B23K9/1093

Systems, methods, and apparatus to preheat welding wire
11897062 · 2024-02-13 · ·

An example contact tip for a welding torch includes: a first body section having a first diameter and exterior threads, the first body section having channels extending longitudinally along an exterior surface of the first body section to permit gas flow from a first end of the contact tip to a second end of the contact tip through the channels; a first bore portion having a first inner diameter; and a second bore portion having a second inner diameter configured to contact an electrode wire traveling through the second bore portion, the first inner diameter being larger than the second inner diameter.

HIGH TEMPERATURE WELDING WIRE LUBRICANT FOR PREHEATED WELDING WIRE SYSTEM AND RELATED METHODS
20240123555 · 2024-04-18 ·

The present disclosure is generally directed to a high temperature lubricant for use in a preheated welding wire system. The lubricant may comprise one or more high melting point materials in a concentration from 0.5 to 30 wt % by weight of the lubricant. The high melting point materials may comprise graphite, molybdenum disulfide, tungsten disulfide, or boron nitride. The lubricant is configured to remain on a welding wire electrode that has been coated with the lubricant without melting when a preheater heats the welding wire electrode to an elevated temperature (e.g., between 500 and 900 degrees Celsius). The lubricant may be a powder or a liquid. When the lubricant is a liquid, it may further comprise a solvent such as 2-proponal or water.

LASER HOT WIRE WELDING OF MULTI-LAYERED STRUCTURES
20190321914 · 2019-10-24 ·

The disclosed technology generally relates to welding, and more particularly to welding multi-layered structures. In an aspect, a method of welding multi-layered metallic workpieces comprises providing a pair of multi-layered workpieces. Each of the workpieces has a base layer and an cladding layer, where the cladding layer comprises a corrosion resistant element adapted to suppress corrosion in a ferrous alloy. The method additionally comprises forming a root pass weld bead to join cladding layers of the workpieces using a first filler wire comprising the corrosion resistant element and focusing a first laser beam on the cladding layers. The method additionally comprises forming one or more weld beads to join base layers of the workpieces by resistively heating a second filler wire and directing a second laser beam over the root pass weld bead. The method is such that a concentration of the corrosion-resistant element in the one or more weld beads is less than 50% of a concentration of the corrosion-resistant element in the root pass weld bead.

CURRENT LIMITING SECONDARY CONTACT
20190262926 · 2019-08-29 ·

A welding-type system includes a welding torch comprising a contact tip to provide an electrode wire. A secondary contact in electrical contact with the electrode wire, the secondary contact located along a length of the electrode wire and before the contact tip. Each of the contact tip and the secondary contact are connected to a welding-type power source. A current limiting device coupling located between the welding-type power source and the secondary contact and configured to limit a current at the secondary contact.

Systems, methods, and apparatus to control weld current in a preheating system

Systems, methods, and apparatus to control weld current in a preheating system are disclosed. An example preheating power supply includes power conversion circuitry configured to output welding-type power via a first output power connector and a second output power connector, and a bypass path prevention circuit configured to prevent less than a threshold voltage applied to the first output power connector and the second output power connector from a different power supply from causing current to flow between the first output power connector and the second output power connector.

SYSTEMS, METHODS, AND APPARATUS TO WELD BY PREHEATING WELDING WIRE AND INDUCTIVELY HEATING A WORKPIECE
20190193191 · 2019-06-27 ·

Systems, methods, and apparatus to weld by preheating welding wire and inductively heating a workpiece are disclosed. An example welding system includes: a welding current source configured to provide welding current to a welding circuit, the welding circuit comprising an electrode wire and a first contact tip of a welding torch; an electrode preheating circuit configured to provide preheating current through a first portion of the electrode wire via a second contact tip of the welding torch; and at least one induction heating coil configured to apply induction heat to a workpiece, the welding current source, the electrode preheating circuit, and the induction heating coil configured to perform a preheating operation and a welding operation on the workpiece.

Welding system and method of control
10322464 · 2019-06-18 · ·

A welding system and a method of control. The welding system may include a weld gun that may have an induction coil and a guide sleeve. The induction coil may heat a welding electrode in the weld gun. The guide sleeve may inhibit the welding electrode from engaging the induction coil.

DUAL WIRE WELDING OR ADDITIVE MANUFACTURING SYSTEM AND METHOD

A system and method of welding or additive manufacturing is provided where at least two welding electrodes are provided to and passed through a two separate orifices on a single contact tip and a welding waveform is provided to the electrodes through the contact tip to weld simultaneously with both electrodes, where a bridge droplet is formed between the electrodes and then transferred to the puddle.

ADDITIVE MANUFACTURING USING ALUMINUM-CONTAINING WIRE

The disclosed technology generally relates to consumable electrode wires and more particularly to consumable electrode wires having a core-shell structure, where the core comprises aluminum. In one aspect, a welding wire comprises a sheath having a steel composition and a core surrounded by the sheath. The core comprises aluminum (Al) at a concentration between about 3 weight % and about 20 weight % on the basis of the total weight of the welding wire, where Al is in an elemental form or is alloyed with a different metal element. The disclosed technology also relates to welding methods and systems adapted for using the aluminum-comprising electrode wires.

SYSTEMS AND METHODS TO CONTROL LASER APPLICATION FOR HANDHELD LASER WELDING TORCHES AND LASER WELDING EQUIPMENT

Systems and methods for laser welding are disclosed. A laser welding system includes a manually operated laser welding torch to direct laser power to a workpiece to generate a puddle during a laser welding operation. The welding system includes a controller to regulate activation and regulation of the laser power based on user inputs, sensor inputs, and/or synergic control of a laser power source.