B23K2101/22

WIRE-BASED ADDITIVE MANUFACTURING SYSTEM AND METHOD
20180290240 · 2018-10-11 ·

A wire based additive manufacturing system includes a base movable in a feed direction. Multiple welding lasers are each spatially fixed as the base moves in the feed direction. Multiple cutting lasers are each spatially fixed as the base moves in the feed direction. Multiple wire feed members each feed an individual wire of a plurality of wires onto the base as the base moves in the feed direction. Each one the multiple welding lasers is energized to fuse parallel adjoining ones of the plurality of wires, and each one of the cutting lasers is energized to cut one of the fused wires to complete one of a plurality of wire layers.

PROCESSOR FOR FLEXIBLE SCREEN FRAMES

A flexible screen frame processor including a loading position that presents loading screen frame supports at which a partially formed flexible screen frame is supportable by an upper perimeter of the partially formed flexible screen frame and an end stripping position including at least one polymer coating stripper. A following welding position includes a welder and screen frame supports that support ends of the screen frame coaxially aligned. A post welding cleaning position includes weld spatter and flash cleaners. An unloading position includes unloading screen frame supports at which a welded and post-weld cleaned flexible screen frame is supportable by an upper perimeter of the welded flexible screen frame.

CORRUGATED FLUID INTAKE SCREEN
20180126304 · 2018-05-10 · ·

Corrugated screen filters and related method of fabrication whereby an available filter surface is increased so as to allow an increase a flow capacity of the corrugated screen filter. The corrugated screen filter can comprise a plurality of rods forming a series of alternate and angular ridges and grooves on a surface of the filter screen. The filter screen can be configured to have longitudinal corrugations only on an exterior surface of the filter screen or alternatively, the filter screen can be configured to have longitudinal corrugations only on an interior surface of the filter screen. The alternate angular ridges and grooves can form corrugations in a variety of configurations including, but not limited to, a sinusoidal wave structure, a triangular wave structure, a rectangular wave structure, a trapezoidal wave structure, or the like.

System and method for NC plasma cutting of metal fabric
09952581 · 2018-04-24 ·

Systems and methods NC plasma cut a metal fabric based upon a two-dimensional cutting path. An NC cutting machine is controlled to make a first pass along the cutting path with the laser height measuring device to collect height data from the metal fabric positioned on a bed of the NC cutting machine. Positions for starting and stopping a plasma arc of a cutting torch of the NC cutting machine are determined based upon the height data. An enhanced NC program is generated based upon the cutting path, the height data, and the positions for starting and stopping the plasma arc, to control the NC cutting machine to cut metal of the metal fabric along the cutting path.

WELDING DEVICE FOR WIRE MESHES
20240375205 · 2024-11-14 ·

A welding device for wire meshes which extend in a plane with a predefined width and have meshes, wherein said welding device comprises multiple electrodes which are connected to transformers via current paths.

METHODS AND SYSTEMS FOR PRODUCTION OF MESH FROM WIRES OR RODS, WITH CHANGEABLE STEPS FOR LONGITUDINAL AND TRANSVERSE RODS
20180056364 · 2018-03-01 ·

Systems and methods for producing mesh from wires or rods with programmed changeable steps for the longitudinal and transverse wires. The longitudinal wires (1) and the transverse wires (12) may be fed from coils or be precut. The longitudinal wires are fed in receptacles (2) on carriers (3) with the carriers being found on prefeeder carrier (4), a feeder carrier (6) with grippers (7) transports them towards the welding heads (10) and the produced mesh (20) is received by a mesh carrier (14). The carriers (3) with the receptacles (2) for the longitudinal wires on the prefeeder carrier (4), the grippers for the longitudinal wires (7) at the feeder carrier (6) and the welding heads (10) are displaced in the direction of the transverse wire without restrictions, generally in an unrestricted fashion, so as to correspond to the longitudinal wires being subjected to welding. The transverse wires are fed towards the welding heads to be welded with the longitudinal wires. The machine produces meshes with openings, grouping the longitudinal wires in groups and feeding the groups of longitudinal wires towards the welding heads, adjusting the position of the related mechanisms to the position of the longitudinal wires.

Filter for molten polymer filtration
09895638 · 2018-02-20 · ·

The filter for gel shearing and particle filtration of molten polymer has a first layer of metal fibers of an average equivalent diameter between 8 and 65 m. The cross-section of the metal fibers has two neighboring straight sides with an included angle of less than 90 and one or more irregularly shaped curved sides. The metal fibers have an average length of at least 6 mm. The metal fibers are bonded to each other by metal bonds; where the metal of the metal fibers of the first layer is the bonding agent forming the metal bonds. The filter has a second layer of metal fibers. The average equivalent diameter of the metal fibers of the second layer is smaller than the average equivalent diameter of the metal fibers of the first layer.

METHOD AND SYSTEM FOR PRODUCING A WIRE MESH MAT FROM INTERSECTING LONGITUDINAL WIRES AND TRANSVERSE WIRES
20240408664 · 2024-12-12 ·

A method for producing a wire mesh mat that consists of intersecting longitudinal and transverse wires and to a mesh welding facility for welding a wire mesh mat from intersecting longitudinal and transverse wires, comprising a clocked supply device for a sheet of longitudinal wires in an X direction, a feed device for transverse wires that lie perpendicular to the longitudinal wires and to a welding portal for welding the wires at their intersections.

DEVICE AND METHOD FOR LASER CUTTING A WEB OF FIBROUS MATERIAL
20170189242 · 2017-07-06 ·

A device for cutting a web of fibrous material including movement means for moving a web of fibrous material to be cut, defining a feed surface for the web and having at least one first cutting zone, at least one laser source configured to generate a laser beam extending along its operating direction towards the first cutting zone to make, on the web, at least one incision extending along a predetermined cutting line, where a portion of the laser beam passes through the web of fibrous material at the first cutting zone. The device also includes recovery means for recovering the portion of the laser beam and at least partly located along the operating direction, at the first cutting zone, in such a way as to intercept the portion of the laser beam and direct it towards a second cutting zone to make a further incision or cut.

Charging device of a welding fixture of spacer grid

A charging device of a welding fixture of spacer grid comprises a base frame; a conveyor for conveying a welding fixture horizontally over the base frame; and a gripper located over the base frame for gripping a welding fixture conveyed along the conveyor to charge a welding fixture into a welding chamber, wherein the gripper comprises a gripper body; and a gripping part installed horizontal to the end of the gripper body for gripping a welding fixture and capable of tilting in vertical direction to the gripper body in case more than a predetermined load is applied as a vertical load.