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ComMarker を使用してファイバー レーザーを理解する

Fiber Lasers

ファイバーレーザーはコンパクトな設計で産業環境を変革しました, 高効率, and exceptional beam quality. These versatile lasers are essential in various fields, from metalworking to medical device manufacturing. This article explores the intricate workings of fiber lasers, particularly focusing on ComMarker’s technology, its advantages, and its applications.

What is a Fiber Laser?

A fiber laser is a type of solid-state laser that uses an optical fiber as its gain medium. The core of the optical fiber is doped with rare-earth elements such as ytterbium (イブ), which amplifies the laser light. These lasers are known for their high electrical and optical efficiency, compactness, and excellent beam quality.

The Gain Fiber Structure in a Fiber Laser

The gain fiber in a fiber laser is the central component where the laser light is amplified. The fiber’s core, doped with rare-earth elements like ytterbium (イブ), has the highest refractive index, allowing the laser light and pump light to propagate efficiently. The core is surrounded by inner and outer claddings, forming a double-clad fiber structure.

Figure 1: Gain Fiber Structure

Gain Fiber Structure

Laser Beam Propagation in a Double-Clad Fiber

In a double-clad fiber, the pump light propagates through the Yb-doped core and inner cladding. Total internal reflection at the boundary of the inner cladding and core confines the laser light within the core, ensuring efficient amplification.

Figure 2: Laser Beam Propagation in a Double-Clad Fiber

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Optical Circuit Configuration in High-Power Fiber Lasers

High-power fiber lasers from ComMarker utilize a sophisticated optical circuit configuration divided into three main sections:

  1. Pump Section: Laser diodes (LDs) pump light through optical fibers into a pump combiner.
  2. Oscillator Section: The pump light propagates through a double-clad fiber, exciting the Yb ions, which amplify the light.
  3. Beam Delivery Section: The amplified laser light is delivered to the processing head or beam coupler.

Figure 3: Optical Circuit Configuration

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Power Enhancement of Fiber Lasers

Power enhancement in fiber lasers is achieved by coupling multiple delivery fibers with an output beam coupler. 例えば, coupling four 1 kW output beams results in a 4 kW laser output, while coupling six 1 kW output beams yields 6 kW.

Figure 4: Power Enhancement of Fiber Lasers

Power Enhancement of Fiber Lasers

Advantages of Fiber Lasers

Compared to traditional CO2 and YAG lasers, fiber lasers offer several significant advantages:

  • ビーム品質: Fiber lasers provide excellent beam quality, resulting in precise and clean cuts.
  • コンパクトなデザイン: Their compact size and high power density save valuable space in industrial setups.
  • 効率: They exhibit high electrical efficiency, reducing energy consumption and operational costs.
  • Reliability: Fiber lasers are highly reliable, requiring minimal maintenance.
  • 多用途性: Suitable for various applications, including welding, 切断, そしてマーキング, across multiple industries.

Applications of Fiber Lasers

Fiber lasers are versatile tools used in numerous industrial processes. Their applications include:

  • Material Processing: 切断, 溶接, マーキング, and drilling metals and other materials.
  • Medical Device Manufacturing: Precision cutting and engraving of medical devices.
  • Telecommunications: Fiber lasers play a crucial role in telecommunications for signal amplification and transmission.
  • Defense: Utilized in directed energy weapons and other defense-related applications.
  • Research and Development: Fiber lasers are used in spectroscopy and other scientific research areas.

Types of Fiber Lasers

Fiber lasers can be classified based on their operational modes and applications:

  • 連続波 (CW) ファイバーレーザー: Produce a continuous laser beam, ideal for high-power industrial applications.
  • パルスファイバーレーザー: Emit laser pulses at regular intervals, suitable for precise engraving and marking.
  • QCW Fiber Lasers: Offer high peak power and lower average power, perfect for applications like spot welding and drilling.

ファイバーレーザーの仕組み?

Fiber lasers operate by using an optical fiber doped with rare-earth elements, such as ytterbium (イブ). The doped fiber core absorbs pump light, which excites the Yb ions, leading to the emission of laser light. The laser light is confined within the core through total internal reflection, resulting in a high-quality laser beam.

Maintenance and Lifespan

One of the key benefits of fiber lasers is their low maintenance requirements. Its lifespan is100,000 時間. Reaching its lifespan doesn’t mean it is totally unusable, しかし、それはレーザーパワーでのみ減衰します. レーザー光源交換サービス (価格は選択したレーザー光源によって異なります).

ComMarker B4 20W ファイバー レーザー彫刻機

(11 カスタマーレビュー)
$1,999 $1,599 保存:$400

電動リフティング: ComMarker B4-20W は、高度な機能を備えています。, 隠された昇降モーター. 3D エンボス加工と深彫り加工: B4-20W レーザー彫刻機は複雑なハンドルを備えています, 金属や岩石へのマルチレベルの 3D 彫刻と深彫り. 広々とした作業エリア: 110mmおよび200mmデュアルレンズ, 正確なキャリブレーションと焦点合わせのためのデュアルレッドドットロケータを備えたマーキングエリア. 幅広い互換性: 彫刻する…

0 ロータリー
D69*1 ロータリー
D69+D80 ロータリー
D80ロータリー
110V
220V

について デビッド・リー

こんにちは, 私はデビッド・リーです, 私は、豊富な経験と幅広い知識を持つ、情熱的でクリエイティブな商用レーザー彫刻およびマーキングのスペシャリストです。. 過去を超えて 10 年, 私は、さまざまな商業プロジェクトのためのレーザー彫刻機とマーキング ソリューションに注力してきました。新しいテクノロジーやデザインのトレンドに敏感です。 ,最高のレーザー彫刻とマーキング体験を常に追求しています

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