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The Tuda Face Plate Lathe Model TFL1600 is a heavy-duty machine designed for turning large and heavy workpieces, commonly used in industries like heavy machinery, shipbuilding, aerospace, and general manufacturing. This model features a faceplate lathe configuration, which is ideal for clamping large, irregularly shaped, or difficult-to-mount workpieces directly onto a faceplate, instead of using a chuck or a collet. The Tuda TFL1600 is engineered for precision, robustness, and long-lasting performance.
The Tuda Face Plate Lathe TFL1600 is built for high-torque applications where large, heavy components need to be machined., this machine has a faceplate design for mounting workpieces, making it suitable for turning operations on non-symmetrical and oversized parts. The lathe is capable of performing various operations such as turning, facing, boring, and threading with precision.
This machine is specifically engineered for heavy-duty operations, offering a high level of rigidity and stability to handle large workpieces. It is often found in environments where large-scale, low-to-medium volume production is required.
Key Specifications:
Swing Over Gap
1600 mm (approximately 1.6 meters), which allows it to accommodate larger diameter workpieces.
Max Turning Diameter:
1250mm (depending on the specific configuration of the faceplate), enabling the machine to handle large-diameter parts.
Max Turning Length: 2000 mm, allowing for the turning of long and large workpieces.
Spindle speed range typically between 20 RPM to 250 RPM, optimized for heavy-duty cutting and precision work.
Faceplate Diameter: 1200 mm, depending on the specific model and configuration. The large faceplate allows for mounting heavy and irregularly shaped workpieces.
Tailstock:
Constructed with a high-quality cast iron bed, ensuring minimal vibration during machining to achieve high precision.
Control System:
The lathe may come equipped with CNC controls such as Siemens or Fanuc, depending on the machine configuration, to ensure precision and automation during operations.
X-Axis and Z-Axis Travel:
X-Axis Travel: Typically 350 mm to 500 mm, for radial tool movement.
Z-Axis Travel: Typically 1500 mm to 2000 mm, providing substantial longitudinal travel for larger workpieces.
Coolant System:
Applications:
Shipbuilding: Machining large ship components like propeller shafts and hull parts.
Aerospace: Machining large structural components and parts that require high precision.
Heavy Machinery: Turning large, heavy parts used in construction equipment and industrial machinery.
Energy Industry: Machining turbine components, valve bodies, and other large parts.
General Manufacturing: Used for large-scale part production, such as rotating components or structural elements.
Advantages:
High rigidity and stability: The heavy-duty construction minimizes vibrations, ensuring high accuracy for large and heavy components.
Flexibility: The faceplate configuration allows for machining a variety of non-symmetrical or oversized workpieces that cannot be easily mounted on traditional lathes.
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