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Coil Fed 1310 Laser Cutting Machine for Precision Acrylic

Short Description:

Precision acrylic cutting with the Langsheng Laser S-Series. High-speed, accurate 100-150W laser. Made in China for demanding production.

Product Detail

Product Tags

Product Main Parameters

Laser Power 100W-150W
Cutting Thickness 1-15mm (depends on power)
Engraving Speed 0-500 mm/min
Cutting Speed 0-100 mm/min
Positioning Accuracy <0.05mm
Power Supply AC220 ±10% 50Hz
Machine Power <2250W
Operating Temperature 0º- 45º
Cutting Platform Size 1400mm*1000mm
Cooling Mode Water-cooling
Number of Laser Heads 2

Product Specifications

Material Extension Forward and Backward Flexibility
Laser Power Supply Langsheng Laser? 100-150W
Beam Profile Quality Beam Profile, Max Power
Production Environment Engineered for Demanding Conditions
Cutting Beam High density, Exceptional Resolution

Product Production Process

The production process of the Langsheng S-Series Laser Cutting Machine is carefully designed to ensure precision and reliability in every unit. The process begins with meticulous component selection, where high-quality parts are sourced from reputable suppliers. Each component undergoes stringent quality checks before being integrated into the machine assembly. The assembly phase employs skilled technicians who follow detailed procedures to align and assemble the critical elements of the machine, ensuring optimal performance. Continuous testing and adjustments are made during this phase to guarantee that the laser cutting machine meets the desired specifications. The product then undergoes rigorous testing, where it is subjected to various stress conditions to simulate real-world operation. This ensures that each machine can withstand demanding production environments and deliver consistent results.

Product Manufacturing Process

The manufacturing process of the Coil Fed 1310 Laser Cutting Machine incorporates advanced technology and industry best practices to deliver a state-of-the-art product. It begins with the initial design phase, where engineers work collaboratively to create a machine blueprint that balances innovation with practicality. Once the design is finalized, a prototype is developed and subjected to extensive testing to validate performance and reliability. Feedback from these tests is used to refine the design before full-scale production begins. During the manufacturing stage, precision machining and assembly techniques are employed to ensure that parts fit perfectly and function seamlessly. Quality control is paramount throughout the process, with inspections at each stage to ensure adherence to strict quality standards. The final product is packaged securely to prevent damage during transportation, ensuring it arrives in perfect condition for immediate use.

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