EP3205790A1 - Assembled early-removal building formwork system and erecting method thereof - Google Patents

Assembled early-removal building formwork system and erecting method thereof Download PDF

Info

Publication number
EP3205790A1
EP3205790A1 EP14903527.1A EP14903527A EP3205790A1 EP 3205790 A1 EP3205790 A1 EP 3205790A1 EP 14903527 A EP14903527 A EP 14903527A EP 3205790 A1 EP3205790 A1 EP 3205790A1
Authority
EP
European Patent Office
Prior art keywords
standard
wallboard
template
interior
corner
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Withdrawn
Application number
EP14903527.1A
Other languages
German (de)
French (fr)
Other versions
EP3205790A4 (en
Inventor
Chengyi Wang
Juntian LIN
Shunlin LIU
Liang Zhang
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.)
Hui Linda Technology Co Ltd
Original Assignee
Hui Linda Technology Co 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.)
Filing date
Publication date
Application filed by Hui Linda Technology Co Ltd filed Critical Hui Linda Technology Co Ltd
Publication of EP3205790A1 publication Critical patent/EP3205790A1/en
Publication of EP3205790A4 publication Critical patent/EP3205790A4/en
Withdrawn legal-status Critical Current

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/06Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for walls, e.g. curved end panels for wall shutterings; filler elements for wall shutterings; shutterings for vertical ducts
    • E04G11/08Forms, which are completely dismantled after setting of the concrete and re-built for next pouring
    • E04G11/087Fill-in form panels in the plane of two adjacent forms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/16Structures made from masses, e.g. of concrete, cast or similarly formed in situ with or without making use of additional elements, such as permanent forms, substructures to be coated with load-bearing material
    • E04B1/161Structures made from masses, e.g. of concrete, cast or similarly formed in situ with or without making use of additional elements, such as permanent forms, substructures to be coated with load-bearing material with vertical and horizontal slabs, both being partially cast in situ
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/84Walls made by casting, pouring, or tamping in situ
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/02Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for rooms as a whole by which walls and floors are cast simultaneously, whole storeys, or whole buildings
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/06Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for walls, e.g. curved end panels for wall shutterings; filler elements for wall shutterings; shutterings for vertical ducts
    • E04G11/08Forms, which are completely dismantled after setting of the concrete and re-built for next pouring
    • E04G11/085End form panels for walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/36Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for floors, ceilings, or roofs of plane or curved surfaces end formpanels for floor shutterings
    • E04G11/365Stop-end shutterings

