Used KNUTH KKS 250 #9148755 for sale

KNUTH KKS 250
Manufacturer
KNUTH
Model
KKS 250
ID: 9148755
Circular saw.
KNUTH KKS 250 is a high-precision, numerical controlled, single-axis turning center engineered for the production of cylindrical parts. It is equipped with a highly rigid monoblock base frame which significantly minimize vibration and distortion, a chuck mounted spindle for a wide range of clamping chucks and accessories, and a user-friendly, efficient CNC equipment. KKS 250 turning center allows extremely accurate concentric positioning of the chucking system, smooth rapid traverse between points, and precise control of the speeds and feeds while cutting. It offers multiple tool holding options and includes a pneumatically operated turret for quick tool changes. In addition, the machine is outfitted with a Siemens Sinumerik 810D/840D CNC control unit for performing complex milling operations with high accuracy, as well as a multi-point, diamond-tipped tool detection machine. KNUTH KKS 250 is a highly efficient machine that is capable of machining complex parts with minimal setup time. The rigid machine structure allows for high-performance cutting, while the integrated spindle dampening tool and ultra-rigid linear guidance provide outstanding precision and turnover rates. Its high-speed feed rates allow for rapid production, while its adjustable speed and feed control capabilities create additional flexibility. In addition, the machine features a three-mode, cylinder-style tailstock which permits the manipulation of larger diameter components, while the linear guides and ballscrews provide superb power and accuracy for critical cutting operations. The tailstock also features a fixed, independent quill which is an additional aid in controlling the tailstock's movement. Finally, KKS 250 turning center not only provides greater rigidity and reliability, but also makes it possible to produce intricate parts in a more accurate and efficient manner. The integrated control asset allows for manipulation of cutting conditions from the machine itself, eliminating the need for manual adjustments and further maximizes the final part quality. This machine technology allows the user to efficiently produce high-quality components, with high degrees of precision, faster cycle times, and at a lower operating cost.
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