TK120 2.0 Two-chuck Side-mounted Pipe Laser Cutting Machine
Two-chuck side mounted laser tube cutter has a small footprint and fast production speed. Equipped with a special cutting system, the machine is easy to operate, high precision, and can cut square, round, rectangular and other metal tubes with different interfaces.
- Laser Power: 1kW-3kW
- Maximum Pipe Length: 6.5m
- Chuck Clamping Range: Φ10-Φ120mm
- Max. Feeding Speed of Chuck Axis: 150r/min
パフォーマンス上の利点
TK120 tube laser cutting machine focuses on small tube cutting, with automatic loading system can realize high speed and high efficiency cutting.
Semi-automatic loading
- Equipped with semi-automatic loading system to automatically convey the pipes to be processed, multiplying the efficiency.
Cutting short end material
- Innovative servo motor drive, the front chuck moves forward stably and pushes forward automatically to cut short tail material, increasing material utilization rate by 12%.
Support multi-pipe processing
- The machine supports the cutting of square, round and rectangular pipes with a processing length of up to 6.5 meters.

モデル | XT-TK90 | XT-TK120 |
レーザーパワー | 1kW-3kW | 1kW-3kW |
Maximum Pipe Length | 6.5m | 6.5m |
Chuck Clamping Range | Round tube: Φ10-Φ80mmSquare tube: Φ10-Φ80mmRectangular tube: long side≤80mm | Round tube: Φ10-Φ120mmSquare tube: Φ10-Φ120mmRectangular tube: long side≤120mm |
Max. Feeding Speed of Chuck Axis | 200r/min | 150r/min |
Positioning Accuracy | ±0.03mm/min | ±0.03mm/min |
Re-positioning Accuracy | ±0.02mm/min | ±0.02mm/min |
機械的な利点
The machine adopts side structure layout and is annealed and aged at 600℃ to eliminate stress, ensuring smooth high-speed operation for a long time.
Z-axis sealing module
Four pallet rollers support
Side-mounted bed body
制御システムの利点
Intelligent control system ensures accurate and efficient cutting process, comprehensively reduces manual intervention and improves production stability.
Automatically detect the position of the cutting head to ensure that the cutting head and the chuck “automatically maintain a safe distance” to eliminate the risk of collision.
High-precision control, real-time synchronized feedback, stable and anti-interference signal, efficient integration with intelligent processing.
According to the rotating attitude of the pipe, it automatically detects the relative position of the cutting head and the pipe, and automatically tracks it for smoother cutting.
The laser head and the pipe are synchronized in the process of movement, reducing the process of frequent acceleration and deceleration, realizing uninterrupted cutting, and increasing the cutting efficiency of dense graphics by 30%.
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当社は、お客様の真のニーズとユーザー エクスペリエンスを重視し、世界中のお客様にタイムリーで効果的なサービスを提供します。

機械メンテナンス
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柔軟なトレーニング
XT LASER はオンライン/オフラインの自由な組み合わせのトレーニング プログラムを提供しており、ニーズに応じて自由に選択できます。

グローバルスペアパーツ供給
「近接原則」を採用して世界中のユーザーにオリジナルアクセサリーを提供し、本社の中央倉庫から3〜5営業日以内に発送されます。

終日テクニカルサポート
7×24時間の3段階対応(緊急の問題は30分以内)、リモートガイダンス+プロセスパラメータライブラリのリアルタイム更新。
よくある質問
ご質問はございますか?以下のFAQで疑問を解決できます。
ファイバーレーザー切断機はどのような材料を切断できますか?
ファイバーレーザー切断機は、ステンレス鋼、炭素鋼、アルミニウム、銅、合金鋼、亜鉛メッキ鋼板、チタンなど、ほとんどの金属材料を切断できます。板金加工、厨房用品、航空宇宙、金属キャビネット、自動車部品、建設などの業界で広く使用されています。
What are the advantages of laser cutting machines over other cutting methods?
Laser cutting technology has significant comprehensive advantages over traditional cutting methods (such as flame cutting, plasma cutting, waterjet cutting).
- High precision laser cutting, narrow kerf width, smooth and burr-free, small heat-affected zone, no need for secondary grinding and polishing.
- Non-contact processing, no mechanical stress, avoiding tool wear or material deformation.
- Optimize cutting path through intelligent nesting system, reduce edge waste and save processing cost.
- Support seamless connection with intelligent control system (e.g. bus communication, automatic loading and unloading, visual positioning) to realize 24-hour unmanned production.
- Fiber laser electro-optical conversion rate>30%, low energy consumption, cost-effective.
- Can quickly switch the cutting pattern, high cutting efficiency, saving time and cost.
レーザー切断機はどのようなソフトウェアをサポートする必要がありますか?どのようなファイル形式と互換性がありますか?
ファイバーレーザー切断機には、LightBurn、AutoCA などの設計ファイルを処理して切断パスを生成するための専門的なレーザー切断制御ソフトウェアと CAM ソフトウェアが必要であり、DXF、SVG、AI (Adobe Illustrator)、EPS、DWG、PDF、PLT などと互換性があります。
What materials and pipe sizes can the TK120 cut?
- The machine can cut square, round and rectangular pipes made of carbon steel, stainless steel, aluminum alloy, brass and other metal materials.
- Cutting diameter range: Φ10-Φ120mm square and round tubes, rectangular tubes with long side length within 120mm, it should be noted that the diameter refers to the outer diameter of the tube.
- Cutting length of pipe: within 6.5m as standard.
Does the operation require specialized personnel? Does daily maintenance need to be complicated?
- Intelligent operation: equipped with graphical man-machine interface, support CAD drawings imported by one key, operators can get started after 1-3 days of training.
- Low-maintenance design: modular structure design, with automatic lubrication system and self-diagnostic function, only need to clean the guide rail and lens in daily life.
What should I pay attention to when maintaining the laser cutting machine?
- Clean or replace the optics (focusing mirror, reflector) and nozzle regularly to avoid contamination affecting the cutting quality.
- Check the operation status of the cooling system (water-cooled or air-cooled) to ensure that the water temperature and flow rate are normal to prevent the laser from overheating.
- Clean the debris of the guide rail, screw and other transmission parts and lubricate them regularly to ensure the precision of movement; check the filtering device of the dust removal system and clean the soot residue in time.
- Calibrate the optical path and cutting head focal length to ensure accurate laser beam centering and focusing.
- Regularly update the control system software and backup parameters, and record the operation log to track the status of the equipment. Always disconnect the power and wear protective equipment before operation to avoid accidental contact with high-voltage components or laser radiation.
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