Definitions

  • the invention relates to construction engineering technical field, and in particular relates to an assembling and dismantling-beforehand structural template system and construction method thereof.
  • the template system has become the tool or equipment often used in the building work.
  • the template system In the assembling and dismantling-beforehand template system, it mainly comprises interior and exterior-wallboards arranged on the vertical plane at intervals, and floor boards arranged on horizontal plane, concreting into interior and exterior-wallboards to form walls, concreting into floor boards to form floors.
  • the structural template system there are several via-holes in the vertical direction of wallboards, and the via-holes of the interior and exterior-wallboards are set correspondingly. Having the pair wiredrawing bar group cross through the via-holes can make a fixed connection between two wallboards.
  • the smaller spacing of via-holes on the wallboards leads to the bigger mounted interactive wiredrawing bar group, so as to better withstand the side pressure of the concrete.
  • Due to gravity force the extrusion pressure of the concrete on the wall bottom template is greater than the extrusion pressure on the templates corresponding to other places of the wall. Therefore, the density of via-holes on the template corresponding to the wall bottom is greater, so there must be more pair wiredrawing bar groups mounted in a certain range to withstand the side pressure of the concrete.
  • the floor template system also needs to have stable structure strength, to avoid problems like crack in the floor.
  • the widths of wallboards are the same.
  • each wallboard small enough to reduce the via-hole distance on two wallboards in the horizontal direction, or make the hole spacing in the vertical direction small enough to mount more interactive wiredrawing bar groups and obtain enough force to withstand the extrusion pressure from the higher wall concrete to the wallboard.
  • each interior-wallboard is pre-assembled in factory to connect with one bottom angle plate.
  • the length of each bottom angle plate is the same with the length of the connected interior-wallboard bottom surface, and there is no connection between two adjacent bottom angle plates, so that the overall structural rigidity of the template system cannot be enhanced.
  • the technical problem that the present invention solves is to provide an assembling and dismantling-beforehand structural template system and construction method thereof. It aims to solve problems of the existing assembling and dismantling-beforehand structural template system, such as damaged templates, high cost of labor and material, delayed construction schedule and the overall structural rigidity of the template system that cannot be enhanced.
  • the present invention is achieved by providing an assembling and dismantling-beforehand structural template system, comprising a vertical structural template system, a horizontal structural template system and a support system;
  • the vertical structural template system comprises an interior-wallboard, an exterior-wallboard, an interactive wiredrawing bar group, a vertical internal-corner template, a vertical external-corner template and a back beam, the back beam is horizontally mounted at the relative position of the interior and exterior-wallboards
  • the vertical internal-corner template is mounted at the internal-corner of the building structure
  • the vertical external-corner template is mounted at the external-corner of the building structure
  • the adjacent two sides of the vertical internal-corner template both have connectors
  • the adjacent two sides of the vertical external-corner template also both have connectors
  • the interior-wallboard comprises a first standard interior-wallboard, a second standard interior-wallboard, a third standard interior-wallboard and a non-standard interior-wallboard
  • the exterior-wallboard comprises a first standard exterior-wallboard,
  • the horizontal structural template system further comprises horizontal and vertical internal-corner template and a floor template
  • the floor template comprises a first standard floor template, a second standard floor template, a non-standard floor template and a keel
  • the support system comprises an adjustable support bar and a meteor hammer
  • one side of the horizontal and vertical internal-corner template is detachably connected to the top of the interior-wallboard
  • another side of the horizontal and vertical internal-corner template is detachably connected to one side of the floor template
  • the keel is detachably connected between two opposite horizontal and vertical internal-corner templates
  • the keel is set along the length direction of the horizontal and vertical internal-corner template at intervals, its length direction is parallel with the width direction of the floor template
  • the first standard floor template is connected between the horizontal and vertical internal-corner template and the keel
  • the second standard floor template and the non-standard floor template are detachably connected between two adjacent keels
  • the meteor hammer is connected between two adjacent
  • the width of the first non-standard exterior-wall template is equal to the sum of the width of the vertical internal-corner template and the thickness of the wall.
  • first standard interior-wallboard is detachably connected to the first vertical internal-corner template, and another side is detachably connected to one side of the second standard interior-wallboard.
  • the third standard interior-wallboard is detachably connected between the adjacent second standard interior-wallboards or at two sides of the non-standard interior-wallboard, the positions of the first, second, and third standard exterior-wallboards are respectively corresponding to the positions of the first, second, and third standard interior-wallboards.
  • one end of the first standard floor template is detachably connected to the horizontal internal-corner template, and another end is detachably connected to the keel.
  • the second standard floor template and non-standard floor template are between two adjacent keels, and two ends of the second standard floor template and the non-standard floor template are detachably connected to the keel.
  • a vertical central plane of two spaced adjacent third standard interior-wallboards coincides with a central plane of the keel.
  • the detachable connection is pin or bolt connection.
  • the present invention also provides a construction method of the assembling and dismantling-beforehand structural template system, comprising following steps:
  • the benefits of the present invention are: the first standard interior-wall template of the present invention can be detachably connected to the internal-corner close to the building structure, and the first non-standard exterior-wall template can be detachably connected to the external-corner close to the building structure, so that the first vertical interactive wiredrawing bar group is closer to the corner position of the building structure, greatly improving the template stress state of the corner part of the building structure.
  • the second standard interior and exterior-wallboards of the present template system to open interactive wiredrawing bar holes.
  • the horizontal spacing and the height spacing of the interactive wiredrawing bar group are fixed, standardized, and serialized, thus reducing the processing difficulty and cost of the template.
  • the closed frame formed by the bottom angle plate and the second vertical internal-corner template as well as the integral structure of all interior-wallboards of the wall through the bottom angle plate and the first vertical internal-corner template greatly enhance the overall structural rigidity of the template system.
  • the plane frame formed by the bottom angle plate and the second vertical internal-corner template simplifies the horizontal mode calibration procedure of the interior-wallboard in advance, and improves the building efficiency of the template system.
  • an assembling and dismantling-beforehand structural template system comprises a vertical structural template system, a horizontal structural template system, and a support system.
  • the vertical structural template system comprises an interior-wallboard 1, an exterior-wallboard 2, an interactive wiredrawing bar group 3, a vertical internal-corner template 4, a vertical external-corner template 5 and a back beam 6.
  • the back beam 6 is horizontally mounted at the relative position of the interior and exterior-wallboards 1, 2.
  • the vertical internal-corner template 4 is mounted at the internal-corner of the building structure.
  • the vertical external-corner template 5 is mounted at the external-corner of the building structure. Two adjacent sides of the vertical internal-corner template 4 both have connectors 41, and two adjacent sides of the vertical external-corner template 5 also both have connector 51.
  • the interior-wallboard 1 comprises a first standard interior-wallboard 11, a second standard interior-wallboard 12, a third standard interior-wallboard 13 and a non-standard interior-wallboard 14.
  • the exterior-wallboard 2 comprises a first standard exterior-wallboard 21, a second standard exterior-wallboard 22, a third standard exterior-wallboard 23, a first non-standard exterior-wallboard 24 and a second non-standard exterior-wallboard 25.
  • the width of the second standard interior-wallboard 12 is greater than the width of the non-standard interior-wallboard 14, and the width of the second standard exterior-wallboard 22 is greater than the width of the second non-standard exterior-wallboard 25.
  • the vertical internal-corner template 4 comprises a first vertical internal-corner template 40a and a second vertical internal-corner template 40b which are top and bottom docked.
  • the first and second vertical internal-corner templates 40a, 40b are detachably connected.
  • the horizontal structural template system comprises a bottom angle plate 10; two connectors 401b of the second vertical internal-corner template 40b are detachably connected to ends of one bottom angle plate 10.
  • Two connectors 401a of the first vertical internal-corner template 40a are detachably connected to one first standard interior-wallboard 11.
  • the bottom surfaces of the first standard interior-wallboard 11, the second standard interior-wallboard 12, the third standard interior-wallboard 13 and the non-standard interior-wallboard 14 are all detachably connected to one bottom angle plate 10.
  • Two connectors 51 of the vertical external-corner template 5 are detachably connected to one side of one first non-standard exterior-wallboard 24. Another side of two first non-standard exterior-wallboards 24 are detachably connected to one first standard exterior-wallboard 21.
  • the first standard interior-wallboard 11, the third standard interior-wallboard 13, the first standard exterior-wallboard 21 and the third standard exterior-wallboard 23 all have via-holes (not shown in figures).
  • the via-hole position of the first standard interior-wallboard 11 is corresponding to the via-hole position of the first standard exterior-wallboard 21, and the via-hole position of the third standard interior-wallboard 13 is corresponding to the via-hole position of the third standard exterior-wallboard 23.
  • the interactive wiredrawing bar group 3 crosses through two opposite via-holes and two opposite back beams 6 of the interior and exterior-wallboards 1, 2.
  • the above horizontal structural template system further comprises a horizontal and vertical internal-corner template 7 and a floor template 8.
  • the floor template 8 comprises a first standard floor template 81, a second standard floor template 82, a non-standard floor template 83 and a keel 84.
  • the support system comprises an adjustable support bar 301 and a meteor hammer (not shown in figures).
  • the keel 84 is detachably connected between two opposite horizontal and vertical internal-corner templates 7.
  • the keel 84 is set along the length direction of the horizontal and vertical internal-corner template 7 at intervals; its length direction is parallel with the width direction of the floor template 8.
  • the first standard floor template 81 is connected between horizontal and vertical internal-corner template 7 and the keel 84.
  • the second standard floor template 82 and non-standard floor template 83 are detachably connected to two adjacent keels 84.
  • the meteor hammer is connected between two adjacent keels 84.
  • the top of the adjustable support bar 301 is detachably connected to the meteor hammer, and the bottom of the adjustable support bar 301 is in contact with the floor 200.
  • the width of the first non-standard exterior-wall template 24 is equal to the sum of the width of the vertical internal-corner template 4 and the thickness of the wall 100.
  • One side of the first standard interior-wallboard 11 is detachably connected to the vertical internal-corner template 4, and another side is detachably connected to one side of the second standard interior-wallboard 12.
  • the third standard interior-wallboard 13 is detachably connected between the adjacent second standard interior-wallboards 12 or two sides of the non-standard interior-wallboard 14.
  • the positions of the first, second, and third standard exterior-wallboards 21, 22, 23 are respectively corresponding to the positions of the first, second, and third standard interior-wallboards 11, 12, 13.
  • One end of the first standard floor template 81 is detachably connected to the horizontal internal-corner template 4, and another end is detachably connected to the keel 84.
  • the second standard floor template 82 and the non-standard floor template 83 are between two adjacent keels 84. Two ends of the second standard floor template 82 and the non-standard floor template 83 are detachably connected to the keel 84. A vertical central plane of two spaced adjacent third standard interior-wallboards 13 coincides with a central plane of the keel 84.
  • the above-mentioned “detachable connection” is pin or bolt connection.
  • the first standard interior-wall template 11 can be detachably connected to an internal-corner close to the building structure
  • the first non-standard exterior-wall template 24 can be detachably connected to an external-corner close to the building structure, so that the first vertical interactive wiredrawing bar group 3 is closer to the corner position of the building structure, greatly improving the template stress state of the corner part of the building structure.
  • the second standard interior and exterior-wallboards 12, 22 there is no need for the second standard interior and exterior-wallboards 12, 22 to open interactive wiredrawing bar holes.
  • the horizontal spacing and the height spacing of the interactive wiredrawing bar group 3 are fixed, standardized, and serialized, greatly reducing the processing difficulty and cost of the template.
  • walls can have many kinds of the height or thickness.
  • the height of the wall is greater or less than this height range, there can be another template system with different via-hole density.
  • designing a few template systems can handle different walls in the actual use.
  • the closed frame formed by the bottom angle plate 10 and the second vertical internal-corner template 40b as well as the integral structure of all interior-wallboards 1 of the wall 100 through the bottom angle plate 10 and the first vertical internal-corner template 40a greatly enhance the overall structural rigidity of the template system. Furthermore, the plane frame formed by the bottom angle plate 10 and the second vertical internal-corner template 40b simplifies the horizontal mode calibration procedure of the interior-wallboard 1 in advance, and improves the building efficiency of the template system.
  • the construction method of the above-mentioned assembling and dismantling-beforehand structural template system comprises following steps:

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Forms Removed On Construction Sites Or Auxiliary Members Thereof (AREA)
  • Working Measures On Existing Buildindgs (AREA)

Abstract

The present invention is applicable to construction engineering technical field, providing an assembling and dismantling-beforehand structural template system and a construction method thereof. In this template system, a first standard interior-wall template is close to an internal-corner of a building structure, a first non-standard exterior-wall template is close to an external-corner of the building structure, so that a first vertical pair wiredrawing bar group is closer to the corner position of the building structure, improving the template stress state of the corner part of the building structure. There is no need for a second standard interior and exterior-wallboard to open interactive wiredrawing bar holes. The horizontal spacing and the height spacing of interactive wiredrawing bar group are fixed, standardized, and serialized, thus reducing the processing difficulty and cost of the template. Meanwhile, holes don't need to change their location repeatedly, improving the template turnover rate, extending the template service life, and reducing costs. The construction formed by the bottom angle plate, the first and second vertical internal-corner templates and the interior-wallboard enhances the structural rigidity of the template system, simplifies the horizontal mode calibration procedure of the interior-wallboard in advance, and improves the building efficiency of the template system.

