ashlar furnished with two dovetail springs
  • fig. 5 a diagonal view of coupling block in shape of letter "T" with dovetail raglet and dovetail spring
  • fig. 6 a construction precast unit assembled from two face plates its backing sides are touching one another while the plates are coupled by higher coupling blocks analogous with the type from fig.
  • fig. 7 a construction precast unit from two face plates according to fig. 2 assembled with a gap, oriented with backing sides to one another and coupled with two higher prolonged coupling blocks analogous with the type from fig. 3
  • fig. 8 a construction precast unit assembled from two face plates according to fig. 2 assembled with a gap, that are coupled with two coupling blocks according to fig. 4
  • fig. 9 a construction precast unit assembled from face plate according to fig. 2 and two coupling blocks according to fig. 5 , fig. 10 part of buttress wall from the building blocks according to fig. 6 , fig. 11 part of buttress wall from the building blocks according to fig. 9 , fig.
  • the solution according to the invention designs a system of modular building parts, building blocks namely for construction of buttress walls. Considering the relationship of buttress and dividing walls also a possibility of use of these building elements for dividing walls, sustaining walls, fence posts and etc. is considered.
  • Especially concrete is a suitable material for production of building blocks. It is clear that at least some elements of the building blocks can be produced from plastics or wood or crushed and bonded wooden materials. They can also be reinforced with suitable steel elements.
  • the face plate is basically the construction face element.
  • single face plates are used 1 , ( fig. 1 ) and 11 , double face plates 2 ( fig. 2 ) and 21 .
  • the face plates 1 , 2 have shape of a flat ashlar with unit height vj , the face plates 11 , 21 of half height, therefore 0,5 x vj .
  • the single face plate 1 , 11 has unit width sj .
  • the double face plate 2 , 21 has double width, therefore 2x sj . Thickness of all face plates is in the pattern version the same.
  • the backing side 12 of the face plate 1 , 11 is furnished in the centre with one continuous vertical dovetail raglet 13 .
  • the highest width sr of dovetail profile and dovetail profile is unified in the modular system.
  • the double face plate 2 , 21 is on the backing side 22 furnished with symmetrically two vertical dovetail raglets 23 with spacing matching the unit width sj .
  • Face surfaces 14 , 24 of the face plates 1 , 11 , 2 , 21 can be smooth or surface treated by cleaving, grinding, cutting, blasting, bush-hammering and etc. Part of the perimeter or complete perimeter of the face surface 14 , 24 can be furnished with chamfer 15 , 25 , as it is shown in case of the double face plate 2 .
  • the rear half of the vertical side walls of the face plate 1 , 2 is turned to the backing side 12 , 22 of the bevelling 16 , its plane include an angle approximately 30° with face part of the vertical side wall.
  • the modular system includes in the pattern version several types of coupling elements.
  • a coupling block 3 its opposed vertical walls are formed by dovetail springs 31 .
  • Outside dimensions of the coupling block 3 meet the ashlar its thickness matches the highest width sr of the dovetail section while the part between the dovetail springs 31 forms a constricted neck 32 of length dk .
  • the length d3 is given by a sum dk + 2x hr , where hr is height of the dovetail profile.
  • the length d3 (res. dk ) and height v3 differ in the modular system according to the requirement for its construction.
  • the coupling blocks 3 with length d3 shown on fig. 3 are intended for construction of cavity walls, the length dk gives here the width of relevant cavity.
  • the second variant is a separately not shown coupling block 4 , its dovetail springs 31 tie practically one another, therefore the coupling block 4 has not a neck in the sense of the previous case.
  • the length d4 of the coupling block 4 is therefore given by two heights hr of the dovetail section.
  • This variant of the coupling block 4 is intended for construction of dividing walls that have not internal cavity. Walls, which the stated elements are intended for will be described further.
  • the coupling block 3 can be formed even with one dovetail spring 31 when it is applied as a buttress wall element which is by means of the dovetail spring 31 fixed in the dovetail raglet 13 , 23 of the face plate 1 , 2 , while its surface opposed to the dovetail spring is laid in the earth fill.
  • a closing coupling block 5 which is analogous to the coupling block from fig. 3 .
  • its length du is basically a length between the dovetail springs 53 and thus it is the same like the length dk from fig. 3 . It matches the width of the cavity of a wall described below.
  • Complete length d5 of coupling block 5 is du + 2x hr .
  • a coupling block 6 according to the invention in shape of letter "T"
  • its shank 61 is finished with vertical dovetail spring 62 .
