Custom CNC Machine Solutions

Application-Oriented Machine Customization

 

Different manufacturing companies require different machining capabilities, production efficiency levels, and automation requirements. Our customization service is based on actual machining applications, not standard marketing configurations.
Customization is evaluated according to:
●Workpiece material and hardness
●Part size and machining stroke requirements
●Production volume (single piece / batch / mass production)
●Required machining accuracy and surface finish
●Factory layout and automation level

 

Spindle Configuration Customization

 

01/

Available Options
Belt-driven spindle (cost-effective general machining)
Direct-drive spindle (higher precision and stability)
Built-in motor spindle (high-speed and high-efficiency machining)

02/

What can be adjusted
Spindle speed range (e.g., low-speed heavy cutting or high-speed finishing)
Spindle torque (for heavy-duty cutting applications)
Taper size (BT40 / BT50 / HSK series depending on model)

03/

Engineering impact
Higher spindle speed improves finishing quality but reduces heavy cutting capacity
Larger taper improves rigidity but increases tool cost

04/

Suitable customers
Mold manufacturers requiring surface quality
Automotive suppliers requiring high-efficiency machining
Heavy industry requiring stable cutting performance

 

Machine Travel (Stroke) Customization

Adjustable parameters

X / Y / Z axis travel range
Column height and gantry span (for large parts)
Table size and loading capacity

Engineering limitations

Travel range is designed based on:
Machine structure rigidity
Ball screw length limitations
Guide rail support strength

 

Typical applications

Small precision parts (electronic / medical components)
Medium automotive parts
Large structural parts (energy / machinery industry)

 

 

CNC Control System Options
 

We support multiple international CNC systems depending on customer preference and operator familiarity:

FANUC (Japan) – Stable industrial standard
Siemens (Germany) – Advanced programming flexibility
Mitsubishi (Japan) – Cost-effective control solution
SYNTEC (Taiwan) – Widely used in Asia markets

Selection guidance
Mass production → FANUC preferred
Complex machining → Siemens recommended
Cost-sensitive projects → SYNTEC option

 

Tool Magazine Capacity Options

 

 

Available configurations
24 tools (standard machining)
30 tools (balanced production)
40 tools (complex machining requirements)
Custom expanded tool magazine (on request)
Engineering considerations
Larger tool magazine increases machine size and cycle time stability
Higher tool capacity improves multi-process machining efficiency

 

Automation Integration

We provide machine interfaces for automation systems, including:
Robotic arm loading/unloading systems
Gantry automatic loading systems
Pallet changer systems (horizontal machining centers)
Flexible production line integration


Typical use cases
Mass production automotive parts
24-hour unmanned production
Reduced labor cost manufacturing

About us

 

Chip Removal and Cooling System Options

 

 

Chip removal systems

Chain-type chip conveyor (heavy cutting applications)
Screw-type chip conveyor (compact machines)

 

Cooling systems

Standard coolant system
High-pressure coolant (deep hole machining)
Through-spindle coolant (tool life improvement)

 

Application impact

Proper chip removal and cooling directly affect:
Tool life
Surface finish
Machine stability in continuous operation

 

 

Electrical and Voltage Customization

 

Machines can be configured according to destination country standards:
●380V / 50Hz (standard China / Europe)
●220V / 60Hz (some Asia regions)
●415V / 50Hz (Middle East / Africa regions)
●460V / 60Hz (North America)

Control cabinet layout can also be adjusted based on:
●Local safety regulations
●Operator usage habits
●Maintenance accessibility requirements

 

Customization Process

Our customization is based on engineering evaluation:

Customer provides part drawings or sample photos

1

>>

Application analysis by engineering team

2

>>

Machine configuration proposal

3

>>

Technical confirmation and quotation

4

>>

Production and assembly adjustment

5

>>

Final inspection based on agreed configuration

6