Description

    Field of the Invention
  • The invention relates to construction engineering technical field, and in particular relates to an assembling and dismantling-beforehand structural template system and construction method thereof.
  • Background of the Invention
  • With the development of the construction, the proportion of high-rise cast-in-place concrete structure is growing, and the template system has become the tool or equipment often used in the building work. In the assembling and dismantling-beforehand template system, it mainly comprises interior and exterior-wallboards arranged on the vertical plane at intervals, and floor boards arranged on horizontal plane, concreting into interior and exterior-wallboards to form walls, concreting into floor boards to form floors. In the structural template system, there are several via-holes in the vertical direction of wallboards, and the via-holes of the interior and exterior-wallboards are set correspondingly. Having the pair wiredrawing bar group cross through the via-holes can make a fixed connection between two wallboards. After concreting, the smaller spacing of via-holes on the wallboards leads to the bigger mounted interactive wiredrawing bar group, so as to better withstand the side pressure of the concrete. Due to gravity force, the extrusion pressure of the concrete on the wall bottom template is greater than the extrusion pressure on the templates corresponding to other places of the wall. Therefore, the density of via-holes on the template corresponding to the wall bottom is greater, so there must be more pair wiredrawing bar groups mounted in a certain range to withstand the side pressure of the concrete. At the top of the wall, due to the weight of the floor concrete, the floor template system also needs to have stable structure strength, to avoid problems like crack in the floor. In the existing structural template system, the widths of wallboards are the same. When being placed, wallboards are successively placed from one direction to another direction, until the remaining space is not big enough to place one wallboard, then wallboards with another width can be placed. However, when the height or thickness of the wall changes, the extrusion pressure from the wall and the floor to the wallboard also changes. The greater height or thickness of the wall causes more problems like cracks in the wall corner position and the floor. Therefore, there is a need to adjust the via-hole spacing on the wallboard according to specific situations. One solution is to fill old via-holes on the wallboard and then open new via-holes. But this solution will damage the template and cost a lot of labor and materials to fill old via-holes and open new via-holes, thus increasing the cost of labor and materials and delaying construction schedule. Of course, we can make the width of each wallboard small enough to reduce the via-hole distance on two wallboards in the horizontal direction, or make the hole spacing in the vertical direction small enough to mount more interactive wiredrawing bar groups and obtain enough force to withstand the extrusion pressure from the higher wall concrete to the wallboard. However, it needs to mount a lot of pair wiredrawing bar groups, which also cost a lot of labor and materials.
  • Furthermore, in the existing template system, the bottom surface of each interior-wallboard is pre-assembled in factory to connect with one bottom angle plate. The length of each bottom angle plate is the same with the length of the connected interior-wallboard bottom surface, and there is no connection between two adjacent bottom angle plates, so that the overall structural rigidity of the template system cannot be enhanced.
  • Summary of the Invention
  • The technical problem that the present invention solves is to provide an assembling and dismantling-beforehand structural template system and construction method thereof. It aims to solve problems of the existing assembling and dismantling-beforehand structural template system, such as damaged templates, high cost of labor and material, delayed construction schedule and the overall structural rigidity of the template system that cannot be enhanced.
  • The present invention is achieved by providing an assembling and dismantling-beforehand structural template system, comprising a vertical structural template system, a horizontal structural template system and a support system; the vertical structural template system comprises an interior-wallboard, an exterior-wallboard, an interactive wiredrawing bar group, a vertical internal-corner template, a vertical external-corner template and a back beam, the back beam is horizontally mounted at the relative position of the interior and exterior-wallboards, the vertical internal-corner template is mounted at the internal-corner of the building structure, the vertical external-corner template is mounted at the external-corner of the building structure, the adjacent two sides of the vertical internal-corner template both have connectors, the adjacent two sides of the vertical external-corner template also both have connectors; wherein the interior-wallboard comprises a first standard interior-wallboard, a second standard interior-wallboard, a third standard interior-wallboard and a non-standard interior-wallboard, the exterior-wallboard comprises a first standard exterior-wallboard, a second standard exterior-wallboard, a third standard exterior-wallboard, a first non-standard exterior-wallboard and a second non-standard exterior-wallboard; the width of the second standard interior-wallboard is greater than the width of the non-standard interior-wallboard, and the width of the second standard exterior-wallboard is greater than the width of the second non-standard exterior-wallboard;
    the vertical internal-corner template comprises a first vertical internal-corner template and a second vertical internal-corner template which are top and bottom docked, the first and second vertical internal-corner templates are detachably connected with each other; the horizontal structural template system comprises a bottom angle plate; two connectors of the second vertical internal-corner template are detachably connected to ends of one bottom angle plate, two connectors of the first vertical internal-corner template are detachably connected to one first standard interior-wallboard, the bottom surfaces of the first standard interior-wallboard, the second standard interior-wallboard, the third standard interior-wallboard and the non-standard interior-wallboard are all detachably connected to one bottom angle plate; two connectors of the vertical external-corner template are detachably connected to one side of one first non-standard exterior-wallboard, another side of two first non-standard exterior-wallboards are detachably connected to one first standard exterior-wallboard;
    the first standard interior-wallboard, the third standard interior-wallboard, the first standard exterior-wallboard and the third standard exterior-wallboard all have via-holes, and the via-hole position of the first standard interior-wallboard is corresponding to the via-hole position of the first standard exterior-wallboard, the via-hole position of the third standard interior-wallboard is corresponding to the via-hole position of the third standard exterior-wallboard, the interactive wiredrawing bar group crosses through two opposite via-holes and two opposite back beams of the interior and exterior-wallboards.
  • Furthermore, the horizontal structural template system further comprises horizontal and vertical internal-corner template and a floor template, the floor template comprises a first standard floor template, a second standard floor template, a non-standard floor template and a keel, the support system comprises an adjustable support bar and a meteor hammer; one side of the horizontal and vertical internal-corner template is detachably connected to the top of the interior-wallboard, another side of the horizontal and vertical internal-corner template is detachably connected to one side of the floor template, the keel is detachably connected between two opposite horizontal and vertical internal-corner templates, the keel is set along the length direction of the horizontal and vertical internal-corner template at intervals, its length direction is parallel with the width direction of the floor template; the first standard floor template is connected between the horizontal and vertical internal-corner template and the keel, the second standard floor template and the non-standard floor template are detachably connected between two adjacent keels, the meteor hammer is connected between two adjacent keels, the top of the adjustable support bar is detachably connected to the meteor hammer, and the bottom of the adjustable support bar is in contact with the floor.
  • Furthermore, the width of the first non-standard exterior-wall template is equal to the sum of the width of the vertical internal-corner template and the thickness of the wall.
  • Furthermore, one side of the first standard interior-wallboard is detachably connected to the first vertical internal-corner template, and another side is detachably connected to one side of the second standard interior-wallboard.
  • Furthermore, the third standard interior-wallboard is detachably connected between the adjacent second standard interior-wallboards or at two sides of the non-standard interior-wallboard, the positions of the first, second, and third standard exterior-wallboards are respectively corresponding to the positions of the first, second, and third standard interior-wallboards.
  • Furthermore, one end of the first standard floor template is detachably connected to the horizontal internal-corner template, and another end is detachably connected to the keel.
