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激光技術的迅速發展,很好地應用于生產時下嚴格精確的標志和尺度上的玻璃和光學單位。此外,激光表面處理能力,也可以刻玻璃晶體或丙烯立方體內。

案例:表面玻璃和鏡子



 

信息
案例:表面玻璃和鏡子

只有二氧化碳激光器和可以標記上的玻璃的表面和使用的Nd:YAG激光燈激光二極管泵浦激光器和光纖激光能標記鏡產品非常好,獨特的技術被廣泛應用在后視鏡和擋風玻璃

 

 

激光技術的迅速發展,很好地應用于生產時下嚴格精確的標志和尺度上的玻璃和光學單位。此外,激光表面處理能力,也可以刻玻璃晶體或丙烯立方體內。

案例:玻璃及水晶3D&2D

激光三維雕刻

Laser 2D Engraving


 

信息

水晶子表面雕刻
綠色激光子雕刻玻璃,水晶,壓克力和其他透明材料適用于處理。激光透明材料內可以集中精力和標記。它也標志著內部材料的三維模型

.

 

激光技術的迅速發展,很好地應用于生產時下嚴格精確的標志和尺度上的玻璃和光學單位。此外,激光表面處理能力,也可以刻玻璃晶體或丙烯立方體內。

案例:光學單元



信息
光學UINT標記
僅CO2激光光學單元的表面上可以標記。這種獨特的技術被廣泛應用在后視鏡和擋風玻璃。

激光加工處理具有明顯的優勢,這是第一選擇,以取代傳統的加工處理,激光技術被廣泛應用于世界不只是為上市如下領域。如果你想了解更多信息或有特殊要求,請盡量與我們聯系,或送樣品到我們公司,我們很高興根據您的要求進行生產。博奧激光科技有限公司歡迎您訪問我們的公司,并真誠地希望能為您提供一套完整的激光解決方案。

案例1。移動電話

 

 

Laser Marking

The Advantages of Laser Marking

Advanced processing with a high degree of precision
Laser processing does not have direct contact with the work piece, so does not cause any mechanical extrusion or stress. It will not alter the physical properties of the materials processed.

As the laser size after focusing is small, the heat-affected region is much smaller, thus allowing it to achieve fine processing that other conventional methods cannot.

Easy product identification
Laser-made marking is permanent and not affected by changes in the environment (such as a moist, acidic or alkaline atmosphere). Laser marking can mark unique serial numbers such as 2D codes to facilitate easy identification. Traditional marking technologies are unable to achieve the high qualities in special effects and anti-fraud functions that laser technology can achieve.

Complies with environmental protection requirements
Laser processing is an innocuous, environmental pollution-free production process. The products it duces meets european and US environmental standards requirements, so there is no need to worry about export restrictions due to screen-printing or corrosion issues.

Low cost, fully automatic, easy to operate
The only resource needed for laser processing is electricity. It does not need additional equipment or materials. Laser processing is very fast and its average processing cost is very low. The entire process is controlled by special software so there is no need human intervention. It can achieve high-speeds online and efficient automated processing of parts and components.

No overstock storage

The flexibility, stability and high product completion rate of laser processing, controllable by computer, allows flexible production that can be adapted to suit different customers' requirements, and thereby avoids differences in production that can lead to the overstock of products.

 

 

Laser Cutting

The Advantages of Laser Cutting

A. Takes up less room. Due to the reduced production period, as well as reduced personnel and supporting facilities requirements, the amount of cleanroom space is decreased.
B. Lower costs. Being computer-controlled, less human interaction is needed, reducing labour costs. No additional materials are required. Production costs is also reduced.
C. Increased quality. Due to the lower human interaction, man-made errors are reduced and high quality output is increased. Furthermore, cutting efficiency is increased by a factor of 10.
D. Due to the agilitye of the laser cutter, designs and product patterns can be changed according to clients; requirements at any time.

 

Laser Welding

Laser VS. Traditional Welding

Welding technology

Accuracy

Deformation

Heat effect

Slot quality

Welding material

Using condition

Efficiency

Speed

Cost

Reliability

Laser welding

ACCURATE

SMALL

VERY SMALL

GOOD

NO

NO

HIGH

QUICK

LOW

HIGH

Soldering

ROUGH

MEDIUM

MEDIUM

MEDIUM

NEED

HEATING-UP

MEDIUM

SLOW

LOW

HIGH

Resistance welding

ROUGH

BIG

BIG

MEDIUM

NO

ELECTRODE

HIGH

MEDIUM

HIGH

MEDIUM

Argon-acr welding

MEDIUM

BIG

BIG

MEDIUM

NEED

ELECTRODE

LOW

SLOW

HIGH

MEDIUM

Plasma welding

Preferable

MEDIUM

MEDIUM

MEDIUM

NEED

ELECTRODE

HIGH

QUICK

LOW

MEDIUM

Electron beam welding

ACCURATE

SMALL

SMALL

GOOD

NO

VACUUM

HIGH

QUICK

HIGH

LOW

 

The Advantages of Laser Welding

A. High speed and depth, with little distortion.
B. Operates at room temperature, using simple equipment.
C. High density laser.
D. Suitable for automatic manufacturing.
E. Hidden position, contact-free.
F. Split by time and space. Multi-beam and multi-position.

 

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