| Availability: | |
|---|---|
| Quantity: | |
HQT
Engineered specifically for high-precision shaft machining CNC applications where rigidity and accuracy are paramount, this slant bed high-rigidity CNC lathe is an ideal solution for component machining in ultra-precision machining CNC environments.
By combining Meehanite cast iron construction—renowned for exceptional vibration damping—with box guideways, the machine achieves minimal spindle runout, making it highly suitable for processing of slender shafts CNC and other high-tolerance components. Its robust high-power spindle delivers impressive rotational speed and torque, enabling stable stainless steel processing CNC and efficient machining of high-strength alloys.
The slant bed design optimizes chip evacuation, a critical feature for continuous automotive parts machining CNC and aerospace machining CNC, as it significantly reduces thermal distortion caused by swarf accumulation. Whether machining turbine shafts, pump rotors, or precision ball screws, this machine ensures consistent accuracy across long production runs and large workpieces, meeting the demands of motor shaft machining CNC and other precision component applications.
Structural Rigidity:
Double-nut preloaded ballscrews minimize backlash to an ultra-fine degree, a critical advantage for ultra-precision machining CNC processes such as thread cutting that require precise axis coordination. This structure supports both rough processing CNC and finishing operations while maintaining excellent dimensional stability.
A hydrostatic tailstock provides variable pressure support to accommodate long and heavy workpieces, effectively reducing deflection during shaft machining CNC and ensuring exceptional straightness tolerances throughout the entire machining length.
Precision Machining:
Linear scale feedback on all axes delivers real-time position data to the CNC controller, ensuring superior positioning accuracy during demanding processing of slender shafts CNC and high-end component machining tasks.
The coolant-through spindle system supplies cutting fluid directly to the tool–workpiece interface, significantly extending tool life during stainless steel processing CNC and machining of tough materials such as Inconel 718 and titanium alloys—commonly found in aerospace machining CNC applications.
User-Centric Design:
| NC | CNC Control System | FANUC Oi-TF | Unit |
| Machining Capability | Max. Swing Diameter | ø 500 | MM |
| Max. Machining Diameter × Length | ø 330×520 | MM | |
| Spindle Bore Diameter | ø 62 | MM | |
| Max. Bar Machining Diameter | ø 52 | MM | |
| Max.Supported Weight | 200 | KGF | |
| Spindle | Max. Spindle Speed | 4500 | RPM |
| Spindle Nose Type | A2-6 | / | |
| Spindle CS Indexing | (360°)0.001° | DEG | |
| Chuck Size | 8″ Hollow Chuck | INCH | |
| Feed | X-axis Max. Travel | 190 | MM |
| X-axis Rapid Traverse Speed | 30 | M/MIN | |
| Z-axis Max. Travel | 550 | MM | |
| Z-axis Rapid Traverse Speed | 36 | M/MIN | |
| Turret | Number of Tool Positions | 8月12日 | T |
| Tool Change Time | 0.2 | SEC | |
| External Tool Holder Height | 25*25/20*20 | MM | |
| Max. Internal Tool Holder Diameter | ø40/ø32 | MM | |
| Tailstock | Servo Tailstock | MT-4 | / |
| Motor | Spindle Motor Power | 11/15 | KW |
| Total Machine Power | 25 | KW | |
| Others | Coolant Tank Capacity | 220 | L |
| Oil Lubrication System Capacity | 1.8 | L | |
| Machine Height | 1770 | MM | |
| Floor Space (L × W) | 2320*1600 | MM | |
| Total Machine Weight | 4000 | KG | |
| Optional Configurations | SIEMENS/SYNTEC System | 22KW Electric Spindle | Tailstock Center |
| High-Pressure Water Output 30/70Bar | Bar Feeder, Part Catcher | Automatic Door | |
| 10-Inch Hollow Chuck | / | / |
1. Wheel hub processing
New energy vehicle wheel hubs have higher requirements for precision and weight reduction. CNC lathes can complete multiple processes with a single clamping, significantly improving efficiency.
2. Manufacturing of three-electric system components
The three-electric system is the core of new energy vehicles and involves the processing of a large number of complex and precision components: Motor and electronic control housing: CNC lathes are used to process motor housings, electronic control box covers and other components; Battery components: Structural parts such as battery trays and end caps require high-precision machining.
3. Post-processing of integrated die-cast structural components
The body of new energy vehicles is transitioning to integrated die-casting, which requires precision machining after forming: Large structural component machining: For example, die-cast parts such as the front compartment and rear floor require five-axis CNC machine tools to complete multi-surface machining, reducing the number of setups and lowering costs.
What systems are available for selection?
Our products have Fanuc Oi-TF,SIEMENS,Mitsubishi,SYNTEC,GSK,KND.
What is your typical delivery time?
Standard machines are usually delivered within 25–30 days. Customized models may vary depending on complexity.
What is your standard package?
Our package is export standard plywood case with pallet.
Do you provide operator training?
Yes. We welcome your engineers or operators to have operator training at our site. And we are able to provide online technical support as well.