  • Furthermore, the second standard floor template and non-standard floor template are between two adjacent keels, and two ends of the second standard floor template and the non-standard floor template are detachably connected to the keel.
  • Furthermore, a vertical central plane of two spaced adjacent third standard interior-wallboards coincides with a central plane of the keel.
  • Furthermore, the detachable connection is pin or bolt connection.
  • Furthermore, the present invention also provides a construction method of the assembling and dismantling-beforehand structural template system, comprising following steps:
    1. a, placing one second vertical internal-corner template at the internal-corner of the building structure, and connecting two connectors to ends of one bottom angle plate, until the bottom angle plate and the second vertical internal-corner template together form a closed frame construction;
    2. b, docking the first vertical internal-corner template on the second vertical internal-corner template, connecting one first standard interior-wallboard on the connector of the first vertical internal-corner template toward the central direction of the wall plane;
    3. c, connecting one second standard interior-wallboard on the side of the first standard interior-wallboard toward the central direction of the wall plane;
    4. d, connecting one third standard interior-wallboard on the side of the second standard interior-wallboard toward the central direction of the wall plane, and connecting one second standard interior-wallboard on the sides of two third standard interior-wallboards toward the central direction of the wall plane;
    5. e, repeating the step d, until the gap between two adjacent third standard interior-wallboards is less than the width of the second standard interior-wallboard, then connecting one non-standard interior-wallboard according to the specific width of the gap;
    6. f, connecting all the bottom surfaces of the first standard interior-wallboard, the second standard interior-wallboard, the third standard interior-wallboard and the non-standard interior-wallboard to one bottom angle plate;
    7. g, placing one vertical external-corner template at the external-corner of the building structure, and connecting one first non-standard exterior-wallboard on the connector of the vertical external-corner template toward the central direction of the wall plane;
    8. h, mounting the first, second, and third standard exterior-wallboards at the corresponding exterior-wall places of the first, second, and third standard interior-wallboards;
    9. i, until the gap between the third standard exterior-wallboard adjacent to the exterior-wall plane is less than the width of the second standard exterior-wallboard, connecting one second non-standard exterior-wallboard according to the specific width of the gap, completing the connection of one wall template; then completing the connection of other wall templates with the same connection method;
    10. j, mounting the back beam and the interactive wiredrawing bar group in the corresponding via-holes of the interior and exterior-wallboards;
    11. k, mounting the horizontal internal-corner template on the top of the interior-wallboard, mounting the keel between two opposite horizontal internal-corner templates and aligning the keel to the vertical plane of the third standard interior-wallboard, mounting the adjustable support bar at intervals along the length direction under each keel, mounting the meteor hammer between two adjacent keels, connecting the top of the adjustable support bar to the meteor hammer, and connecting the bottom of the adjustable support bar to the floor;
    12. l, connecting the first standard floor template at the gap between the keel and the horizontal internal-corner template;
    13. m, in the direction from the floor to the centre thereof, connecting the second standard floor template between two adjacent keels;
    14. n, repeating the step m, until the gap width of two adjacent keels is less than the length of the second standard floor template, then connecting the non-standard floor template according to the specific width of the gap.
  • Compared with the prior art, the benefits of the present invention are: the first standard interior-wall template of the present invention can be detachably connected to the internal-corner close to the building structure, and the first non-standard exterior-wall template can be detachably connected to the external-corner close to the building structure, so that the first vertical interactive wiredrawing bar group is closer to the corner position of the building structure, greatly improving the template stress state of the corner part of the building structure. There is no need for the second standard interior and exterior-wallboards of the present template system to open interactive wiredrawing bar holes. In this template system, the horizontal spacing and the height spacing of the interactive wiredrawing bar group are fixed, standardized, and serialized, thus reducing the processing difficulty and cost of the template. Meanwhile, holes don't need to change their location repeatedly, improving the template turnover rate, extending the template service life, and greatly reducing the overall cost of the structural template. Meanwhile, the closed frame formed by the bottom angle plate and the second vertical internal-corner template as well as the integral structure of all interior-wallboards of the wall through the bottom angle plate and the first vertical internal-corner template greatly enhance the overall structural rigidity of the template system. Furthermore, the plane frame formed by the bottom angle plate and the second vertical internal-corner template simplifies the horizontal mode calibration procedure of the interior-wallboard in advance, and improves the building efficiency of the template system.
  • Brief Description of the Drawings
    • Fig. 1 is a partial three-dimensional schematic diagram of concreting an assembling and dismantling-beforehand structural template system to form a wall, according to the embodiment of the present invention.
    • Fig. 2 is a vertical cross-section schematic diagram of concreting an assembling and dismantling-beforehand structural template system to form a wall, according to the embodiment of the present invention.
    • Fig. 3 is a horizontal cross-sectional schematic diagram of Fig. 2.
    • Fig. 4 is a partial enlargement schematic diagram of Fig. 3.
    • Fig. 5 is a top view schematic diagram of Fig. 2.
    • Fig. 6 is a schematic diagram of the mounting relation among the second vertical internal-corner template, the bottom angle plate, and the first vertical internal-corner template of the assembling and dismantling-beforehand structural template system in Fig. 1.
    Detailed Description of the Embodiments
  • To clarify the technical problem solved by the present invention, technical scheme and its beneficial effects, the present invention is further described in details in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiment described here is merely used to explain general principles of the invention, instead of limiting the scope of the invention.
  • As shown in Fig. 1 to Fig. 5, according to one preferred embodiment of the present invention, an assembling and dismantling-beforehand structural template system comprises a vertical structural template system, a horizontal structural template system, and a support system.
  • The vertical structural template system comprises an interior-wallboard 1, an exterior-wallboard 2, an interactive wiredrawing bar group 3, a vertical internal-corner template 4, a vertical external-corner template 5 and a back beam 6.
  • The back beam 6 is horizontally mounted at the relative position of the interior and exterior- wallboards 1, 2. The vertical internal-corner template 4 is mounted at the internal-corner of the building structure. The vertical external-corner template 5 is mounted at the external-corner of the building structure. Two adjacent sides of the vertical internal-corner template 4 both have connectors 41, and two adjacent sides of the vertical external-corner template 5 also both have connector 51.
  • The interior-wallboard 1 comprises a first standard interior-wallboard 11, a second standard interior-wallboard 12, a third standard interior-wallboard 13 and a non-standard interior-wallboard 14. The exterior-wallboard 2 comprises a first standard exterior-wallboard 21, a second standard exterior-wallboard 22, a third standard exterior-wallboard 23, a first non-standard exterior-wallboard 24 and a second non-standard exterior-wallboard 25. The width of the second standard interior-wallboard 12 is greater than the width of the non-standard interior-wallboard 14, and the width of the second standard exterior-wallboard 22 is greater than the width of the second non-standard exterior-wallboard 25.
  • In particular, the vertical internal-corner template 4 comprises a first vertical internal-corner template 40a and a second vertical internal-corner template 40b which are top and bottom docked. The first and second vertical internal- corner templates 40a, 40b are detachably connected. The horizontal structural template system comprises a bottom angle plate 10; two connectors 401b of the second vertical internal-corner template 40b are detachably connected to ends of one bottom angle plate 10.
  • Two connectors 401a of the first vertical internal-corner template 40a are detachably connected to one first standard interior-wallboard 11. The bottom surfaces of the first standard interior-wallboard 11, the second standard interior-wallboard 12, the third standard interior-wallboard 13 and the non-standard interior-wallboard 14 are all detachably connected to one bottom angle plate 10. Two connectors 51 of the vertical external-corner template 5 are detachably connected to one side of one first non-standard exterior-wallboard 24. Another side of two first non-standard exterior-wallboards 24 are detachably connected to one first standard exterior-wallboard 21.
