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Laser Welder Technical Parameters

Laser Welding Equipment Industrial Automation Welding Technology

Due to technological advancements and rising labor costs, an increasing number of manufacturing enterprises are adopting automated production models. Automation not only reduces labor expenses but also offers greater stability, simpler operation, and higher production efficiency compared to manual processes. With the advancement and maturation of domestic laser technology, laser welding equipment has seen increasingly widespread application in the electronics industry. It is now extensively used across multiple sectors including plastics, automotive manufacturing, metal processing, 3C electronics, mechanical manufacturing, shipbuilding, aerospace, and military instrumentation circuit boards. In recent years, handheld laser welders have further expanded into the field of energy battery welding.


For years, laser welding machine manufacturers have grounded their operations in technological R&D, deeply understanding industry pain points. Targeting multiple industrial sectors including 3C electronics, automotive electronics, construction electronics, smart home devices, and energy, they are committed to building an industrial value chain integrating proprietary core technologies, flagship products, and comprehensive industry solutions. The company primarily develops, manufactures, and sells laser welding equipment, laser marking equipment, and laser cutting equipment. It offers complimentary sample processing and can customize laser equipment according to customer requirements.


Introduction to Laser Welding Equipment Process Methods:

1. Sheet-to-sheet welding. Typically employs manual or automated welding, encompassing four methods: butt welding, end welding, center penetration fusion welding, and center penetration fusion welding.

2. Wire-to-wire welding. Typically employs manual or semi-automated welding, encompassing four methods: wire-to-wire butt welding, cross welding, parallel lap welding, and T-joint welding.

3. Welding non-metallic wires to bulk components. Metal laser welding machines can reliably join non-metallic wires to bulk components of any size. During welding, pay attention to the geometric dimensions of the wire components.

4. Welding dissimilar non-metals. Welding dissimilar non-metal types requires addressing weldability and weldable parameter ranges. Laser welding between different materials is only feasible for specific material combinations.

5. Repair welding of bulk items. Laser welding rods are melted and deposited onto the substrate, typically suitable for repairing items like molds.


Advantages of laser welding technology from Wuxi Top Optics Laser Technology Co., Ltd.:

1. Concentrated energy delivers high welding efficiency, precision, and deep-wide welds. The laser beam is easily aligned and guided by optical instruments, allowing placement at appropriate distances from the workpiece. It can be redirected around workpieces or obstacles—constraints that limit conventional welding methods.

2. Minimal heat input results in a small heat-affected zone, reducing residual stresses and deformation in the workpiece. Controllable welding energy ensures stable results and aesthetically pleasing welds.

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