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WO2025032874A1 - Procédé de construction utilisant du béton pour assembler un ensemble structure fabriqué à partir d'éléments préfabriqués - Google Patents

Procédé de construction utilisant du béton pour assembler un ensemble structure fabriqué à partir d'éléments préfabriqués Download PDF

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Publication number
WO2025032874A1
WO2025032874A1 PCT/JP2024/009574 JP2024009574W WO2025032874A1 WO 2025032874 A1 WO2025032874 A1 WO 2025032874A1 JP 2024009574 W JP2024009574 W JP 2024009574W WO 2025032874 A1 WO2025032874 A1 WO 2025032874A1
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Prior art keywords
molding
board
grooves
concrete
dovetail grooves
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PCT/JP2024/009574
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English (en)
Japanese (ja)
Inventor
美藤雅康
美藤町子
北村知世
横畑直世
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    • 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
    • E04B1/02Structures consisting primarily of load-supporting, block-shaped, or slab-shaped elements
    • E04B1/14Structures consisting primarily of load-supporting, block-shaped, or slab-shaped elements the elements being composed of two or more materials
    • 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
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/30Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons the supporting parts being composed of two or more materials; Composite steel and concrete constructions

Definitions

  • the present invention relates to a construction method in which a structure assembly made of molded components is bonded with concrete.
  • Traditional concrete structures include reinforced concrete structures, which are constructed by pouring concrete into a formwork made of reinforced steel bars, and steel-framed structures.
  • Reinforced concrete structures were constructed by pouring concrete into a plywood formwork framework assembled with auxiliary rails and temporary materials, and then dismantling the formwork after the concrete had solidified. The dismantled plywood formwork and temporary materials are reused.
  • Patent No. 6688960 (Inventor's patent)
  • the present invention can solve the above problems, such as the peeling of finishing materials on concrete structures and the corrosion of reinforcing bars.
  • the present invention provides a structure in which a structure assembly made of molded members is joined with concrete, and the strength and shape can be easily changed by increasing or decreasing the number of each molded member that makes up the structure assembly of molded members, which replaces reinforcing bars.
  • This invention has been made to solve the above problems, and is based on a molding board material A having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular grooves, a molding board material B having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular through holes, a molding board material C having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular grooves, and a molding board material D having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular through holes.
  • Molding board D a wall and floor molding component formed by arranging two molding boards A side by side and inserting and fixing a plurality of board separators with dovetails at both ends into the dovetail grooves of the molding board A at equal intervals; an external molding component formed by arranging molding boards A and B side by side and inserting and fixing a plurality of board separators with dovetails at both ends into the dovetail grooves of each molding board at equal intervals; an external molding component formed by arranging two molding boards B side by side and inserting and fixing a plurality of board separators with dovetails at both ends into the dovetail grooves of the molding board B at equal intervals;
  • a construction method (claim 1) is provided for joining a construction assembly made of molded components with concrete, which is characterized in that: a base molding component made by inserting and fixing multiple plate separators with tenons at equal intervals, a corner decorative molding component made by arranging molding board C and molding board D side by side and fixing multiple plate separators with
  • Molding board material A has a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular grooves
  • molding board material B has a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular through holes
  • molding board material C has a board surface with joint grooves on one side and multiple dovetail grooves and rectangular grooves
  • molding board material D has a board surface with joint grooves on one side and multiple dovetail grooves and rectangular through holes
  • two molding board materials A are placed side by side to mold
  • molding component for a wall or floor panel is formed by inserting and fixing at equal intervals a number of plate separators with dovetails at both ends into the dovetail grooves of molding board material A; an external molding component is formed by juxtaposing molding board material A and molding board material B and inserting and fixing at equal intervals a number of plate separators with dovetails at both ends into the dovetail grooves of each molding board material;
  • two molding board materials B are juxtaposed and multiple plate separators with
  • a method for constructing a structure assembly made of molded members by combining them with concrete (claim 2) is provided, which is characterized in that: a base molded member formed by fixing molded plate C and molded plate D side by side, a decorative molded member formed by fixing multiple plate separators with dovetails at both ends to the dovetail grooves of each molded plate at equal intervals and the insertion side with a splint; a decorative molded member formed by arranging two molded plate materials D side by side, and fixing multiple plate separators with dovetails at both ends to the dovetail grooves of molded plate D at equal intervals and the insertion side with a splint; a structure assembly of molded members formed by assembling and fixing each of the molded member structures using joint wood and screws; and a method for constructing a structure assembly made of molded members by combining them with concrete, which is characterized in that: concrete is poured into the structure assembly of molded members, and a non-reinforced concrete structure is obtained in
  • a wall and floor molding component is formed by inserting and fixing several board separators at equal intervals
  • an external molding component is formed by juxtaposing molding board material A and molding board material B and inserting and fixing several board separators with dovetails at both ends into the dovetail grooves of each molding board material at equal intervals