  • The first standard interior-wallboard 11, the third standard interior-wallboard 13, the first standard exterior-wallboard 21 and the third standard exterior-wallboard 23 all have via-holes (not shown in figures). The via-hole position of the first standard interior-wallboard 11 is corresponding to the via-hole position of the first standard exterior-wallboard 21, and the via-hole position of the third standard interior-wallboard 13 is corresponding to the via-hole position of the third standard exterior-wallboard 23. The interactive wiredrawing bar group 3 crosses through two opposite via-holes and two opposite back beams 6 of the interior and exterior- wallboards 1, 2.
  • The above horizontal structural template system further comprises a horizontal and vertical internal-corner template 7 and a floor template 8. The floor template 8 comprises a first standard floor template 81, a second standard floor template 82, a non-standard floor template 83 and a keel 84. The support system comprises an adjustable support bar 301 and a meteor hammer (not shown in figures).
  • One side of the horizontal and vertical internal-corner template 7 is detachably connected to the top of the interior-wallboard 1, and another side is detachably connected to one side of floor template 8. The keel 84 is detachably connected between two opposite horizontal and vertical internal-corner templates 7. The keel 84 is set along the length direction of the horizontal and vertical internal-corner template 7 at intervals; its length direction is parallel with the width direction of the floor template 8. The first standard floor template 81 is connected between horizontal and vertical internal-corner template 7 and the keel 84. The second standard floor template 82 and non-standard floor template 83 are detachably connected to two adjacent keels 84. The meteor hammer is connected between two adjacent keels 84. The top of the adjustable support bar 301 is detachably connected to the meteor hammer, and the bottom of the adjustable support bar 301 is in contact with the floor 200.
  • The width of the first non-standard exterior-wall template 24 is equal to the sum of the width of the vertical internal-corner template 4 and the thickness of the wall 100. One side of the first standard interior-wallboard 11 is detachably connected to the vertical internal-corner template 4, and another side is detachably connected to one side of the second standard interior-wallboard 12. The third standard interior-wallboard 13 is detachably connected between the adjacent second standard interior-wallboards 12 or two sides of the non-standard interior-wallboard 14. The positions of the first, second, and third standard exterior- wallboards 21, 22, 23 are respectively corresponding to the positions of the first, second, and third standard interior- wallboards 11, 12, 13. One end of the first standard floor template 81 is detachably connected to the horizontal internal-corner template 4, and another end is detachably connected to the keel 84.
  • The second standard floor template 82 and the non-standard floor template 83 are between two adjacent keels 84. Two ends of the second standard floor template 82 and the non-standard floor template 83 are detachably connected to the keel 84. A vertical central plane of two spaced adjacent third standard interior-wallboards 13 coincides with a central plane of the keel 84.
  • In this embodiment, the above-mentioned "detachable connection" is pin or bolt connection.
  • In this embodiment, the first standard interior-wall template 11 can be detachably connected to an internal-corner close to the building structure, and the first non-standard exterior-wall template 24 can be detachably connected to an external-corner close to the building structure, so that the first vertical interactive wiredrawing bar group 3 is closer to the corner position of the building structure, greatly improving the template stress state of the corner part of the building structure. In this template system, there is no need for the second standard interior and exterior- wallboards 12, 22 to open interactive wiredrawing bar holes. In this template system, the horizontal spacing and the height spacing of the interactive wiredrawing bar group 3 are fixed, standardized, and serialized, greatly reducing the processing difficulty and cost of the template. Meanwhile, holes don't need to change their location repeatedly, improving the template turnover rate, extending the template service life, and greatly reducing the overall cost of the structural template. In the actual use, walls can have many kinds of the height or thickness. When the height of the wall is greater or less than this height range, there can be another template system with different via-hole density. In practice, since there is little difference among the height or thickness of walls of each floor, designing a few template systems can handle different walls in the actual use.
  • Meanwhile, the closed frame formed by the bottom angle plate 10 and the second vertical internal-corner template 40b as well as the integral structure of all interior-wallboards 1 of the wall 100 through the bottom angle plate 10 and the first vertical internal-corner template 40a greatly enhance the overall structural rigidity of the template system. Furthermore, the plane frame formed by the bottom angle plate 10 and the second vertical internal-corner template 40b simplifies the horizontal mode calibration procedure of the interior-wallboard 1 in advance, and improves the building efficiency of the template system.
  • The construction method of the above-mentioned assembling and dismantling-beforehand structural template system comprises following steps:
    • a, placing one second vertical internal-corner template 40b at the internal-corner of the building structure, and connecting two connectors 401b to ends of one bottom angle plate 10, until the bottom angle plate 10 and the second vertical internal-corner template 40b together form a closed frame construction;
    • b, docking the first vertical internal-corner template 40a on the second vertical internal-corner template 40b, connecting one first standard interior-wallboard 11 on the connector of the first vertical internal-corner template 40a toward the central direction of the wall plane;
    • c, connecting one second standard interior-wallboard 12 on the side of the first standard interior-wallboard 11 toward the central direction of the wall plane 100;
    • d, connecting one third standard interior-wallboard 13 on the side of the second standard interior-wallboard 12 toward the central direction of the wall plane 100, and connecting one second standard interior-wallboard 12 on the sides of two third standard interior-wallboards 13 toward the central direction of the wall plane 100;
    • e, repeating the step d, until the gap between two adjacent third standard interior-wallboards 13 is less than the width of the second standard interior-wallboard 12, then connecting one non-standard interior-wallboard 14 according to the specific width of the gap;
    • f, connecting all the bottom surfaces of the first standard interior-wallboard 11, the second standard interior-wallboard 12, the third standard interior-wallboard 13 and the non-standard interior-wallboard 14 to one bottom angle plate 10;
    • g, placing one vertical external-corner template 5 at the external-corner of the building structure, and connecting one first non-standard exterior-wallboard 24 on the connector of the vertical external-corner template 5 toward the central direction of the wall plane 400;
    • h, mounting the first, second, and third standard exterior- wallboards 21, 22, 23 at the corresponding exterior-wall places of the first, second, and third standard interior- wallboards 11, 12, 13;
    • i, until the gap between the third standard exterior-wallboards 23 adjacent to the exterior-wall plane is less than the width of the second standard exterior-wallboard 22, connecting one second non-standard exterior-wallboard 25 according to the specific width of the gap, completing the connection of one wall template 100; then completing the connection of other wall templates 400 with the same connection method;
    • j, mounting the back beam 6 and the interactive wiredrawing bar group 3 in the corresponding via-holes of the interior and exterior- wallboards 1, 2;
    • k, mounting the horizontal internal-corner template 7 on the top of the interior-wallboard 1, mounting the keel 84 between two opposite horizontal internal-corner templates 7 and aligning the keel 84 to the vertical plane of the third standard interior-wallboard 13, mounting the adjustable support bar 301 at intervals along the length direction under each keel 84, mounting the meteor hammer between two adjacent keels 84, connecting the top of the adjustable support bar 301 to the meteor hammer, and connecting the bottom of the adjustable support bar 301 to the floor 100;
    • 1, connecting the first standard floor template 81 at the gap between the keel 84 and the horizontal internal-corner template 7;
    • m, in the direction from the floor to the centre thereof, connecting the second standard floor template 82 between two adjacent keels 84;
    • n, repeating the step m, until the gap width of two adjacent keels 84 is less than the length of the second standard floor template 82, then connecting the non-standard floor template 83 according to the specific width of the gap.
  • The foregoing is only the preferred embodiment of the present invention, instead of limiting the present invention. Any alterations, equivalent replacements, and improvements, as long as not departing from the spirit and scope of the invention, should be within the protection scope of the invention.

