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How CNC Vertical Lathe for Brake Disc Improves Productivity and Brake Disc Accuracy for Automotive Parts 2025-11-01



The video captures Hengga Intelligent's CNC Vertical lathe for brake disc in real working conditions, machining an automotive brake disc through rough and finish turning. The footage focuses on the cutting process rather than internal mechanical details, allowing viewers to observe how the equipment combines power, precision, and automation in actual brake disc production.


This CNC Vertical lathe for brake disc integrates a vertical spindle structure with automatic loading, clamping, machining, transferring, and unloading functions in sequence. The system is designed for continuous operation and high‑volume brake disc and hub applications. Its rigid heat‑symmetric cast‑iron base and column feature optimal rib reinforcement to minimize vibration and thermal deformation, allowing the machine to sustain long‑term accuracy and reliability even under heavy cutting conditions.


Both X and Z axes adopt a wide‑span design using imported high‑rigidity linear guides and large‑specification ball screws to ensure cutting stability and precision positioning. The Z‑axis is equipped with linear ball slideways and a balanced counterweight system, directly driven by a servo motor for smooth, repeatable movements. These features enable the CNC Vertical lathe for brake disc to perform fast rough and fine turning while maintaining dimensional consistency and superior surface finish.


At its core, a high‑torque servo spindle motor provides excellent performance across high‑speed and low‑speed ranges, achieving the clean brake disc surfaces shown in the video. The machine's advanced FANUC CNC system and absolute‑value servo drives allow precise control over feed axes, contributing to consistent machining accuracy and dependable operation. Whether processing brake discs, hubs, flanges, or flywheel components, the machine adapts to high‑precision, large‑batch requirements typical of modern automotive manufacturing.


Automatic lubrication through a decompression intermittent system delivers timed, quantitative oil flow to each point, guaranteeing optimal lubrication for prolonged cycles. The system design eliminates concerns about long‑term operation and maintenance. The servo‑driven vertical turret offers high rigidity and rapid tool change, reducing non‑cutting time and aligning well with high‑efficiency production expectations.


In this demonstration, the CNC Vertical lathe for brake disc shows its cutting performance from roughing to finishing: the tool maintains steady contact under load, and the spindle moves smoothly without vibration. These visible results signify the structural strength of its thermally balanced frame and precision spindle bearings rated P4 accuracy, providing near‑silent operation and minimal thermal expansion during extended runs.


Beyond technical specifications, attention to ergonomics and environmental safety is evident. The fully enclosed sheet‑metal design prevents cutting debris from scattering, keeping the surrounding workspace clean and safe for operators. Compact integration of mechanical, electrical, and hydraulic modules contributes to a neat appearance and reduces required floor space for production lines.


The automatic processes and dependable precision reduce operator workload and improve cost efficiency for large brake disc and hub manufacturers. The CNC Vertical lathe for brake disc not only enhances machining quality and repeat accuracy but also supports sustainable production goals—making it a trusted, high‑performance solution for firms seeking to modernize their brake disc manufacturing capabilities.


In conclusion, the footage underscores Hengga Intelligent's ability to merge design stability, intelligent control, and productive automation into one machine. The CNC Vertical lathe for brake disc stands out for its smooth turning, structural reliability, and consistent brake disc finish—qualities that continue to earn recognition in high‑volume automotive part production worldwide.

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