  • a base molding component is formed by juxtaposing two molding board materials B and inserting and fixing several board separators with dovetails at both ends into the dovetail grooves of molding board material B at equal intervals
  • a molding board material C and molding board material D are juxtaposed and each molding
  • a decorative rectangular molding component is formed by fixing multiple plate separators with dovetails at both ends to the dovetail grooves of the molding plate material at equal intervals and the insertion side with a splint
  • a decorative molding component is formed by arranging two molding plate materials D side by side and fixing multiple plate separators with dovetails at both ends to the dovetail grooves of the molding plate material D at equal intervals and the
  • the notable advantages of the present invention are as follows: a) No reinforcing bar or formwork work is required. b) There will be no problems with structural fatigue or corrosion of reinforcing bars. C) The amount of concrete used can be significantly reduced. 2) The load on the structure can be significantly reduced. e) Construction costs can be significantly reduced. f) The construction period can be significantly shortened. (g) The molded components serve as insulation material inside and outside the wall, creating an insulated wall inside and outside. (h) Rigid frame structures equivalent to or better than reinforced concrete or steel frame structures can be easily constructed. R) It is easy to construct and can be built in a very short period of time. j) The molded components of the exterior walls act as heat insulators, making the structure environmentally friendly and helping to prevent global warming.
  • the present invention lists structures that can be easily and inexpensively constructed. a) Various types of unreinforced concrete fences. b) Various unreinforced concrete mini-houses. c) Various evacuation shelters. 2) Various types of unreinforced concrete houses. e) Various low-rise, unreinforced concrete rental housing. (e) Various high-rise unreinforced concrete rental housing. g) Plain concrete viaducts and expressways. (c) Unreinforced concrete forest road. (l) Plain concrete retaining wall. u) Plain concrete water tank. ) and various other structures can be constructed.
  • a molding board A having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular grooves
  • a molding board B having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular through holes
  • a molding board C having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular grooves
  • a molding board C having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular through holes.
  • a base molding component is made by inserting and fixing multiple processed board separators at equal intervals
  • a square decorative molding component is made by arranging molding board C and molding board D side by side and fixing multiple board separators with dovetails at both ends into the dovetail grooves of each molding board at equal interval
  • Each of these molding components is assembled and fixed using joint wood and screws to create a molding component structure. Concrete is poured into the molding component structure structure, and the molding component structure structure and the concrete become one as the concrete solidifies, resulting in the above-mentioned effects and the large-scale consumption of domestic lumber, which has the great effect of revitalizing the exhausted mountain village forestry industry.
  • a molding board material A having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular grooves
  • a molding board material B having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular through holes
  • a molding board material C having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular grooves
  • a molding board material D having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular through holes
  • a wall and floor molding component is formed by arranging two molding boards A side by side and inserting and fixing multiple board separators with dovetails at both ends into the dovetail grooves of molding board A at equal intervals.
  • An external molding component is formed by arranging molding boards A and B side by side and inserting and fixing multiple board separators with dovetails at both ends into the dovetail grooves of each molding board at equal intervals.
  • Two molding boards B are arranged side by side and dovetails are formed on both ends of molding board B.
  • a base molding component is formed by inserting and fixing multiple plate separators at equal intervals
  • a corner decorative molding component is formed by arranging molding board C and molding board D side by side and fixing multiple plate separators with dovetails at both ends into the dovetail grooves of each molding board at equal intervals and the insertion side with a splint
  • a decorative molding component is formed by arranging two molding boards D side by side and fixing multiple plate separators with dovetails at both ends into the dovetail grooves of molding board D at equal intervals and the insertion side with a splint
  • a molded component structure assembly is formed by assembling and fixing each of the molding components using joint wood and screws, and pouring concrete into the molded component structure assembly, and by solidifying the concrete, a non-reinforced concrete structure is obtained in which the molded component structure assembly and the concrete are integrated, resulting in a great effect of making the strongest concrete structure.
  • a molding board A having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular grooves
  • a molding board B having a board surface with joint grooves on both sides and multiple dovetail grooves and rectangular through holes
  • a molding board C having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular grooves
  • a molding board D having a board surface with joint grooves on one side and multiple dovetail grooves and rectangular through holes
  • two molding boards A are arranged side by side to form a molding board.
  • a wall and floor molding component formed by inserting and fixing at equal intervals multiple plate separators with dovetails at both ends into the dovetail grooves of A; an external molding component formed by juxtaposing molding board material A and molding board material B and inserting and fixing at equal intervals multiple plate separators with dovetails at both ends into the dovetail grooves of each molding board material; a base molding component formed by juxtaposing two molding board materials B and inserting and fixing at equal intervals multiple plate separators with dovetails at both ends into the dovetail grooves of molding board material B; molding board material C and molding board D are arranged side by side, and multiple board separators with dovetails at both ends are fixed at equal intervals to the dovetail grooves of each molding board D with the side inserted by a splint, forming a decorative molding component.
