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Precision engineering of CK6150 CNC lathe for high performance shaft manufacturing
The CK6150 CNC lathe is a heavy duty horizontal turning center designed for engineers who require exceptional stability in processing medium sized shafts and disk components. It combines mechanical rigidity with advanced control logic to meet the stringent demands of modern machine shops.
The structural foundation of the CK6150 CNC lathe is built upon a high strength resin sand casting that undergoes rigorous thermal aging to eliminate internal stresses. This process is fundamental to preventing bed deformation over long periods of heavy duty operation. The guideways are precision ground and induction hardened to a high Rockwell hardness, providing a durable, low friction interface that facilitates the smooth movement of the carriage even under high cutting loads. This mechanical integrity ensures that the machine maintains its geometric alignment, a critical factor for automotive and general machinery manufacturers who rely on consistent part quality.
Inside the headstock, the CK6150 utilizes a high torque spindle supported by premium grade roller bearings. This configuration is engineered to handle massive radial forces during initial roughing stages where material removal rate is prioritized. The internal gear transmission is precisely ground to reduce noise and thermal generation, allowing for a seamless transition to high speed finishing passes. During the finishing stage, the spindle runout is maintained within a few microns, ensuring that the final surface finish meets the technical specifications required for precision components.
The process logic of the CK6150 is further enhanced by its versatile tool management system. Equipped with a standard 4 station vertical electric turret, the machine can execute a strategic sequence of facing, outer diameter turning, and threading in a single setup. By integrating precision ball screws on both X and Z axes, the CNC system provides absolute control over tool positioning, eliminating the risk of manual alignment errors. This reliability is particularly beneficial in sectors like valve manufacturing and oil industry equipment production, where repetitive precision and structural durability are essential for zero defect manufacturing.
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