Economical CNC Lathe CK6432

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Description

The Economical CNC Lathe CK6432 is designed for precision machining, featuring a robust braced machine bed constructed from high-quality grey cast iron. This lathe is equipped with an elaborate spindle bearing and inductively hardened bed guideways, ensuring exceptional durability and performance. The dovetail slot lathe carriage is also inductively hardened, contributing to the machine’s longevity.

Flexibility is key with the CK6432, as it allows the installation of both electric and combination tool turrets. Users can choose between manual or automatic lubrication, depending on their operational preferences. The machine is capable of handling various machining tasks, including turning inner and outer cylinders, end faces, cone faces, circular arc faces, and shaft threads, delivering high processing efficiency and precision.

With a standard configuration of a 4-bit power tool column and an optional 6-bit configuration, this lathe is suitable for a wide range of applications, particularly in industries such as automotive, valve manufacturing, power tools, and hardware.

Specifications

Attribute Detail
Max. swing over bed O 360mm
Max. swing over carriage 150mm
Max. cutting length 500/750mm
Rail width 260mm
Spindle nose A2-6
Spindle bore CD 60mm
Taper of spindle bore MT6
Chuck 8”
Range of spindle speed 150-2500rpm
X axis travel 350mm
Z axis travel 500/750mm
X/Z rapid speed 4/7m/min
Station of tool carrier 4 or 6 or 8 (optional)
Max. section of tool 20 x 20mm
Stroke of tailstock sleeve 100mm
Diameter/Hole of tailstock sleeve 50mm/MT4
Main motor power 3.7kW
Coolant pump power 120W
Overall dimensions (LxWxH) 1740/2000 x 1210 x 1650mm
Packing size (LxWxH) 1960/2230 x 1410 x 1990mm
Net weight 1275/1450KG
Gross weight 1450/1600KG

Additional Information

The Economical CNC Lathe CK6432 is ideal for high-precision tasks, making it a perfect addition to any workshop looking to enhance its machining capabilities. Regular maintenance and proper lubrication will ensure the longevity and optimal performance of the machine.

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