  • Two molding boards D are arranged side by side, and multiple board separators with dovetails at both ends are fixed at equal intervals to the dovetail grooves of the molding board D with the side inserted by a splint, forming a decorative molding component.
  • Each molding component is assembled and fixed using joint wood or screws.
  • Fig. 1 is a cross-sectional view of a structure in which a structure assembly made of molded components according to the present invention is joined with concrete.
  • Fig. 2 is a cross-sectional view of a rigid-frame structure in which a structure assembly made of molded components is joined with concrete.
  • Fig. 3 is a bird's-eye view of molding board A.
  • Fig. 4 is a bird's-eye view of molding board B.
  • Fig. 5 is a bird's-eye view of molding board C.
  • Fig. 6 is a bird's-eye view of molding board D.
  • Fig. 7 is a bird's-eye view of a joint board 8.
  • Fig. 8 is a bird's-eye view of a wall and floor molding component.
  • Fig. 9 is a bird's-eye view of an external molding component.
  • Fig. 10 is a bird's-eye view of a core molding component.
  • Fig. 11 is a bird's-eye view of a corner decorative molding component.
  • Fig. 12 is a bird's-eye view of a decorative molding component.
  • Fig. 13 is an enlarged view of the end of Fig. 3.
  • Fig. 14 is an enlarged view of the end of Fig. 4.
  • Fig. 15 is an enlarged view of the end of Fig. 5.
  • Fig. 16 is an enlarged view of the end of Fig. 6.
  • Figure 17 is an enlarged view of the end of Figure 8.
  • Figure 18 is an enlarged view of the end of Figure 9.
  • Figure 19 is an enlarged view of the end of Figure 10.
  • Figure 20 is an enlarged view of the end of Figure 11.
  • Figure 21 is an enlarged view of the end of Figure 12.
  • Figure 22 is a bird's-eye view of a board separator with dovetail tenon work on both ends.
  • Figure 23 is a column assembly connected to a wall.
  • Figure 24 is a column assembly of a rigid frame structure.
  • Figure 25 is an enlarged view of part A in Figure 1.
  • Figure 26 is an enlarged view of part B in Figure 2.
  • Figure 27 is a beam assembly connected to a slab floor plate.
  • Figure 1 shows molded board material A having a board surface 2 with joint grooves 1 on both sides and multiple dovetail grooves 3 and rectangular grooves 4; molded board material B having a board surface 2 with joint grooves 1 on both sides and multiple dovetail grooves 3 and rectangular through holes 5; molded board material C having a board surface with joint grooves 1 on one side and multiple dovetail grooves and rectangular grooves; molded board material D having a board surface with joint grooves on one side and multiple dovetail grooves 3 and rectangular through holes 5;
  • the molding plate material A is arranged in two sheets, and a plurality of plate separators 6 with dovetails at both ends are inserted and fixed at equal intervals into the dovetail grooves 3 of the molding plate material A to form a wall/floor molding member E.
  • the molding plate material A and the molding plate material B are arranged in two sheets, and a plurality of plate separators 6 with dovetails at both ends are inserted and fixed at equal intervals into the dovetail grooves 3 of the molding plate material B to form an external molding member F.
  • the molding plate material B is arranged in two sheets, and a plurality of plate separators 6 with dovetails at both ends are inserted and fixed at equal intervals into the dovetail grooves 3 of the molding plate material B to form an external molding member F.
  • the base molding member G is formed by inserting and fixing at equal intervals, the molding plate material C and the molding plate material D are arranged side by side, and a plurality of plate separators 6 with dovetails at both ends are fixed at equal intervals to the dovetail grooves 3 of each molding plate material with splints 7 on the insertion side to form a square decorative molding member H, and the decorative molding member I is formed by arranging two molding plate materials D side by side, and a plurality of plate separators 6 with dovetails at both ends are fixed at equal intervals to the dovetail grooves 3 of the molding plate material D with splints 7 on the insertion side to form a decorative molding member I.
  • Figure 2 is a cross-sectional view of a high-rise concrete structure showing the first floor of a rigid frame structure in which a structural assembly made of molded components is bonded with concrete.
  • Figure 3 is a bird's-eye view of molding board material A, which has joint grooves 1 on both sides and multiple dovetail grooves 3 and rectangular grooves 4 on board surface 2.
  • Figure 4 is a bird's-eye view of molding board material B, which has a board surface 2 with joint grooves 1 on both sides and multiple dovetail grooves 3 and rectangular through holes 5.
  • Figure 5 is a bird's-eye view of molding board material C, which has a board surface with a joint groove 1 on one side and multiple dovetail grooves and rectangular grooves.
  • Figure 6 is a bird's-eye view of molding board material D, which has a board surface with a joint groove on one side and multiple dovetail grooves 3 and rectangular through holes 5.
  • Figure 7 is a bird's-eye view of joint piece 8.
  • Figure 8 is a bird's-eye view of a wall and floor molding component made by placing two molding boards A side by side and inserting and fixing multiple board separators 6 with dovetail grooves 3 on both ends at equal intervals into the dovetail grooves 3 of molding boards A.
  • Figure 9 is a bird's-eye view of an external molding part formed by juxtaposing molding plate material A and molding plate material B, and inserting and fixing multiple plate separators 6 with dovetails at both ends at equal intervals into the dovetail grooves 3 of each molding plate material.
  • Figure 10 is a bird's-eye view of a base molding member formed by placing two molding plate materials B side by side and inserting and fixing multiple plate separators 6 with dovetail grooves 3 on both ends at equal intervals into the dovetail grooves 3 of the molding plate materials B.
  • Figure 11 is a bird's-eye view of a decorative rectangular molding component made by juxtaposing molding board material C and molding board material D, and inserting multiple board separators 6 with dovetail grooves 3 at both ends into the dovetail grooves 3 of each molding board material at equal intervals and fixing the insertion side with splints 7.
  • Figure 12 is a bird's-eye view of a decorative molding part made by placing two molding plate materials D side by side, and fixing multiple plate separators 6 with dovetail grooves 3 on both ends at equal intervals into the dovetail grooves 3 of the molding plate materials D with the sides toward which they are inserted with splints 7.
