20 Series 500
CNC lathes are among the most widely used CNC machine tools. They are primarily employed for machining the inner and outer cylindrical surfaces of shafts and disc‑shaped parts, as well as internal and external conical surfaces with arbitrary taper angles, complex rotating internal and external surfaces, and cylindrical and conical threads. They can also perform grooving, drilling, reaming, reaming, and boring operations.
High-speed, quiet ball screws enhance machine tool accuracy, ensure machining stability, deliver high positioning precision, and minimize wear to maintain accuracy over extended periods.
Category:
Keywords:
Tilted-type turning-milling composite CNC lathe
Heavy-cutting type turning-milling composite CNC lathe
Product Details
Product Features
● 45° integral inclined bed design, offering high rigidity and smoother chip evacuation.
● Finite element structural analysis demonstrates a well‑designed rib layout, resulting in excellent stress distribution.
● The X/Y/Z-axis ball screws all feature a pre-tensioned design, which minimizes the impact of thermal expansion during machining on screw accuracy. Oil seals are installed at both ends of the screw to protect the bearings, ensuring quiet operation.
● The tailstock features linear steel‑inlaid guideways, offering high rigidity under heavy loads and a two‑layer structure. A fine adjustment mechanism is provided between the upper and lower layers, enabling precise micro‑adjustment of the tailstock’s center of rotation along the X‑axis. It is standardly equipped with a live center tailstock design.
● Evergrande’s independently designed integrated permanent‑magnet synchronous spindle housing delivers low noise, high precision, long service life, superior surface finish, constant torque output, and exceptional C‑axis positioning accuracy.
● Wide range of optional accessories: such as a material feeder, a workpiece receiver, a large hollow chuck, an enlarged spindle through-hole, a tool setter, and an automated gantry robot.
● The machine tool features a modular design, allowing customers to select equipment with different functions based on their specific product requirements, enabling rapid implementation of automated systems and meeting diverse customer needs.


Roller guide rail
High-precision linear rolling guideways enhance travel speed and significantly reduce non-cutting time. Featuring imported ball‑bearing guideways, they deliver superior positioning accuracy, minimal wear, and long-term precision retention, thereby boosting productivity and ensuring machining stability.

45° Integrated Tilted Bed Design
High-speed, silent ball screws enhance machine tool accuracy, ensuring machining stability; they offer high positioning precision and low wear, enabling long-term maintenance of accuracy.