  • the cross-bar 63 on the opposed side of the shank 61 there is formed in the axis of block symmetry a vertical continuous dovetail raglet 64 .
  • the pattern version there are in the upper and lower surface of the cross-bar 63 a spring 65 and half raglet 66 made in a way that a shaped joint is created on the coupling block laying on one another 6 .
  • Width s6 of the cross - bar 63 of the coupling block 6 is equal to unit width sj of the modular system
  • the width s6 of the cross-bar 63 of the coupling block 6 is approximately for 10 % smaller than unit width sj of the modular system.
  • a construction precast unit 10 for building of dividing walls In the pattern version it includes two double face plates 2 turned to one another with backing sides 22 without a gap while they are coupled with coupling blocks 4 described by means of the coupling block 3 according to fig. 3 . Height v3 of the coupling blocks 4 is selected so that the layers of the building blocks aligned one above another are mutually coupled 10 .
  • coupling blocks 4 of above described lengths can be used by which it can be provided that the coupling block 4 of length vj is inserted with one half in the dovetail raglet 22 of the construction precast unit 10 in the lower layer and with second half in the dovetail raglet 22 of the construction precast unit 10 of the adjacent upper layer of built dividing wall.
  • Modification of the construction precast unit 1 0 is a separately not shown construction precast unit 20 , that includes two single face plates 1 turned to each other with backing sides 12 without gap while they are coupled with the coupling block 4 .
  • a construction precast unit 30 for building of dividing walls contains two double face plates 2 turned to one another with backing sides 22 with a gap for cavity wall.
  • the face plates 2 are coupled with dovetail joints with the coupling blocks 3 , its length dk determines mutual distance of the backing sides 22 of the face plates 2 .
  • Height v3 of the coupling blocks 3 is selected in the same way as with the building blocks 10 .
  • the construction precast unit 40 according to fig. 8 is suitable for construction of the dividing wall, eventually for construction of posts. Its external surface is given by use of closing coupling blocks 5 , its closing parts 52 form with vertical sides of the face plates 2 two opposed planar surfaces. The face plates 2 are connected with the closing coupling blocks 5 by dovetail joints. Height v5 of the coupling blocks 5 is selected according to the same aspects as with the previous building blocks 10 and 30 .
  • the construction precast unit 50 shown on fig. 9 is designed for construction of buttress wall.
  • Shanks 61 of the coupling blocks 6 are connecting face plates 2 with cross-bars 63 of the coupling block 6 , that are in respect of their surface a space orientation an efficient anchoring mean in the earth fill.
  • the springs 65 and half raglets 66 in upper and lower edges of the cross-bar 63 of the coupling block 6 contribute to mutual stability of buttress wall adjacent horizontal walls aligned one above another
  • the joint of the spring 65 and half-raglet 66 serves as a mean for attachment of geotextile that can be aligned in direction from the coupling blocks 6 in the earth fill and increases strength of buttress wall anchoring.
  • the bevelling 16 of rear part of side walls of the face plates 1 , 2 and lower width of the cross-bars 63 of the coupling blocks 6 enable to built from the building blocks 50 a buttress wall with convex arch ground plan.
  • unit width sj 25 cm
  • an arch with even smaller radius it is necessary to shorten the cross- bars with the relevant coupling blocks 6 .
  • the building blocks 50 can be used for constructions of wide dividing walls so that to the dovetail raglet 64 of the precast unit 50 using the dovetail spring 31 the coupling block 3 is coupled and to its second dovetail spring 31 using the dovetail raglet 13 , 23 the single or double face plate 1 , 2 is connected.
  • a wider dividing wall can be built by coupling two building blocks 50 forming both sides of the wall by means of the coupling blocks 3 by inserting dovetail springs 31 into the dovetail raglets 64 of the building blocks 50 .
  • FIG. 13 there is shown a part of the dividing wall with post 7 erected from the building blocks 10 and 20 .
  • Two parts of the wall are coupled with the post 7 , that is formed by a vertical assembly of building blocks 30 , while the coupling block 3 has the length d3 , which is a sum of two bearing heights hr of the dovetail joint section and two thicknesses of the face plates 2 .
  • the post 7 is to overreach the wall upper edge it is possible to use for this overreaching part of the post the building blocks 40 , that have planar all four peripheral locations thanks to applied closing coupling blocks 5 of suitable height v5 .
  • Construction structures according to the invention thus can be used as buttress and dividing walls, walled fencings, bearing and other walls, basements, stairs, sustaining walls, garden and park complements.

