Abstract:
A structure is provided. The structure includes a first component disposed in the first plane. The structure also includes a second component extending from the first component and disposed in a second plane. The second plane is inclined at an angle with respect to the first plane. Each of the first component and the second component are constructed by forming layers parallel to each other using an additive manufacturing process.
Abstract:
Systems and method for managing deployment of UAS and analytics using the same, are disclosed. One method includes receiving first data comprising a criteria associated with a UAS operation, wherein the criteria comprises an analytics component, receiving second data comprising data associated with a plurality of available UAS operators, causing display of a UAS operator listing comprising identifications of one or more UAS operators of the plurality of available UAS operators, the displayed UAS operator listing determined based, at least, on the first data and the second data, receiving an indication of a selected UAS operator from the one or more UAS operators of the UAS operator listing, receiving aerial data collected via a UAS associated with the selected UAS operator, wherein the aerial data comprises analytics data based at least on the analytics criteria.
Abstract:
A method of guiding deposition of a material to form a Three Dimensional (3D) structure is disclosed. The method includes generating a tool path based on a digital model of the 3D structure via a controller and communicating the tool path to a guiding device. The method further includes generating a guiding path on a work surface via the guiding device based on the tool path and depositing the material along the guiding path via a tool member.
Abstract:
A method for three dimensional printing of a large sized object is provided. The method includes creating a three dimensional model associated with the object to be printed and analyzing a geometry of the three dimensional model. The method also includes placing seams on a deflated support member to form pathways on the support member such that the pathways are formed based on the analyzed geometry of the three dimensional model. The method further includes introducing a pressurized fluid into the pathways and further inflating the support member to conform to the analyzed geometry. The inflation is done to a predetermined pressurized geometry associated with the support member. The method also includes supporting the three dimensional printing of the object by the inflated support member. The inflated support member is configured to prevent at least one of an overhanging or a collapse of materials of the object prior to solidification.