Spindle Power-Torque Chart

Tool interference diagram

Exterior Dimension Drawing

20 Series 500
| Project | Unit | HL 205-T500 | HL 205- D460 | HL 205-Y460 | HL 206-T480 | HL 206-D450 | HL 206-Y450 | ||
| Processing range | Maximum turning diameter of the bed body | mm | 560 | 560 | 585 | 560 | 560 | 585 | |
| Maximum cutting diameter | mm | 382 | 332 | 308 | 382 | 332 | 308 | ||
| Maximum cutting length | mm | 485 | 473.5 | 469 | 475 | 463.5 | 459 | ||
| Through the maximum diameter of the bar stock | mm | 45 | 45 | 45 | 52 | 52 | 52 | ||
| Spindle | Maximum spindle speed | rpm | 4500 | 4500 | 4500 | 4000 | 4000 | 4000 | |
| Spindle end model | ISO | A₂-5 | A₂-5 | A₂-5 | A₂-6 | A₂-6 | A₂-6 | ||
| Spindle through-hole diameter | mm | 56 | 56 | 56 | 61 | 61 | 61 | ||
| Spindle taper bore taper | - | Mohs hardness 6# | Mohs hardness 6# | Mohs hardness 6# | Metric 70 | Metric 70 | Metric 70 | ||
| Spindle center to ground height | mm | 992 | 992 | 1006 | 992 | 992 | 1006 | ||
| Tailstock | Tailstock travel | mm | 85 | 85 | 85 | 85 | 85 | 85 | |
| Taper of the tapered hole | Morse | 4# | 4# | 4# | 4# | 4# | 4# | ||
| XYZ axis | Itinerary X/Z | mm | 195/500 | 195/500 | 175/500 | 195/500 | 195/500 | 170/500 | |
| Itinerary Y | mm | / | / | ±35 | / | / | ±35 | ||
| Fast movement X/Z | m/min | 30/30 | 30/30 | 30/30 | 30/30 | 30/30 | 30/30 | ||
| Quick Move Y | m/min | / | / | 30 | / | / | 30 | ||
| Dota | Number of workstations | - | 8 | 12 | 12 | 8 | 12 | 12 | |
| Outer turning tool shank specifications | mm | 25x25 | 20x20 | 20x20 | 25x25 | 20x20 | 20x20 | ||
| Maximum diameter of the boring tool shank | mm | 32 | 25 | 25 | 32 | 25 | 25 | ||
| Machine tool accuracy | Positioning accuracy | X/Z | mm | ± 0.006 | ± 0.006 | ± 0.006 | ± 0.006 | ± 0.006 | ± 0.006 |
| Y | mm | / | / | ± 0.006 | / | / | ± 0.006 | ||
| Repeatability of positioning accuracy | X/Z | mm | ± 0.003 | ± 0.003 | ± 0.003 | ± 0.003 | ± 0.003 | ± 0.003 | |
| Y | mm | / | / | ± 0.003 | / | / | ± 0.003 | ||
| Total machine tool capacity | kVA | 16 | 18.5 | 19.5 | 22.5 | 24.5 | 25.5 | ||
| Machine tool external dimensions (length × width × height) | mm | Right row: 3290*1540*1710; rear row: 2355*2355*1710 | |||||||
| Machine tool weight | kilogram | 3400 | 3500 | 3600 | 3400 | 3500 | 3600 | ||
| CNC system | - | Kaidi | |||||||
| Main motor torque | N.m | 87 | 87 | 87 | 147 | 147 | 147 | ||
| Servo motor torque X/Z | N.m | 9.6 | 9.6 | 9.6 | 9.6 | 9.6 | 9.6 | ||
| Servo motor torque Y | N.m | / | / | 4.2 | / | / | 4.2 | ||
| Hydraulic chuck | inch | 6" | 6" | 6" | 8" | 8" | 8" | ||
| Automatic chip conveyor | - | Rear row (right side) | |||||||
20 Series 300
| Project | Unit | HL 205-J430 | HL 206-J430 | HL 205-T360 | ||
| Processing range | Maximum turning diameter of the bed body | mm | φ480 | φ480 | φ520 | |
| Maximum cutting diameter | mm | φ200 | φ200 | φ200 | ||
| Maximum cutting length | mm | 360 | 360 | 360 | ||
| Through the maximum diameter of the bar stock | mm | φ33 | φ45 | φ33 | ||
| Spindle | Maximum spindle speed | rpm | 4000 | 4000 | 4000 | |
| Spindle end model | ISO | A₂-5 | A₂-6 | A₂-5 | ||
| Spindle through-hole diameter | mm | φ56 | φ58 | φ56 | ||
| Spindle taper bore taper | - | Mohs hardness 6# | Metric 70 | Mohs hardness 6# | ||
| Spindle center to ground height | mm | 992 | 992 | 992 | ||
| Tailstock | Tailstock travel | mm | / | / | 80 | |
| Taper of the tapered hole | Morse | / | / | 4# | ||
| XYZ axis | Itinerary X/Z | mm | 430/450 | 430/450 | 180/450 | |
| Itinerary Y | mm | / | / | / | ||
| Fast movement X/Z | m/min | 25 | 25 | 25 | ||
| Quick Move Y | m/min | / | / | / | ||
| Dota | Number of workstations | - | / | / | 8 | |
| Outer turning tool shank specifications | mm | 20x20 | 20x20 | 25x25 | ||