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Retaining Walls (AREA)
  • Joining Of Building Structures In Genera (AREA)

Claims (11)

  1. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50), insbesondere von Baufertigteilen für Stützmauer oder Trennwände, das ein Paar von selbstständigen Bauelementen aufweist, die eine Einheitshöhe (vj) aufweisen, von denen jedes Bauelement einen Teil der Schwalbenschwanzverbindung für gegenseitige Verbindung von selbstständigen Bauelementen durch eine senkrecht orientierte Schwalbenschwanzverbindung aufweist, wobei eines des Paares der Bauelemente eine Verblendplatte (1, 2) ist und zweites des Paares der Bauelemente ein Bindungsblock (3, 4, 5, 6) ist, dadurch gekennzeichnet, dass es mindestens eine weitere Verblendplatte (11, 21) und/oder mindestens einen weiteren Bindungsblock (3, 4, 5, 6) aufweist, der eine unterschiedliche Höhe als die Einheitshöhe (vj) aufweist, wobei die weitere Verblendplatte (11, 21) und/oder der weitere Bindungsblock (3, 4, 5, 6) mit entsprechendem Teil der Schwalbenschwanzverbindung versehen sind.
  2. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50) nach dem Anspruch 1, dadurch gekennzeichnet, dass die Verblendplatten (2, 21) in ihrer Rückseite ein Paar von gegenseitig parallel laufenden Schwalbenschwanznuten (23) aufweisen.
  3. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50) nach dem Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Verblendplatten (1, 2) in dem der Rückseite (12, 22) zugewandten Bereich eine Schräge (16) der seitlichen senkrechten Wand aufweisen.
  4. Modulsystem von Baufertigteilen (10, 20, 30, 40) nach dem Anspruch 1, dadurch gekennzeichnet, dass der Bindungsblock (3, 4, 5) auf zwei gegenüberliegenden Flächen parallel laufende Schwalbenschwanzfedern (31, 53) aufweist.
  5. Modulsystem von Baufertigteilen (50) nach dem Anspruch 1, dadurch gekennzeichnet, dass der Bindungsblock (6) als Monolith gebildet wird, der zwei aneinander anknüpfende Platten in der T-Form aufweist, wobei die in der Symmetrieachse des Bindungsblocks (6) angeordnete Platte auf der Fläche der gegenüberliegenden Platte, die die Querlinie (63) des Buchstabens "T" bildet, mit einer Schwalbenschwanzfeder (62) versehen ist.
  6. Modulsystem von Baufertigteilen (50) nach dem Anspruch 5, dadurch gekennzeichnet, dass die die Querlinie (63) des Buchstabens "T" bildende Platte in der von der zweiten Platte abgewandten Fläche eine Schwalbenschwanznut (64) gebildet hat, die mit der Schwalbenschwanzfeder (62) parallel laufend ist.
  7. Modulsystem von Baufertigteilen (50) nach dem Anspruch 6, dadurch gekennzeichnet, dass die Achse der Schwalbenschwanznut (62) in der Symmetrieebene des Bindungsblocks (6) liegt.
  8. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50) nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, dass mindestens eines der Bauelemente aus Beton hergestellt ist.
  9. Modulsystem von Baufertigteilen (10, 20, 30, 40) nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass mindestens eines der Bauelemente aus Kunststoff hergestellt ist.
  10. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50) nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass mindestens eines der Bauelemente aus Holz hergestellt ist.
  11. Modulsystem von Baufertigteilen (10, 20, 30, 40, 50) nach einem der Ansprüche 8 bis 10, dadurch gekennzeichnet, dass mindestens eines der Bauelemente Metallversteifungen aufweist.
EP12721705.7A 2011-04-04 2012-04-04 Modulares system von bausteinen Active EP2694745B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CZ20110189A CZ2011189A3 (cs) 2011-04-04 2011-04-04 Modulový systém stavebních prefabrikátu
PCT/CZ2012/000029 WO2012136174A2 (en) 2011-04-04 2012-04-04 Modular system of building blocks

Publications (2)

Publication Number Publication Date
EP2694745A2 EP2694745A2 (de) 2014-02-12
EP2694745B1 true EP2694745B1 (de) 2017-11-08

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EP (1) EP2694745B1 (de)
CZ (1) CZ2011189A3 (de)
RU (1) RU2605468C2 (de)
WO (1) WO2012136174A2 (de)

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WO2020099898A1 (en) 2018-11-14 2020-05-22 Kovacs Karoly Method and connecting system for interconnecting preferably modular building components of lightweight construction

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CN106801384A (zh) * 2017-02-06 2017-06-06 中交第二公路勘察设计研究院有限公司 装配式钢筋混凝土八字墙型涵洞洞口及施工方法
BE1028742B1 (nl) 2020-10-27 2022-05-23 Knaep Tom De Constructie-element voor het bouwen van een wand van een gebouw en wand voor een gebouw
AT524345B1 (de) * 2020-11-12 2022-07-15 Michael Friedl Alfred Halb-Mauerstein und Verfahren zum Produzieren eines Halb-Mauersteins
CN115324100A (zh) * 2022-07-27 2022-11-11 中铁第四勘察设计院集团有限公司 一种装配式的扶壁式挡墙及其装配方法
CN116290454B (zh) * 2022-09-09 2023-08-22 中建五局(烟台)建设工程有限公司 一种装配式砌块墙体及墙体施工方法

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CZ303478B6 (cs) 2012-10-10
EP2694745A2 (de) 2014-02-12
WO2012136174A3 (en) 2013-06-13
WO2012136174A2 (en) 2012-10-11
RU2605468C2 (ru) 2016-12-20
CZ2011189A3 (cs) 2012-10-10
RU2013149005A (ru) 2015-05-10

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