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The Horizontal Machining Center redefines high-efficiency production of complex parts with its horizontal spindle configuration—a design that enhances chip evacuation and improves tool access to multi-sided workpieces. Equipped with an automated pallet changer, it enables unattended machining (lights-out production) for aerospace, automotive, and general engineering industries. Its heavy-duty cast iron frame and symmetrical design ensure stability under continuous high-load cutting.
This machine adopts high-quality cast iron components and a structure optimized via finite element analysis (FEA). It can withstand extremely strong cutting forces while maintaining high positioning accuracy across all axial directions. Its integrated vibration suppression system reduces resonance during deep-hole drilling processes.
The spindle is equipped with ceramic bearings to reduce friction, and an air purge system to prevent chip ingress. Its horizontal layout ensures gravity-assisted chip removal, minimizing recutting and extending tool life.
The FANUC 0i-MF CNC system includes AI-driven adaptive machining that adjusts feed rates based on real-time cutting load, preventing tool breakage.
Item | Unit | TH630 |
Table Size | MM | 630*700 |
Number of Tables | / | Standard single table, optional interchangeable dual tables. |
Table Rotation | ° | 1°*360 |
Maximum Load Capacity | KG | 1200 |
X/Y/Z Axis Travel | MM | 1050*750*900 |
Distance from Spindle Center to Table Surface | MM | 120-850 |
Distance from spindle end face to worktable surface | MM | 150-1050 |
Taper Specification (Model/installation Dimensions) | / | BT50-190 |
Maximum Spindle Speed | RPM/MIN | 6000 |
X/Y/Z Axes Cutting Feed Rate | MM/MIN | 10-15000 |
X/Y/Z Axes Rapid Traverse | M/MIN | 30 |
Positioning Accuracy | MM | ±0.01/300 |
Repeat Positioning Accuracy | MM | ±0.008/300 |
Spindle Drive Motor | KW | 15/18.5 |
X.Y.Z Axis Drive Motors | KW | 3/3/3 |
Tool Magazine Capacity | T | 30 |
Machine Dimensions(L*W*H) | MM | 5110*3815*3400 |
Machine Weight (Approx.) | T | 10 |
Remarks | / | “T” structure |
1. Shortening the mould development cycle
Rapid prototyping: By integrating CAD/CAM software, CNC machine tools can directly convert design data into physical moulds, bypassing the cumbersome steps of traditional manual mould making.
Multi-process integration: Multiple processes such as milling, drilling, and tapping can be completed in a single setup, reducing mould changeover and debugging time.
2. Realisation of complex mould structures
Non-standard flow channels and cooling systems: CNC milling can process conformal cooling channels (such as spiral channels in 3D-printed moulds), improving the cooling efficiency of injection moulds.
Microstructure processing: High-speed CNC machine tools (such as engraving and milling machines) can process micro-electrodes or precision textures (such as leather grain or embossing) in electronic connector moulds.
Multi-material composite machining: Supports direct machining of high-hardness materials such as tungsten carbide and quenched steel, reducing the risk of deformation due to heat treatment.
3. Mould repair and modification
Old mould repair: CNC machines can weld worn mould surfaces and then perform precision machining to restore accuracy and extend mould life.
Rapid mould modification: Adapt to product iteration requirements by quickly adjusting mould dimensions or structures through program modifications, reducing modification costs.
Where is the company located?
In Tongling, Anhui Province, which is close to Shanghai and Hangzhou, it only takes about three and a half hours by bullet train to reach there.
Is customization available?
Yes. We have rich experience in custom processing and can provide flexible customization services from bed to processing parameters to appearance.
How does Primacon provide after-sales service for CNC machine ?
We offer worldwide after-sales support, including machine installation, commissioning, operator training, and regular maintenance. Our technical team is always ready to address any technical issues, ensuring the long-term operation of the equipment.
What is your typical delivery time?
Standard machines are usually delivered within 25–30 days. Customized models may vary depending on complexity.