| Maximum diameter of the boring tool shank | mm | φ25/φ32 | φ25/φ32 | φ32 | ||
| Machine tool accuracy | Positioning accuracy | X/Z | mm | ± 0.006 | ± 0.006 | ± 0.006 |
| Y | mm | / | / | / | ||
| Repeatability of positioning accuracy | X/Z | mm | ± 0.003 | ± 0.003 | ± 0.003 | |
| Y | mm | / | / | / | ||
| Total machine tool capacity | kVA | 12 | 14 | 12 | ||
| Machine tool external dimensions (length × width × height) | mm | 2200x1610x1800 | ||||
| Machine tool weight | kilogram | 3000 | 3000 | 3000 | ||
| CNC system | - | KND Kaidi | ||||
| Main motor torque | N.m | 5.5 | 7.5 | 5.5 | ||
| Servo motor torque X/Z | N.m | 9.6 | 9.6 | 9.6 | ||
| Servo motor torque Y | N.m | / | / | / | ||
| Hydraulic chuck | inch | 6" | 8" | 6" | ||
| Automatic chip conveyor | - | Rear row (right side) | ||||
| Project | Unit | HL 206-T330 | HL205-D330 | HL 206-D300 | HL 205-Y330 | HL 206-Y300 | ||
| Processing range | Maximum turning diameter of the bed body | mm | φ520 | φ520 | φ520 | φ520 | φ520 | |
| Maximum cutting diameter | mm | φ380 | φ200 | φ200 | φ200 | φ200 | ||
| Maximum cutting length | mm | 330 | 330 | 300 | 330 | 300 | ||
| Through the maximum diameter of the bar stock | mm | φ45 | φ33 | φ45 | φ33 | φ45 | ||
| Spindle | Maximum spindle speed | rpm | 4000 | 4000 | 4000 | 4000 | 4000 | |
| Spindle end model | ISO | A₂-6 | A₂-5 | A₂-6 | A₂-5 | A₂-6 | ||
| Spindle through-hole diameter | mm | φ58 | φ56 | φ58 | φ56 | φ61 | ||
| Spindle taper bore taper | - | Metric 70 | Mohs hardness 6# | Metric 70 | Mohs hardness 6# | Metric 70 | ||
| Spindle center to ground height | mm | 992 | 992 | 992 | 992 | 992 | ||
| Tailstock | Tailstock travel | mm | 80 | 80 | 80 | 80 | 80 | |
| Taper of the tapered hole | Morse | 4# | 4# | 4# | 4# | 4# | ||
| XYZ axis | Itinerary X/Z | mm | 180/450 | 105/450 | 105/450 | 105/450 | 105/450 | |
| Itinerary Y | mm | / | / | / | 60 | 60 | ||
| Fast movement X/Z | m/min | 25 | 25 | 25 | 25/25 | 25/25 | ||
| Quick Move Y | m/min | / | / | / | 25 | 25 | ||
| Dota | Number of workstations | - | 8 | 12 | 12 | 12 | 12 | |
| Outer turning tool shank specifications | mm | 25x25 | 20x20 | 20x20 | 16x16 | 16x16 | ||
| Maximum diameter of the boring tool shank | mm | φ32 | φ25/φ32 | φ25/φ32 | φ25 | φ25 | ||
| Machine tool accuracy | Positioning accuracy | X/Z | mm | ± 0.006 | ± 0.006 | ± 0.006 | ± 0.006 | ± 0.006 |
| Y | mm | / | / | / | ± 0.006 | ± 0.006 | ||
| Repeatability of positioning accuracy | X/Z | mm | ± 0.003 | ± 0.003 | ± 0.003 | ± 0.003 | ± 0.003 | |
| Y | mm | / | / | / | ± 0.003 | ± 0.003 | ||
| Total machine tool capacity | kVA | 14 | 14.5 | 16.5 | 21 | 27.5 | ||
| Machine tool external dimensions (length × width × height) | mm | 2220x1610x1800 | ||||||
| Machine tool weight | kilogram | 3300 | 3400 | 3400 | 3500 | 3500 | ||
| CNC system | - | Kaidi | ||||||
| Main motor torque | N.m | 7.5 | 5.5 | 7.5 | 13.7 (87 N·m) | 23(147 N·m) | ||
| Servo motor torque X/Z | N.m | 9.6 | 9.6 | 9.6 | 9.6 | 9.6 | ||
| Servo motor torque Y | N.m | / | / | / | 4.2 | 4.2 | ||
| Hydraulic chuck | inch | 8" | 6" | 8" | 6" | 8" | ||
| Automatic chip conveyor | - | Rear row (right side) | ||||||
CNC lathes are among the most widely used CNC machine tools. They are primarily employed for machining the inner and outer cylindrical surfaces of shafts and disc‑shaped parts, as well as internal and external conical surfaces with arbitrary taper angles, complex rotating internal and external surfaces, and cylindrical and conical threads. They can also perform grooving, drilling, reaming, reaming, and boring operations.
High-speed, quiet ball screws enhance machine tool accuracy, ensure machining stability, deliver high positioning precision, and minimize wear to maintain accuracy over extended periods.
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