Claims (10)

  1. An assembling and dismantling-beforehand structural template system, comprising a vertical structural template system, a horizontal structural template system and a support system; wherein the vertical structural template system comprises an interior-wallboard, an exterior-wallboard, an interactive wiredrawing bar group, a vertical internal-corner template, a vertical external-corner template and a back beam, the back beam is horizontally mounted at the relative position of the interior and exterior-wallboards, the vertical internal-corner template is mounted at the internal-corner of the building structure, the vertical external-corner template is mounted at the external-corner of the building structure, two adjacent sides of the vertical internal-corner template both have connectors, two adjacent sides of the vertical external-corner template also both have connectors; wherein the interior-wallboard comprises a first standard interior-wallboard, a second standard interior-wallboard, a third standard interior-wallboard and a non-standard interior-wallboard, the exterior-wallboard comprises a first standard exterior-wallboard, a second standard exterior-wallboard, a third standard exterior-wallboard, a first non-standard exterior-wallboard and a second non-standard exterior-wallboard; the width of the second standard interior-wallboard is greater than the width of the non-standard interior-wallboard, the width of the second standard exterior-wallboard is greater than the width of the second non-standard exterior-wallboard;
    the vertical internal-corner template comprises a first vertical internal-corner template and a second vertical internal-corner template which are top and bottom docked, the first and second vertical internal-corner templates are detachably connected with each other; the horizontal structural template system comprises a bottom angle plate; two connectors of the second vertical internal-corner template are detachably connected to ends of one bottom angle plate, two connectors of the first vertical internal-corner template are detachably connected to one first standard interior-wallboard, the bottom surfaces of the first standard interior-wallboard, the second standard interior-wallboard, the third standard interior-wallboard and the non-standard interior-wallboard are all detachably connected to one bottom angle plate; two connectors of the vertical external-corner template are detachably connected to one side of one first non-standard exterior-wallboard, another side of two first non-standard exterior-wallboards are detachably connected to one first standard exterior-wallboard;
    the first standard interior-wallboard, the third standard interior-wallboard, the first standard exterior-wallboard and the third standard exterior-wallboard all have via-holes, and the via-hole position of the first standard interior-wallboard is corresponding to the via-hole position of the first standard exterior-wallboard, via-hole position of the third standard interior-wallboard is corresponding to the via-hole position of the third standard exterior-wallboard, the pair wiredrawing bar group crosses through two opposite via-holes and two opposite back beams of the interior and exterior-wallboards.
  2. The assembling and dismantling-beforehand structural template system of claim 1, wherein the horizontal structural template system further comprises a horizontal and vertical internal-corner template and a floor template, the floor template comprises a first standard floor template, a second standard floor template, a non-standard floor template and a keel, the support system comprises an adjustable support bar and a meteor hammer; one side of the horizontal and vertical internal-corner template is detachably connected to the top of the interior-wallboard, another side of the horizontal and vertical internal-corner template is detachably connected to one side of the floor template, the keel is detachably connected between two opposite horizontal and vertical internal-corner templates, the keel is set along the length direction of the horizontal and vertical internal-corner template at intervals, its length direction is parallel with the width direction of the floor template; the first standard floor template is connected between the horizontal and vertical internal-corner template and the keel, the second standard floor template and the non-standard floor template are detachably connected between two adjacent keels, the meteor hammer is connected between two adjacent keels, the top of the adjustable support bar is detachably connected to the meteor hammer, and the bottom of the adjustable support bar is in contact with the floor.
  3. The assembling and dismantling-beforehand structural template system of claim 1 or 2, wherein the width of the first non-standard exterior-wall template is equal to the sum of the width of the vertical internal-corner template and the thickness of the wall.
  4. The assembling and dismantling-beforehand structural template system of claim 1 or 2, wherein one side of the first standard interior-wallboard is detachably connected to the first vertical internal-corner template, and another side is detachably connected to one side of the second standard interior-wallboard.
  5. The assembling and dismantling-beforehand structural template system of claim 1 or 2, wherein the third standard interior-wallboard is detachably connected between the adjacent second standard interior-wallboards or at two sides of the non-standard interior-wallboard, the positions of the first, second, and third standard exterior-wallboards are respectively corresponding to the positions of the first, second, and third standard interior-wallboards.
  6. The assembling and dismantling-beforehand structural template system of claim 2, wherein one end of the first standard floor template is detachably connected to the horizontal internal-corner template, and another end is detachably connected to the keel.
  7. The assembling and dismantling-beforehand structural template system of claim 2, wherein the second standard floor template and the non-standard floor template are between two adjacent keels, and wherein two ends of the second standard floor template and the non-standard floor template are detachably connected to the keel.
  8. The assembling and dismantling-beforehand structural template system of claim 2, wherein a vertical central plane of two spaced adjacent third standard interior-wallboards coincides with a central plane of the keel.
  9. The assembling and dismantling-beforehand structural template system of claim 1 or 2, wherein the detachable connection is pin or bolt connection.
  10. A construction method for the assembling and dismantling-beforehand structural template system of claim 2, comprising following steps:
    a, placing one second vertical internal-corner template at the internal-corner of the building structure, and connecting two connectors to ends of one bottom angle plate, until the bottom angle plate and the second vertical internal-corner template together form a closed frame construction;
    b, docking the first vertical internal-corner template on the second vertical internal-corner template, connecting one first standard interior-wallboard on the connector of the first vertical internal-corner template toward the central direction of the wall plane;
    c, connecting one second standard interior-wallboard on the side of the first standard interior-wallboard toward the central direction of the wall plane;
    d, connecting one third standard interior-wallboard on the side of the second standard interior-wallboard toward the central direction of the wall plane, and connecting one second standard interior-wallboard on the sides of two third standard interior-wallboards toward the central direction of the wall plane;
    e, repeating the step d, until the gap between two adjacent third standard interior-wallboards is less than the width of the second standard interior-wallboard, then connecting one non-standard interior-wallboard according to the specific width of the gap;
    f, connecting all the bottom surfaces of the first standard interior-wallboard, the second standard interior-wallboard, the third standard interior-wallboard and the non-standard interior-wallboard to one bottom angle plate;
    g, placing one vertical external-corner template at the external-corner of the building structure, and connecting one first non-standard exterior-wallboard on the connector of the vertical external-corner template toward the central direction of the wall plane;
    h, mounting the first, second, and third standard exterior-wallboards at the corresponding exterior-wall places of the first, second, and third standard interior-wallboards;
    i, until the gap between the third standard exterior-wallboards adjacent to the exterior-wall plane is less than the width of the second standard exterior-wallboard, connecting one second non-standard exterior-wallboard according to the specific width of the gap, completing the connection of one wall template; then completing the connection of other wall templates with the same connection method;
    j, mounting the back beam and the pair wiredrawing bar group in the corresponding via-holes of the interior and exterior-wallboards;
    k, mounting the horizontal internal-corner template on the top of the interior-wallboard, mounting the keel between two opposite horizontal internal-corner templates and aligning the keel to the vertical plane of the third standard interior-wallboard, mounting the adjustable support bar at intervals along the length direction under each keel, mounting the meteor hammer between two adjacent keels, connecting the top of the adjustable support bar to the meteor hammer, and connecting the bottom of the adjustable support bar to the floor;
    l, connecting the first standard floor template at the gap between the keel and the horizontal internal-corner template;
    m, in the direction from the floor to the centre thereof, connecting the second standard floor template between two adjacent keels;
    n, repeating the step m, until the gap width of two adjacent keels is less than the length of the second standard floor template, then connecting the non-standard floor template according to the specific width of the gap.
EP14903527.1A 2014-10-09 2014-11-17 Assembled early-removal building formwork system and erecting method thereof Withdrawn EP3205790A4 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201410529351.1A CN104264982B (en) 2014-10-09 2014-10-09 A kind of scattered spelling early tears down and build building mould system and building method thereof
PCT/CN2014/091243 WO2016054849A1 (en) 2014-10-09 2014-11-17 Assembled early-removal building formwork system and erecting method thereof

Publications (2)

Publication Number Publication Date
EP3205790A1 true EP3205790A1 (en) 2017-08-16
EP3205790A4 EP3205790A4 (en) 2018-04-04

Family

ID=52156544

Family Applications (1)

Application Number Title Priority Date Filing Date
EP14903527.1A Withdrawn EP3205790A4 (en) 2014-10-09 2014-11-17 Assembled early-removal building formwork system and erecting method thereof

