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Heavy Duty CNC Lathe Machine With Tailstock

This series of heavy duty CNC lathes CK6140/CK6150/CK6180 have the characteristics of high precision, high power, high rigidity, etc. Its main components and structures are optimized and designed. It is the preferred equipment for processing shafts, discs, sleeves, special-shaped surfaces and screw workpiece. 

    Products Video

    Technology Parameter

    Parameter SPECIFICATIONS Units CK6140 CK6150 CK6180
    Machining Capacity Maximum turning diameter over bed mm 400 500 800
    Maximum turning diameter over turret mm 200 250 480
    Maximum workpiece length mm 750/1000/1500/2000 850/1000/1500/2000 1000/1500/2000/3000
    Maximum bar machining diameter mm 42 72 95
    Diameter of spindle bore mm 52 82 105
    Maximum stroke of X mm 300 300 420
    Maximum stroke of Z mm 750/1000/1500/2000 850/1000/1500/2000 1000/1500/2000/3000
    Power System Spindle maximum spindle speed r/min 2000 12-1600 40-125/110-350/290-950
    Spindle Motor KW 5.5 7.5 11
    Tool Post Height of rectangular tool shank section mm 20 25 32
    Tailstock Sleeve diameter mm 65 75 120
    Sleeve taper   MT 4 MT 5 MT 6
    Sleeve travel mm 140 140 250
    Precision Repeat Positioning accuracy mm 0.01 0.01 0.01
    Machining accuracy mm 0.01 0.01 0.01
    Spindle beat mm 0.01 0.01 0.01
    Other Machine weight kg 1500/1600/1800/2000 2800/2900/3300/3700 4800/5200/5600/6200
    Machine Size mm 2200/2500/3000/3500*1500*1800 2600/2850/3350/3850*1500*1800 3500/3900/4300/5200*2000*1900

    Appearance and Features

    1.The machine head box and the bed, tailstock, pallet and other joint surfaces are manually scraped and polished, and the whole machine is tested which effectively guarantees the positioning accuracy of the Z axis and X axis, repeat positioning accuracy, reverse clearance and stability of the machine tool
    2.The machine tool adopts high-strength cast iron and hard guide rails with wear resistance and stability. 
    3.The machine tool spindle adopts high properties bearings, and the machine tool gears adopt precision grinding, which effectively improves the gear hardness and reduces the machine tool noise.
    4.The machine tool, Z-axis ball screw, and X-axis ball screw adopts a tensile structure, which improves the accuracy of the outer circle and inner hole size of the workpiece.

    Configuration Introduction

    • Heavy Duty CNC (2)
    • 1.CNC Control System

      The GSK980TB3i bus system is a high-performance CNC system developed by Guangzhou CNC Equipment Co., Ltd. The system adopts advanced control algorithms and high-speed processors to achieve high-speed and high-precision processing control. It supports multi-axis linkage control and can meet the processing requirements of complex parts. It has rich functions, such as tool radius compensation, tool length compensation, backlash compensation, pitch error compensation, etc. It also supports macro programming, graphic simulation, online processing and other functions, which are convenient for users to program and operate.
    2.Manual chuck and tailstock
    The standard configuration use manual chuck and tailstock that have the characteristics of simple structure, high flexibility, large clamping force, high precision, low cost, wide application range and easy operation.
    • Heavy Duty CNC (3)
      CK6140, CK6150 with the three-claw manual chuck
    • Heavy Duty CNC (4)
      CK6180 with the four claw manual chuck
    • The manual tailstock can be flexibly adjusted according to the processing needs. By rotating the handle, the tailstock sleeve can be moved forward and backward in the tailstock body to adjust the distance between the center and the workpiece. In addition, the tailstock can also move left and right on the lathe bed to accommodate workpieces of different lengths.
    • Heavy Duty CNC (5)
    • Heavy Duty CNC (1)
    • 3.4-station electric tool post
      The 4-station electric tool holder can install 4 tools. Through electric control, the tools can be automatically changed and the tool change speed is fast, which improves the processing efficiency.

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