B23K23/00

Moulding assembly for aluminothermic welding of rails and method for aluminothermic welding of rails
11534856 · 2022-12-27 · ·

A moulding assembly for aluminothermic welding of metal rails includes at least one mould part configured to come into contact with at least one other mould part and rails to be welded to form a mould cavity in which the ends of the metal rails to be welded are arranged and into which a molten metal is cast to weld the metal rails, wherein each mould part comprises includes a seating configured to be placed in contact least one of the rails, the seating including a groove into which a sealing product made of intumescent material is applied.

Moulding assembly for aluminothermic welding of rails and method for aluminothermic welding of rails
11534856 · 2022-12-27 · ·

A moulding assembly for aluminothermic welding of metal rails includes at least one mould part configured to come into contact with at least one other mould part and rails to be welded to form a mould cavity in which the ends of the metal rails to be welded are arranged and into which a molten metal is cast to weld the metal rails, wherein each mould part comprises includes a seating configured to be placed in contact least one of the rails, the seating including a groove into which a sealing product made of intumescent material is applied.

Remote control for exothermic reaction mold

A programmable exothermic reaction controller includes input/output control circuitry for inputting and outputting information to/from the controller, processing circuitry including user programmable parameters, wherein the parameters are programmable using the input/output control circuitry and an output connector connectable to an ignitor cable.

Remote control for exothermic reaction mold

A programmable exothermic reaction controller includes input/output control circuitry for inputting and outputting information to/from the controller, processing circuitry including user programmable parameters, wherein the parameters are programmable using the input/output control circuitry and an output connector connectable to an ignitor cable.

FIELD-APPLIED SYSTEM AND METHOD TO PRODUCE THERMITE WELDS

Methods and systems for producing a thermite weld include applying a first vibration and a second vibration to molten thermite material within a mold between a first piece and a second piece to be welded. The first vibration includes a first vibration frequency and a first amplitude, and the second vibration includes a second vibration frequency and a second amplitude. The first vibration and the second vibration are applied simultaneously to the molten thermite material until the molten thermite material cools below a liquid-to-solid transition temperature. Interference patterns and harmonics between the first vibration and the second vibration enhance the elimination of gas voids within the molten thermite material and enhance grain refinement in the molten thermite material of the resulting thermite weld without damaging the mold.

FIELD-APPLIED SYSTEM AND METHOD TO PRODUCE THERMITE WELDS

Methods and systems for producing a thermite weld include applying a first vibration and a second vibration to molten thermite material within a mold between a first piece and a second piece to be welded. The first vibration includes a first vibration frequency and a first amplitude, and the second vibration includes a second vibration frequency and a second amplitude. The first vibration and the second vibration are applied simultaneously to the molten thermite material until the molten thermite material cools below a liquid-to-solid transition temperature. Interference patterns and harmonics between the first vibration and the second vibration enhance the elimination of gas voids within the molten thermite material and enhance grain refinement in the molten thermite material of the resulting thermite weld without damaging the mold.

Configurable exothermic reaction mold

An exothermic reaction mold includes a reaction chamber, a weld chamber communicating with the reaction chamber and at least one user configurable port communicating with the weld chamber for receiving cables to be welded.

Configurable exothermic reaction mold

An exothermic reaction mold includes a reaction chamber, a weld chamber communicating with the reaction chamber and at least one user configurable port communicating with the weld chamber for receiving cables to be welded.

TOOLS FOR USE IN CONFINED SPACES

A tool assembly for performing operations in confined spaces, the tool assembly includes a telescoping pole having a proximal end and a distal end. The telescoping pole is capable of extending between a retracted position and an extended position. A working tool is connected to the distal end of the telescoping pole, and a control unit is connected to the proximal end of the telescoping pole. A flexible cable extending through the telescoping pole electrically connects the working tool to the control unit.

Exothermic welding with non-communicated cavities

A mold includes a weld cavity, housings for the components to be welded, a crucible-funnel in communication with the weld cavity for housing filling material, at least one additional cavity for housing an exothermic mixture; and an inner shell that separates the crucible-funnel and the at least one additional cavity to transmit heat produced in the exothermic reaction from the additional cavity to the crucible-funnel. The mold allows the exothermic mixture to be isolated to avoid contact with the filling material and to prevent the filling material from reaching the weld cavity. The system can further include a first filler and a second filler, arranged to be mounted over the mold for introducing the filling material and the exothermic mixture, respectively.