  • Figure 13 is an enlarged view of the end of Figure 3.
  • Figure 14 is an enlarged view of the end of Figure 4.
  • Figure 15 is an enlarged view of the end of Figure 5.
  • Figure 16 is an enlarged view of the end of Figure 6.
  • Figure 17 is an enlarged view of the end of Figure 8.
  • Figure 18 is an enlarged view of the end of Figure 9.
  • Figure 19 is an enlarged view of the end of Figure 10.
  • Figure 20 is an enlarged view of the end of Figure 11.
  • Figure 21 is an enlarged view of the end of Figure 12.
  • Figure 22 is a bird's-eye view of a board separator with dovetail grooves on both ends.
  • Figure 23 shows a column cluster connected to a wall.
  • Figure 24 shows a column assembly of a rigid frame structure.
  • Figure 25 is an enlarged view of part A in Figure 1.
  • Figure 26 is an enlarged view of part B in Figure 2.
  • Figure 27 shows a beam assembly connected to a slab floor.
  • the present invention aims to improve the shortcomings of conventional reinforced concrete structures and to enable multi-skilled workers to easily and inexpensively construct a wide variety of unreinforced concrete structures in an extremely short construction period without requiring advanced skills.
  • the boards and separators used in this invention are made from wood produced in Japan, which will contribute to revitalizing the declining forestry industry in mountain villages in municipalities across the country.
  • Board material A is 30mm x 120mm x 4,000mm, with 8mm x 9mm joint grooves on both sides, 200mm dovetail grooves for fixing 30mm x 40mm board separators at 500mm intervals, and 40mm x 300mm rectangular grooves at 500mm intervals.
  • Board material B is 30mm x 120mm x 4,000mm, with 8mm x 9mm joint grooves on both sides, 200mm dovetail grooves for fixing 30mm x 40mm board separators at 500mm intervals, and 40mm x 300mm rectangular through holes at 500mm intervals.
  • molding board C A molding board C with 30mm x 120mm x 4,000mm board surface with 8mm x 9mm joint grooves on one side, 200mm dovetail grooves for fixing 30mm x 40mm board separators at 500mm intervals, and 40mm x 300mm rectangular grooves at 500mm intervals.
  • molding board material D A molding board material D with a 30mm x 120mm x 4,000mm board surface with an 8mm x 9mm joint groove on one side, 200mm dovetail grooves for fixing 30mm x 40mm board separators at 500mm intervals, and 40mm x 300mm rectangular through holes at 500mm intervals.
  • a wall and floor molding component made by placing two molding boards A side by side with a 60mm gap between them and fixing them at 500mm intervals with a 30mm x 40mm x 60mm board separator with both edges dovetailed.
  • External molded part legend An external molded part made by placing molding plate material A and molding plate material B side by side with a gap of 60 mm between them and fixing them at intervals of 500 mm with plate separators measuring 30 mm x 40 mm x 60 mm with dovetail processing on both edges.
  • a base molding component made by placing two molding plate materials B side by side with a 60 mm gap between them and fixing them at 500 mm intervals with a 30 mm x 40 mm x 60 mm plate separator with both ends dovetailed.
  • a square decorative molding part made by placing molding board material C and molding board material D side by side with a gap of 60 mm, sealing one side with a 40 mm x 60 mm x 4,000 mm splint, and fixing both ends with a 30 mm x 40 mm x 60 mm board separator with dovetail processing at 500 mm intervals.
  • a decorative molding part made by placing two molding boards D side by side with a gap of 60 mm, sealing one side with a 40mm x 60mm x 4,000mm splint, and fixing both edges with a 30mm x 40mm x 60mm board separator with dovetails at 500mm intervals.
  • Example 1 of floor panel of concrete structure Referring to Figure 1, the floor panel of a concrete structure is formed by fixing the molding board A and the wall/floor molding components alternately using joint wood measuring 8mm x 18mm x 4,000mm, pouring concrete, and finishing the pouring surface with a metal trowel.
  • Example 2 of a concrete structure wall Refer to Figure 1.
  • the wall of a concrete structure is made by connecting the wall and floor molding components shown in the legend using joint pieces measuring 8mm x 18mm x 4,000mm and pouring concrete into them.
  • this concrete structure is made up of the molded members of columns and beams shown in the legend, each of which is made into a column assembly and a beam assembly using joint wood of 8mm x 18mm x 4,000mm, and concrete is poured into the column assembly and beam assembly.
  • this invention it is possible to easily build rigid frame structures and a wide variety of unreinforced concrete structures in a very short construction period.
  • the dimensions shown in the legend and examples are merely examples and can be replaced with other dimensions.
  • the length and thickness of the molding board, as well as the dimensions of the separator board can be freely set depending on strength.
  • the shape and size of the molding members can also be freely set.
  • the invention can be implemented without hindrance if a material that can provide strength, such as an alternative to wood, is used.
  • the molded members used in the structure made of the molded members of the present invention are mainly made of domestic wood (thinned wood), and the widespread use of unreinforced concrete structures made of molded members can contribute to the revitalization of the impoverished forestry industry in mountain villages.
  • the present invention can greatly contribute to disaster prevention in Japan by building a wide variety of unreinforced concrete structures that can withstand natural disasters such as earthquakes, tsunamis, fires, floods, and typhoons at low cost and in a very short construction period, and the molded members inside and outside the walls can act as heat insulators and are environmentally friendly structures that prevent global warming.
  • the greatest feature of the present invention is that it can significantly reduce the amount of reinforcing bars and steel frames used around the world, making a significant contribution to the realization of a decarbonized society.
  • FIG. 1 is a cross-sectional view of a construction method in which a construction assembly made of molded members according to the present invention is bonded with concrete.
  • FIG. 3. Close-up of the end.
  • FIG. 5. Close-up of the end.
  • FIG. 6. Close-up of the end.
  • FIG. 8. Close-up of the end.
  • FIG. 9. Close-up of the end.
  • FIG. 10. Close-up of the end.
  • FIG. 11. Close-up of the end.
  • FIG. 12. Close-up of the end.
  • a columnar aggregate connected to a wall.
  • a column assembly with a rigid frame structure Enlarged view of part A in Fig. 1.

