Mighty Buildings, Inc. (20240376710). 3D-PRINTED INTEGRATED BUILDING PANEL SYSTEMS simplified abstract

From WikiPatents
Revision as of 06:25, 21 November 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

3D-PRINTED INTEGRATED BUILDING PANEL SYSTEMS

Organization Name

Mighty Buildings, Inc.

Inventor(s)

Aleksei Dubov of San Mateo CA (US)

Anna Ivanova of Monterrey (MX)

Anna Khabarova of Reno NV (US)

Svetlana Galaktionova of Monterrey (MX)

Sergei Belorustsev of Moscow (RU)

Yonah Naftaly of San Mateo CA (US)

Daniel Ramirez of Newburyport MA (US)

Dmitriy Yakimovich of Monterrey (MX)

Amichai Becker of Redwood City CA (US)

Sergei Serashev of Monterrey (MX)

John Going of Los Angeles CA (US)

Petr Ovchinnikov of Moscow (RU)

3D-PRINTED INTEGRATED BUILDING PANEL SYSTEMS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240376710 titled '3D-PRINTED INTEGRATED BUILDING PANEL SYSTEMS

The abstract describes a 3D-printed integrated building panel system that forms a part of a larger building structure. The system includes 3D-printed building panels, connectors, and load transfer components. The building panels are made using photocurable composite material and can be integrally formed. Connectors link the building panels together and to other building components, while load transfer components distribute loads across the panels and can form part of a superstructure for the building.

  • 3D-printed integrated building panel system for constructing buildings
  • Building panels made from photocurable composite material
  • Connectors link panels together and to other building components
  • Load transfer components distribute loads across panels and can form superstructure
  • Innovative use of 3D printing technology in construction industry

Potential Applications: - Construction of residential, commercial, and industrial buildings - Rapid and cost-effective building construction projects - Customizable building designs and structures

Problems Solved: - Streamlining building construction processes - Enhancing structural integrity and load distribution - Facilitating the use of advanced materials in construction

Benefits: - Faster construction timelines - Reduced construction costs - Increased design flexibility and customization options

Commercial Applications: Title: Innovative 3D-Printed Building Panel System Revolutionizes Construction Industry Description: This technology can be used in various commercial applications such as residential housing developments, commercial office buildings, and industrial warehouses. It offers a more efficient and cost-effective way to construct buildings while providing flexibility in design and structural integrity.

Questions about 3D-Printed Integrated Building Panel System: 1. How does the use of 3D printing technology benefit the construction industry? 2. What are the potential cost savings associated with using this integrated building panel system?

Frequently Updated Research: Researchers are continually exploring new composite materials for 3D printing in construction to improve strength, durability, and sustainability. Stay updated on the latest advancements in this field to enhance building construction processes.


Original Abstract Submitted

a 3d-printed integrated building panel system configured to form a portion of an overall building can include 3d-printed building panels, connectors, and one or more load transfer components. each 3d-printed building panel can be formed by 3d printing technology using a photocurable composite material, and at least a portion of the 3d-printed building panels can be integrally formed. the connectors can be coupled to one or more of the 3d-printed building panels and can couple the 3d-printed building panels to each other and/or to one or more separate building components of the overall building. the load transfer component(s) can be coupled to at least a portion of the 3d-printed building panels and can transfer loads across the 3d-printed building panels. the load transfer component(s) can be configured to form at least a portion of an overall super structure for the overall building.