La máquina manual de corte de tubos de Oakley Industrial Machinery está diseñada para realizar cortes limpios de tubos en longitudes rectas según la longitud requerida, lo que la convierte en una solución ideal para producciones en pequeñas y medianas series en la fabricación de elementos calefactores.
En esta configuración, el operario realiza manualmente todas las fases de manipulación, incluida la carga de las barras, el posicionamiento del tubo, la alimentación del material y la descarga de las piezas cortadas. Esta solución ofrece la máxima flexibilidad y un control total durante el corte de tubos destinados a elementos calefactores y a otras aplicaciones tubulares.
Las ventajas específicas que marcan la diferencia



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CUTTING UNIT
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The orbital score-and-pull-apart system is engineered to address the limitations of similar orbital cutting methods that rely on engraving wheels. This process employs either a rotary blade cutter or insert-style cutting technology to gradually score the tube, thinning a circular section of its wall. Once sufficiently weakened, a clamp separates the tube cleanly. The result is a chipless, burr-free cut with perfectly smooth edges and no deformation.
The saw-cutting system uses a high-resistance circular blade that spins at high speed to deliver fast, clean cuts. This technology can handle various tube thicknesses and materials while maintaining precise 90-degree cutting accuracy. In addition, the sturdy construction and cutting method increase the tool’s lifespan, providing long-lasting durability and dependable performance.
Guillotine cutting lines are engineered to produce tubes in customized lengths, with the internal diameter precisely calibrated at both ends. These systems are typically chosen for medium- to high-volume production, as they allow fast changeovers between cutting diameters. After cutting, a punching step removes the “heart-shaped” deformation created by the process. This punching can be carried out manually using a handheld tool or automatically through a transfer system positioned after the cutting station.
The orbital score-and-pull-apart system is engineered to address the limitations of similar orbital cutting methods that rely on engraving wheels. This process employs either a rotary blade cutter or insert-style cutting technology to gradually score the tube, thinning a circular section of its wall. Once sufficiently weakened, a clamp separates the tube cleanly. The result is a chipless, burr-free cut with perfectly smooth edges and no deformation.

The saw-cutting system uses a high-resistance circular blade that spins at high speed to deliver fast, clean cuts. This technology can handle various tube thicknesses and materials while maintaining precise 90-degree cutting accuracy. In addition, the sturdy construction and cutting method increase the tool’s lifespan, providing long-lasting durability and dependable performance.

Guillotine cutting lines are engineered to produce tubes in customized lengths, with the internal diameter precisely calibrated at both ends. These systems are typically chosen for medium- to high-volume production, as they allow fast changeovers between cutting diameters. After cutting, a punching step removes the “heart-shaped” deformation created by the process. This punching can be carried out manually using a handheld tool or automatically through a transfer system positioned after the cutting station.

If you frequently need to cut tubes with different diameters, CSM MACHINERY’s manual tube cutting line from bars lets you change the machine’s settings in only 5 minutes. Discover how!
Material de los tubos a cortar | Acero, acero inoxidable, cobre y aluminio |
Espesor del tubo a cortar | mm 0,3 – 1,00 |
Diámetro exterior del tubo | mm 6 – 22 (por definir) |
Longitud mínima de corte | 100 mm |
Alimentación neumática | Bar 6 |
Potencia eléctrica | KW 1,2 |
Tensión | Por definir (V) |
Tiempo de cambio de longitud de corte | min. 2 |
Tiempo de cambio de diámetro del tubo | min. 5 |
Tiempo de corte (operación de marcado y separación) | seg. 2,5 – 3,5 |
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