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  • Architecture (AREA)
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Abstract

Le problème décrit par la présente invention est de fournir un procédé de construction utilisant du béton pour assembler un ensemble structure constitué d'éléments préfabriqués, qui est capable de résoudre les problèmes de structures en béton armé. La solution selon l'invention porte sur un procédé de construction utilisant du béton pour assembler un ensemble structure constitué d'éléments préfabriqués, caractérisé en ce que : des éléments préfabriqués qui sont chacun obtenus en disposant en parallèle de deux panneaux de formage différents pourvus de rainures en bois de jonction (1) sur les deux faces latérales et d'une pluralité de rainures en queue d'aronde (3) et de rainures rectangulaires (4) ou de trous traversants (5) dans la surface de panneau (2), puis en insérant et en fixant, à des intervalles uniformes, une pluralité de séparateurs de panneau (6) traités pour avoir un tenon en queue d'aronde aux deux extrémités de ceux-ci dans les rainures en queue d'aronde (3) des panneaux de formage, les éléments préfabriqués comprenant un élément préfabriqué (E) de panneau de paroi/plancher, un élément préfabriqué externe (F), un élément préfabriqués de tige de base (G), un élément préfabriqué décoratif d'angle (H), et un élément préfabriqué décoratif (I), sont assemblés et fixés ensemble à l'aide de bois de jonction (8) et de vis (9) pour obtenir ainsi un ensemble structure (J) des éléments préfabriqués; du béton (10) est coulé dans l'ensemble structure des éléments préfabriqués; et l'ensemble structure (J) des éléments préfabriqués et le béton (10) sont intégrés par la solidification du béton (10).
PCT/JP2024/009574 2023-08-04 2024-03-12 Procédé de construction utilisant du béton pour assembler un ensemble structure fabriqué à partir d'éléments préfabriqués Pending WO2025032874A1 (fr)

