Model Features
A fiber laser marking machine is a type of laser marking system that utilizes a fiber laser as the laser source for marking or engraving various materials. Here's an overview:
1. Fiber Laser Technology**: Fiber lasers use a doped fiber optic cable as the gain medium to generate the laser beam. They are highly efficient and provide high-quality laser output with excellent beam quality, making them well-suited for precision marking applications.
2. Marking Principle**: Fiber laser marking machines work by directing a focused laser beam onto the surface of the material to be marked. The laser beam interacts with the material, causing localized heating and inducing changes in the material's surface properties, such as color change, oxidation, or material removal (engraving).
3. Versatility**: Fiber laser marking machines can mark a wide range of materials, including metals (such as steel, aluminum, brass, and titanium), plastics, ceramics, coated metals, and some organic materials. They are commonly used for marking logos, serial numbers, barcodes, QR codes, dates, and other identifiers on products.
4. High Precision and Speed**: Fiber lasers offer high precision and fast marking speeds, allowing for intricate designs and high-volume production. They can achieve fine details with high accuracy, making them suitable for applications requiring small and precise marks.
5. Non-contact Process**: Fiber laser marking is a non-contact process, which means there is no physical contact between the laser system and the workpiece. This minimizes the risk of damage to delicate or sensitive materials and allows for marking on irregular or curved surfaces.
6. Low Maintenance**: Fiber laser marking machines are known for their reliability and low maintenance requirements. The absence of moving parts in the laser source (fiber laser) contributes to their durability and longevity, requiring minimal maintenance compared to other marking technologies.
7. User-friendly Software**: These machines typically come with user-friendly software that allows operators to create, edit, and manage marking designs easily. The software may include features such as text and graphic design tools, barcode generation, and integration with databases for serialization and variable data marking.
8. Integration Capabilities**: Fiber laser marking machines can be integrated into automated production lines or controlled remotely using programmable logic controllers (PLCs) or computer numerical control (CNC) systems. This integration enables seamless integration into manufacturing processes for efficient and automated marking.
Fiber laser marking machines offer a versatile, high-precision, and reliable solution for marking a wide range of materials in various industries, including automotive, aerospace, electronics, medical devices, and jewelry.
Technical Parameters
|
Laser power |
10W/20W/30W/50W |
Operating voltage |
220V |
|
Power of the whole machine |
800W |
Cooling method |
Air cooling |
|
Laser wavelength |
1064nm |
Marking range |
80×80mm/110×110mm/150×150mm |
|
Marking speed |
≤7000mm/s |
Minimum Line Width |
0.01mm |
|
Repeat Positioning Accuracy |
±0.003mm |
Beam quality |
m1.4-2.0 (¥2) |
|
Fiber Length |
2m/3m |
Laser Repetition Frequency |
20-80KHZ |
|
Laser Pulse Energy |
0.8-1Mj@25KHZ |
Marking depth |
0.01mm-0.7mm |
|
Angle of divergence |
0.3mrad |
Application Scenarios






Factory Introduction

Workshop Production Process
Annealing
Stress Relief
Large Gantry
Finishin
Rough
Machining
Vibration
Aging
Welding
Machine Bed
Certificates










Shipping Process

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