METHOD OF 3D PRINT CONSTRUCTION BY LAYER-BY-LAYER EXTRUSION Russian patent published in 2023 - IPC E04B2/84 B28B1/00 B33Y10/00 C04B28/04 C04B111/20 

Abstract RU 2792455 C1

FIELD: construction.

SUBSTANCE: used for additive manufacturing by layer-by-layer extrusion (3D printing) of construction products, structures, buildings and constructions. The method of additive construction production includes preparing a concrete mixture, including Portland cement, quartz sand with a fineness modulus of 1.2-3 and water, squeezing it out in the form of a molding filament through a printer dispensing head and laying it in the design position. The modified concrete mixture for the transition layer is prepared and is laid on the filament from the specified concrete mixture, a process break then lasts for 10, 360 or 720 minutes, followed by the resumption of laying after the process break of the specified filament, while the modified concrete mixture for the transition layer includes Portland cement, quartz sand with a fineness modulus of 1.2-3, MasterGlenium ACE 1500 superplasticizer based on polycarboxylate ether, finely ground pozzolanic component - metakaolin with a hydraulic activity of at least 1400 mg/g, a grinding degree of at least 2 m2/kg, organosilicon compound - potassium methyl siliconate and water at a certain ratio of components.

EFFECT: longer process breaks (up to 12 hours) without the formation of cold joints or reduction the adhesion of layers laid immediately before and after the process break, due to a transition layer from a modified concrete mixture, which causes high quality construction products.

1 cl, 2 tbl

Similar patents RU2792455C1

Title Year Author Number
METHOD OF CONSTRUCTION 3D PRINTING BY LAYER-BY-LAYER EXTRUSION WITH CONTROLLED DURATION OF TECHNOLOGICAL BREAK 2023
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
RU2821490C1
CONCRETE 3D-PRINTING METHOD 2022
  • Mukhametrakhimov Rustem Khanifovich
RU2795632C1
ADDITIVE BUILDING PRODUCTION METHOD BY MATERIAL EXTRUSION 2022
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
RU2789119C1
METHOD OF 3D PRINTING WITH CONCRETE WITH CONTROLLED DURATION OF TECHNOLOGICAL BREAK 2023
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
RU2825372C1
METHOD FOR ADDITIVE CONSTRUCTION PRODUCTION BY EXTRUSION OF MATERIAL WITH CONTROLLED DURATION OF TECHNOLOGICAL BREAK 2023
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
RU2825370C1
METHOD FOR 3D CONCRETE PRINTING WITH LONG TECHNOLOGICAL BREAK 2022
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
RU2794037C1
ADDITIVE MANUFACTURING METHOD IN CONSTRUCTION WITH A LONG TECHNOLOGICAL BREAK 2022
  • Mukhametrakhimov Rustem Khanifovich
RU2793497C1
METHOD OF 3D PRINTING WITH TRANSITION LAYER TO ENSURE ADHESION OF LAYERS DURING LONG TECHNOLOGICAL BREAKS 2023
  • Mukhametrakhimov Rustem Khanifovich
RU2821488C1
METHOD OF ADDITIVE CONSTRUCTION PRODUCTION WITH TRANSITION LAYER TO ENSURE ADHESION OF LAYERS DURING LONG TECHNOLOGICAL BREAKS 2023
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
  • Safina Alina Danilovna
RU2821489C1
CONSTRUCTION 3D PRINTING METHOD 2022
  • Mukhametrakhimov Rustem Khanifovich
  • Ziganshina Liliia Valievna
  • Galautdinov Albert Radikovich
RU2786192C1

RU 2 792 455 C1

Authors

Mukhametrakhimov Rustem Khanifovich

Ziganshina Liliia Valievna

Dates

2023-03-22Published

2022-11-01Filed