Country Status (5)

Country Link
US (1) US20160298344A1 (en)
EP (1) EP3205790A4 (en)
CN (1) CN104264982B (en)
SG (1) SG11201604275RA (en)
WO (1) WO2016054849A1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108049629A (en) * 2018-02-07 2018-05-18 中天建设集团有限公司 A kind of new big section square column formwork system and method
CN109555312A (en) * 2018-12-26 2019-04-02 严雄 A kind of slab form fixation kit
WO2022051821A1 (en) * 2020-09-11 2022-03-17 Mrv Engenharia E Participacoes Sa Construction system and method with concrete forms moulded in the building itself
CN115596198A (en) * 2022-12-13 2023-01-13 中铁建设集团华北工程有限公司(Cn) Assembled Z-shaped component, assembling die and construction method thereof

Families Citing this family (46)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10253511B2 (en) * 2016-04-29 2019-04-09 Donald Sollars Multi-flex forming system
CN105971269A (en) * 2016-06-28 2016-09-28 深圳汇林达科技有限公司 Wallboard structure with template screw hole positions standardized
CN106223602A (en) * 2016-09-09 2016-12-14 深圳市天成达实业有限公司 A kind of sectioned wall template
CN108086589A (en) * 2016-11-23 2018-05-29 北京清华同衡规划设计研究院有限公司 Precast wall body, prefabricated unit body, building system and its construction method
CN106836796A (en) * 2017-03-15 2017-06-13 众建睿德钢模科技(苏州)有限公司 The box-like irregular corners building template of tool group
CN106812313A (en) * 2017-03-15 2017-06-09 众建睿德钢模科技(苏州)有限公司 The box-like external corner building template of tool group
CN107060324A (en) * 2017-03-15 2017-08-18 众建睿德钢模科技(苏州)有限公司 The box-like inner corner trim overlap joint building template of tool group
CN107386629A (en) * 2017-09-11 2017-11-24 广东铝遊家科技有限公司 Build aluminum alloy mould plate combining structure
CN107700828A (en) * 2017-09-26 2018-02-16 福建建工集团有限责任公司 A kind of shear wall corner formwork reinforcement system and preparation method thereof
CN107829556A (en) * 2017-10-23 2018-03-23 南方风机股份有限公司 One kind building aluminum alloy mould plate combined system
CN107700368B (en) * 2017-11-27 2023-12-08 中建一局集团第五建筑有限公司 Cast-in-situ arch ring template system for hollow box of large-span arch bridge and construction method of cast-in-situ arch ring template system
CN107859176A (en) * 2017-11-29 2018-03-30 湖北绿溪建筑科技有限公司 A kind of staggered floor construction in assembled architecture, improve the construction method of form cycling rate
CN108060682A (en) * 2017-12-05 2018-05-22 合迪科技江苏有限公司 Piping lane top die board mounting structure, piping lane model sheetinstallat system and its construction method
CN107829408B (en) * 2017-12-15 2023-07-07 内蒙古辽河工程局股份有限公司 Rectangular aqueduct construction steel mould trolley
CN108222322A (en) * 2017-12-19 2018-06-29 浙江绿筑集成科技有限公司 A kind of rod-pulling type faced wall construction method
CN108277977A (en) * 2018-01-17 2018-07-13 曹立英 A kind of column mould reinforcement system and preparation method thereof
CN108222497B (en) * 2018-02-13 2024-01-19 郑贤斌 Building template system
CN109025268A (en) * 2018-08-17 2018-12-18 重庆中科建设(集团)有限公司 Kitchen and toilet concrete flanging construction method
CN109306664A (en) * 2018-11-05 2019-02-05 云南建投第三建设有限公司 A kind of Thin-walled Hollow Pier slide type inner template
CN109537889B (en) * 2019-01-25 2024-03-01 曹海峰 Connection system based on universal board construction
CN109853938A (en) * 2019-03-14 2019-06-07 广东博智林机器人有限公司 Building template assembly
CN109881889A (en) * 2019-04-01 2019-06-14 威海兴德建材有限公司 The metal support arm of building template metal external supporting plate and building template
CN110454192A (en) * 2019-08-30 2019-11-15 中铁五局集团第五工程有限责任公司 A kind of Tunnel Second Lining trolley end head formwork
CN111058621B (en) * 2019-12-26 2024-06-04 江苏恒桂创科建筑工程科技有限公司 Early system of tearing open of floor template support-free
CN111779260A (en) * 2020-07-10 2020-10-16 广西汇林达科技有限公司 Assembly type combined template system and construction method thereof
CN112112325B (en) * 2020-10-13 2024-05-28 金螳螂精装科技(苏州)有限公司 Indoor partition wall mounting structure of prefabricated steel construction of assembled
US11591793B2 (en) * 2020-11-10 2023-02-28 Forma Technologies Inc. Composite conduit formwork structure and method of fabrication
CN113026999B (en) * 2020-11-24 2024-06-21 浙江亚厦装饰股份有限公司 Module integrated type wall assembly
CN112270034A (en) * 2020-11-24 2021-01-26 筑友智造科技投资有限公司 Wall splitting method, device and system
CN112727066A (en) * 2020-12-24 2021-04-30 重庆新久融科技有限公司 Aluminum alloy template transformation method and device
CN113089897B (en) * 2021-04-14 2022-05-03 河北晶达建筑科技股份有限公司 Construction method for integrally hoisting disassembly-free cement formwork
CN113216616B (en) * 2021-04-30 2022-08-09 中建四局第六建设有限公司 Device for reinforcing cast-in-place stand board of venue and construction method thereof
CN113266400B (en) * 2021-07-08 2024-06-21 中铁隧道局集团有限公司 Trolley for constructing tunnel sewage-cleaning diversion ditch and construction method thereof
CN113585721B (en) * 2021-08-03 2023-02-10 中建五局华东建设有限公司 Internal-bracing external-jacking supporting system for hospital linear accelerator area
CN113719025A (en) * 2021-08-20 2021-11-30 上海建工七建集团有限公司 External wall template structure and construction method thereof
CN113818685B (en) * 2021-09-26 2023-01-13 中国一冶集团有限公司 Bottom die device and building template device with same
CN113967822A (en) * 2021-10-25 2022-01-25 石瀚太 Full-assembly type steel structure self-propelled parking building node hole group machining method
CN114000632B (en) * 2021-11-29 2022-10-18 山东高速德建集团有限公司 Laminated slab construction structure free of ash adhesion and construction process thereof
CN114482526B (en) * 2022-03-17 2023-07-21 中交二公局萌兴工程有限公司 Assembled aluminum alloy template, construction method and application thereof
CN114562078B (en) * 2022-03-30 2023-09-08 北京住总第二开发建设有限公司 Tibetan side wall and construction method thereof
CN114905620B (en) * 2022-04-19 2024-05-14 湖南景辰生态环保科技有限公司 Production equipment and production method of self-heat-preservation building block
CN115182574A (en) * 2022-07-13 2022-10-14 中铁上海工程局集团有限公司 Internal and external corner construction structure and construction method
CN115110754B (en) * 2022-08-05 2023-07-21 中国十七冶集团有限公司 Assembled aluminum alloy combined template and assembling method
CN115199029A (en) * 2022-09-13 2022-10-18 中国建筑第二工程局有限公司 Cast-in-place beam-slab structure formwork system and construction method thereof
CN115476425A (en) * 2022-10-11 2022-12-16 兰州理工大学 Square PC well chamber prefabricated template and construction assembling and disassembling method
CN115652905A (en) * 2022-11-04 2023-01-31 中建八局第二建设有限公司 Novel brick moulding bed construction method

