TDX100 Dual - Spindle Inclined - Bed Giant For ∅10 - ∅160mm Machining
Specifications and Technical Parameters | |
ltem | unit | TDX100 |
Processing dia range | mm | ∅10~∅160 |
Processing lenght range | mm | 200~800 |
Milling depth MAX | mm | 5 |
Center drill dia range | mm | A2-B10 |
Milling spinde speed | r/min | 300~800 |
Drilling spinde speed | r/min | 600~2000 |
Power of the main motor | KW | 7.5 |
Overall dimensions(LxWxH) | mm | 3700*1800*1700 |
Machine weight | Kg | 6500 |
Working Accuracy | |
Milling length consistency | mm | 0.05 |
Center hole depth consistency | mm | ≤0.03 |
Face runout of the Center hole | mm | ≤0.03 |
Center hole surface roughness | Ra | 1.6 |
Optional function parameters | |
Turning dia MAX | mm | ∅100 |
Effective length of the package | mm | 20~30 |
Rigid tapping | mm | M24 |
The TDX100 is a state - of - the - art inclined - bed milling and drilling machine, engineered to meet the demands of precision manufacturing across diverse industries.
- Diameter: Can handle workpieces with a diameter ranging from ∅10 to ∅160mm. The optional turning function has a maximum diameter of ∅100mm.
- Length: The processing length range is 200 - 800mm, with an effective package length of 20 - 30mm for specific operations.
- Milling: Maximum milling depth of 5mm. The milling spindle speed varies from 300 to 800 r/min.
- Drilling: Drilling spindle speed ranges from 600 to 2000 r/min. Center drill diameter ranges from A2 - B10. It also features rigid tapping up to M24.
- Power: A 7.5 - KW main motor provides robust power for efficient machining.
- Precision: Milling length consistency is within 0.05mm. Center hole depth consistency is ≤0.03mm, face runout of the center hole is ≤0.03mm, and the center hole surface roughness is Ra 1.6.
- Inclined - Bed Design: This design ensures better chip evacuation and enhanced stability during operation.
- Ideal for machining engine components like crankshafts and camshafts, as well as transmission parts. The machine's precision and power can meet the strict requirements of automotive part manufacturing.
- Used for producing structural components such as aircraft frames and engine mounts. The high - precision machining capabilities are crucial for ensuring the safety and performance of aerospace parts.
- Can be employed to manufacture parts for pumps, valves, and various mechanical tools. The ability to perform multiple machining processes makes it a valuable asset in this industry.


