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| Автори: Петров, М. В. Заглавие: Robotic Welding Issues and Challenges Ключови думи: Robotic Welding, Industrial Robotics, Welding Robots, Arc We Абстракт: Since industrial robots were first introduced in the early 1960s, robotic welding has seen tremendous advancements and is now one of the most significant applications of industrial robotics. Robotic welding involves the use of automated, programmable machines (commonly called robots) that perform welding operations and handle workpieces without human intervention. These robots are highly adaptable and are employed in various welding processes, including resistance and arc welding. [1] Precision and accuracy are critical in robotic welding systems to produce durable and consistent welds. Manufacturers must carefully calibrate robots to operate within extremely tight tolerances, sometimes as small as a fraction of a millimeter. Such precision is especially vital in industries like automotive manufacturing, where weld quality directly impacts a vehicle's structural strength. Each robotic arm must follow its programmed path with minimal variation to ensure uniform welding results across Библиография Издание
Пълен текст на публикацията | Autors: Petrov, M. V. Title: Robotic Welding Issues and Challenges Keywords: Robotic Welding, Industrial Robotics, Welding Robots, Arc We Abstract: Since industrial robots were first introduced in the early 1960s, robotic welding has seen tremendous advancements and is now one of the most significant applications of industrial robotics. Robotic welding involves the use of automated, programmable machines (commonly called robots) that perform welding operations and handle workpieces without human intervention. These robots are highly adaptable and are employed in various welding processes, including resistance and arc welding. [1] Precision and accuracy are critical in robotic welding systems to produce durable and consistent welds. Manufacturers must carefully calibrate robots to operate within extremely tight tolerances, sometimes as small as a fraction of a millimeter. Such precision is especially vital in industries like automotive manufacturing, where weld quality directly impacts a vehicle's structural strength. Each robotic arm must follow its programmed path with minimal variation to ensure uniform welding results across References Issue
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