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US Patent 10384416 Digital flexural materials

Patent 10384416 was granted and assigned to Massachusetts Institute of Technology on August, 2019 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Current Assignee
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10384416
Date of Patent
August 20, 2019
Patent Application Number
15432757
Date Filed
February 14, 2017
Patent Citations Received
‌
US Patent 12115583 Systems and methods for adhesive-based part retention features in additively manufactured structures
0
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US Patent 11504912 Selective end effector modular attachment device
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US Patent 11885000 In situ thermal treatment for PBF systems
0
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US Patent 11884025 Three-dimensional printer and methods for assembling parts via integration of additive and conventional manufacturing operations
0
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US Patent 11479015 Custom formed panels for transport structures and methods for assembling same
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US Patent 11529741 System and method for positioning one or more robotic apparatuses
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US Patent 10605285 Systems and methods for joining node and tube structures
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US Patent 11534828 Assembling structures comprising 3D printed components and standardized components utilizing adhesive circuits
...
Patent Primary Examiner
‌
Brent T O'Hern
Patent abstract

Digital flexural materials are discrete parts that can be assembled into a lattice structure to produce functionally useful assemblies. An automated process for constructing a structure from digital flexural materials includes assembling a set of discrete units into the structure by reversibly connecting a majority of the set of discrete units to each other, each of the units being reversibly connected or connectable to at least two other units in the set according to a lattice geometry, and then assembling the reversibly connected discrete units into the structure according to the lattice geometry, wherein the structure has the property that a reversible deformation of at least part of the structure occurs in response to loading of the structure. The units in the set of discrete units may be of at least two types or may together comprise a stretch-bend coupled material when assembled according to the lattice geometry.

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