Family Cites Families (44)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3274306A (en) * 1966-09-20 Method for casting concrete structures
US1579822A (en) * 1923-03-23 1926-04-06 Arthur K Knickerbocker Toy
GB273510A (en) * 1926-07-23 1927-07-07 Arthur Earl Troiel Improvements in and relating to plastic wall construction
US1694292A (en) * 1928-02-10 1928-12-04 Fred A Tracey Method of constructing and supporting forms for concrete work
US2017553A (en) * 1931-11-09 1935-10-15 Arthur E Troiel Form for plastic structural work
US2434708A (en) * 1942-12-05 1948-01-20 William R Mathis Molding apparatus for forming buildings
US2442292A (en) * 1944-04-24 1948-05-25 Nicholas Del Genio Form for plastic structural work
US2511584A (en) * 1947-05-12 1950-06-13 Hayden C Hill Wall form construction
US2566528A (en) * 1948-07-15 1951-09-04 Mackie Robert Shuttering for use in the manufacture of concrete structures
US2632228A (en) * 1949-04-13 1953-03-24 William R Huntington Form for molding concrete walls
US3035321A (en) * 1953-03-16 1962-05-22 Victor E O Hennig Demountable concrete form
US2776464A (en) * 1953-08-12 1957-01-08 Lyle E Stewart Concrete form construction
FR1265337A (en) * 1960-05-19 1961-06-30 Recoverable formwork box devices for building construction
US3182374A (en) * 1961-02-08 1965-05-11 Carl E Cook Method of and apparatus for molding concrete buildings monolithically
US3822853A (en) * 1969-12-30 1974-07-09 Shelley Enterprises Apparatus for producing modular boxlike units
US3853452A (en) * 1972-05-22 1974-12-10 E Delmonte Molding machine
US3826460A (en) * 1972-09-13 1974-07-30 J Cast Monolithic structure forming means with metal tubular bracing
DE2323532A1 (en) * 1973-05-10 1974-11-28 Dreiskaemper Gmbh FORMWORK MADE OF GRID FORMWORK ELEMENTS FOR QUICK ASSEMBLY
US4334372A (en) * 1980-03-06 1982-06-15 Colmar Jack E Movable web variable exhibitor
US4446640A (en) * 1982-02-18 1984-05-08 Richard Kenney Price ticket and like displays
FR2544356B1 (en) * 1983-04-18 1987-07-17 Pujol Barcons Salvador CONSTRUCTION ASSEMBLY FOR CASTING MONOLITHIC RIGID STRUCTURES AND METHOD FOR CONSTRUCTING SUCH STRUCTURES
US4593824A (en) * 1984-12-14 1986-06-10 Armstrong Store Fixture Corporation Tag holder
US5419066A (en) * 1992-07-02 1995-05-30 Logigraf Inc. Card holder extrusion
US5794795A (en) * 1996-06-17 1998-08-18 Stemmons; William L. Framework system for electrical/electronic controls
WO1997048862A1 (en) * 1996-06-21 1997-12-24 Fasteners For Retail, Inc. Holder for electronic information carrier
FR2761569B1 (en) * 1997-03-27 1999-06-11 Gino Faccin ELECTRIC WIRING CHASSIS
US6935062B2 (en) * 2002-07-29 2005-08-30 Fast Industries, Ltd. Label holder for electronic labeling devices
KR100557330B1 (en) * 2003-08-26 2006-03-07 주식회사 삼중종합건축사사무소 A Dismonuting Wall And Floor Form
WO2005038757A1 (en) * 2003-10-14 2005-04-28 Fast Industries, Ltd Label holder
US7287350B2 (en) * 2004-10-08 2007-10-30 Jacob Fast Fixed angle ESL label holder with flex grip and moisture seal
ITMI20050709A1 (en) * 2005-04-20 2006-10-21 Coepte S R L DEVICE FOR SUPPORTING ELECTRICAL COMPONENTS AND WIRING ACCESSORIES WITH HIGH PRACTICAL USE
ITMI20050708A1 (en) * 2005-04-20 2006-10-21 Coepte S R L PROFILE FOR SUPPORTING HIGH VERSATILITY ELECTRICAL COMPONENTS
WO2007079596A1 (en) * 2006-01-13 2007-07-19 Polywheels Manufacturing Ltd. Concrete forming system
JP3905551B1 (en) * 2006-10-20 2007-04-18 株式会社清都組 Formwork structure, panel support material, panel support material for corners, panel support material for exit corners and formwork method
SE534235C2 (en) * 2009-10-23 2011-06-07 Clamco Invest Ab Metal profile, fastening device and housing including fastening system with metal profile and fastening device
DE102009055690A1 (en) * 2009-11-25 2011-05-26 Peri Gmbh Ausschalvorrichtung
CN102477770A (en) * 2010-11-25 2012-05-30 欧文斯科宁知识产权资产有限公司 Structural member for concrete slabs and construction method for pouring concrete slabs
CN102828611B (en) * 2011-06-17 2013-10-09 深圳汇林达科技有限公司 Early-removing template system and construction method thereof
CN202187547U (en) * 2011-06-17 2012-04-11 深圳汇林达科技有限公司 Light and high-strength alloy early-removed template system
CN202220434U (en) * 2011-07-29 2012-05-16 深圳市良创建筑铝模制品有限公司 Aluminum-alloy building formwork component
CN103089004B (en) * 2013-01-31 2015-02-18 朱宏宇 Combination frame module, component frame module and tool set structure and installing and dismantling method thereof
CN104060819B (en) * 2013-03-19 2016-05-04 中建四局第三建筑工程有限公司 Utilize the method for typified form construction shear wall and typified form used
CN203308084U (en) * 2013-06-08 2013-11-27 广东台澳特种铝材有限公司 Aluminum template system for building
CN204163397U (en) * 2014-10-09 2015-02-18 深圳汇林达科技有限公司 A kind of loose spelling early tears down and build building mould system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108049629A (en) * 2018-02-07 2018-05-18 中天建设集团有限公司 A kind of new big section square column formwork system and method
CN109555312A (en) * 2018-12-26 2019-04-02 严雄 A kind of slab form fixation kit
CN109555312B (en) * 2018-12-26 2024-04-05 严雄 Fixing assembly for floor slab template
WO2022051821A1 (en) * 2020-09-11 2022-03-17 Mrv Engenharia E Participacoes Sa Construction system and method with concrete forms moulded in the building itself
CN115596198A (en) * 2022-12-13 2023-01-13 中铁建设集团华北工程有限公司(Cn) Assembled Z-shaped component, assembling die and construction method thereof

Also Published As

Publication number Publication date
SG11201604275RA (en) 2016-07-28
CN104264982A (en) 2015-01-07
EP3205790A4 (en) 2018-04-04
CN104264982B (en) 2016-08-17
US20160298344A1 (en) 2016-10-13
WO2016054849A1 (en) 2016-04-14

Similar Documents

Publication Publication Date Title
EP3205790A1 (en) Assembled early-removal building formwork system and erecting method thereof
US11946245B2 (en) Connector for a modular building
US20230392366A1 (en) Structural modular building connector
US20230043888A1 (en) Modular Building Units, and Methods of Constructing and Transporting Same
CN102031869A (en) Horizontal template steel structure bracket
CN108894338B (en) Side column node connecting device of modular unit
JP6573490B2 (en) building
BR112018002870B1 (en) CONNECTOR FOR A MODULAR CONSTRUCTION

Legal Events

Date Code Title Description
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE

PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20170509

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

AX Request for extension of the european patent

Extension state: BA ME

DAX Request for extension of the european patent (deleted)
A4 Supplementary search report drawn up and despatched

Effective date: 20180307

RIC1 Information provided on ipc code assigned before grant

Ipc: E04G 11/08 20060101ALI20180301BHEP

Ipc: E04G 11/36 20060101ALI20180301BHEP

Ipc: E04G 11/02 20060101AFI20180301BHEP

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN

18D Application deemed to be withdrawn

Effective date: 20181003