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Vertical lathe
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- Product Details
Vertical structure: The workpiece is clamped on the workbench surface, and the tool processes the workpiece from above. This structure is conducive to gravity chip removal, allowing the chips to fall naturally, avoiding the impact of chip accumulation on machining accuracy and tool life. At the same time, the vertical structure also has the advantage of a small footprint, making it suitable for use in workshops with limited space.
Multi-axis linkage: Typically equipped with multiple motion axes, such as X, Y, Z axes for linear motion, C axis for the rotary motion of the workbench, and some also come with B axis (angle-axis), etc. Multi-axis linkage can achieve the processing of complex curves and contours, and can complete various different types of turning and milling operations, realizing multiple machining operations in one clamping, improving machining accuracy and efficiency.
Tool system: equipped with an automatic tool changer, it can accommodate a variety of tool types, such as turning tools, milling tools, drilling bits, boring tools, tap, etc. Through automatic tool changing, different tools can be quickly switched during the machining process to meet the processing needs of different processes, reducing the time and error of manual tool changing and improving production efficiency.
Processing advantage
High degree of process integration: It is possible to complete a variety of processing processes such as turning, milling, drilling, boring, and tapping on a single machine tool, avoiding frequent clamping and handling of workpieces between different machine tools, reducing clamping errors, improving machining accuracy, and also greatly shortening the product's manufacturing cycle.
High processing accuracy: Advanced CNC system and high-precision transmission components, which can achieve precise motion control. The multi-axis linkage function can precisely control the relative position and motion trajectory between the tool and the workpiece, ensuring high profile accuracy and surface quality for the processing of complex-shaped parts. In addition, the structural design and manufacturing process of the machine tool also ensure that the machine tool has good rigidity and stability, which helps to reduce vibration and deformation during the machining process, further improving the machining accuracy.
Strong processing flexibility: It is able to adapt to the processing of a variety of types and specifications of parts. Whether it is a simple revolution body part or a complex irregular part, different processing processes can be realized through programming. According to the characteristics of the parts and the processing requirements, different processing methods such as turning or milling can be flexibly selected, and the processing parameters can be adjusted to meet a variety of production needs.
Application fields
Aerospace: For processing complex parts such as impellers, blades, and casings of aircraft engines, which usually have high precision, complex curves, and strict quality requirements, vertical turning and milling compound machine tools can meet their processing needs, improve production efficiency and part quality.
Automobile manufacturing: The machine can process key components of automobile engines, such as cylinder blocks, cylinder heads, crankshafts, camshafts, etc., as well as the manufacturing of automobile molds, achieving efficient and precise processing, which helps to improve the performance and quality of automobiles.
Die casting: Suitable for the processing of various precision molds, such as injection molds, die casting molds, stamping molds, etc. It can process complex parts such as mold cavities, cores, slides, etc., to ensure the accuracy and surface quality of the mold, and improve the service life of the mold.
Precision Machining: Extensively used in the processing of precision parts for industries such as electronics, medical devices, and instruments, it can meet the strict requirements of these fields for part accuracy and reliability.