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JP2023127591A JP7417173B1 (ja) 2023-08-04 2023-08-04 成型部材で造る構築物集積体をコンクリートで結合した構築方法。
JP2023-127591 2023-08-04

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JP7557112B1 (ja) 2024-06-06 2024-09-27 美藤 雅康 成型部材で造る道路に埋設する防災貯水槽兼生活インフラ構築物。

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JP6688960B1 (ja) * 2019-03-01 2020-04-28 美藤 雅康 梯子状に固定した成型部材で造るコンクリート構築物。
JP6989865B1 (ja) * 2021-05-07 2022-02-03 美藤 雅康 梯子状に固定した成型部材で造るコンクリート擁壁。
JP7019157B1 (ja) * 2021-09-07 2022-02-15 美藤 雅康 構築物の壁に固定するコンクリートの雨水タンク。

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JP6688960B1 (ja) * 2019-03-01 2020-04-28 美藤 雅康 梯子状に固定した成型部材で造るコンクリート構築物。
JP6989865B1 (ja) * 2021-05-07 2022-02-03 美藤 雅康 梯子状に固定した成型部材で造るコンクリート擁壁。
JP7019157B1 (ja) * 2021-09-07 2022-02-15 美藤 雅康 構築物の壁に固定するコンクリートの雨水タンク。

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