YMT TB2210 CNC Vertical Machining Center – Year 2015

YMT TB2210 CNC Vertical Machining Center – Year 2015

X-axis 2,250.4 mm
Y-axis 1,000.8 mm
Z-axis 899.16 mm
Power 26.1 kW
RPM 6,000 RPM
# ATC 32
Taper CAT 50
Table-W 2,250.4 mm
Table-L 1,000.8 mm
# Axis 3
Control CNC (Fanuc Oi-MF)
Dimensions 208″ x 145″ x 141″
Weight 36300
Brand: YMT
Model: TB2210

Table Area: 88.6″ x 39.4″
T-Slots: (7) 0.86″ x 5.9″
Table Max. Load: 6,600 lbs.
Travels:
X Axis: 88.6″
Y Axis: 39.4″
Z Axis: 35.4″
Spindle Nose to Tabletop: 6.5″ – 41.9″
Spindle Center to Column Cover: 39.3″
Rapid Feedrates (x,y,z) 472 ipm
Cutting Feedrates (x,y,z): 393 ipm
Spindle Taper: CAT 50
Spindle Speed: 6,000 rpm
Spindle Motor: 35 HP
Tools: 32 Bi-Directional, Random Access
Approx. Weight: 36,300 lbs.
Approx. Floor Space: 208″ x 145″ x 141″
Electrics: 220 V, 3 Phase, 60 Hz, 118 Amp Breaker

Hours as of Sep. 2025
Runtime: 6097

Equipped With
Fanuc Oi-MF CNC control
35 HP Spindle Motor
Fast 32 Tools Swing Arm ATC
6,000 Rpm Spindle Speed W/ Gear Box
Random Access/Bi-Directional ATC
Spindle Chiller
Chip Washing System / Oil Skimmer
Flood Coolant, 118 Gallon Tank
Additional Work & Tool Offsets
Hardened & Ground Box Way Construction
Absolute Encoder
Dual Chip Augers / Chip Conveyor
Aicc -Ii 200 Block Look Ahead
Automatic Central Lubrication System
Custom Macro B & Skip Function
Coolant Through Ballscrew 3 Axis
Rigid Tapping, Manual Guide
Handheld Water Gun / Cts Prep With Union
10.4″ Lcd Color Monitor
Cutting Air Blast / Spindle Air Blast
1280 Meters Memory W/ Pcmcia Expansion Slot
Heat Exchanger For Electrical Cabinet
RS 232c Interface & Ethernet Connection
Deep Hole Drilling Package
Laser tool probe
M-Code 30 Auto Power Off
Remote Handwheel

Machine sold As-Is Where-Is

Technical Evaluation of the YMT TB2210

CNC Vertical Machining Center (Year 2015)

1. Technical Evaluation Overview

The YMT TB2210 is a large-format, 3-axis CNC vertical machining center manufactured in 2015. The machine offers X/Y/Z travels of approximately 2,250 mm × 1,000 mm × 899 mm, positioning it firmly in the heavy-duty VMC category suitable for large workpieces.
It is equipped with a CAT 50 spindle interface, a 6,000 rpm spindle speed, and a 35 HP (26.1 kW) spindle motor, supported by a gearbox, indicating suitability for high-torque cutting rather than high-speed machining. The 32-tool bi-directional, random-access ATC supports efficient tool changes for multi-operation setups.
The machine uses hardened and ground box-way construction, favoring rigidity and load capacity over rapid acceleration. The table size of approximately 88.6″ × 39.4″ with a maximum load of 6,600 lbs confirms its role in heavy part machining.
Control is provided by a Fanuc Oi-MF CNC, with advanced features such as AICC-II 200-block look-ahead, rigid tapping, and Macro B capability. Runtime is reported at 6,097 hours as of September 2025, which is moderate for a machine of this class, though duty cycle and cutting load history are not specified.

2. What to Check Before Buying

Mechanically, inspection should focus on box way wear, especially on the X-axis given its long travel. Way surfaces, gibs, and lubrication delivery points should be checked for uneven wear or scoring. Ballscrews and thrust bearings should be evaluated for backlash and positioning consistency, particularly since coolant-through ballscrew functionality is listed.
The CAT 50 spindle should be tested for vibration, noise, and thermal stability under load. Verification of gearbox operation across speed ranges is critical, as gearbox condition significantly affects torque transmission.
Electrically and in terms of control, the Fanuc Oi-MF system should be powered and checked for alarm history, parameter integrity, and battery status for the absolute encoders. Network connectivity (Ethernet / RS-232C), memory expansion functionality, and operation of the LCD display should be confirmed.
Auxiliary systems such as the spindle chiller, chip conveyor and dual augers, central lubrication system, and coolant system should be tested in operation. The laser tool probe and deep-hole drilling functions require functional verification, as their presence alone does not confirm calibration or accuracy.

3. Typical Industrial Applications

Based on its size, rigidity, and CAT 50 spindle configuration, this machine is suited for large structural components, molds, dies, base plates, heavy fixtures, and general industrial parts requiring substantial material removal. The box-way design and gearbox-driven spindle favor applications involving steel, cast iron, and other difficult-to-machine materials, provided that part dimensions and weights remain within the stated table and travel limits.

4. Common Risks in Used Machines

Typical risks for used large VMCs include uneven box-way wear, reduced positioning accuracy over long travels, and hidden fatigue in spindle or gearbox components. Control-related risks may involve aging batteries, undocumented parameter changes, or incomplete backup data. Chip management systems and coolant circuits can also suffer from clogging or corrosion if maintenance has been inconsistent.
Documentation gaps—particularly electrical diagrams, maintenance logs, and alignment records—can complicate troubleshooting and long-term ownership.

5. Maintenance and Service Considerations

Ongoing service requirements depend heavily on prior use and maintenance quality. Regular inspection of lubrication delivery, way condition, spindle bearings, and cooling systems is essential for a machine of this size. The Fanuc Oi-MF control generally benefits from long-term industry support, but confirmation of software versions, option activation, and backup availability is recommended.
Given the machine’s mass and footprint, any major mechanical service or alignment work should be planned carefully, as downtime and handling requirements can be significant.

Final Note:
While extensive specifications and options are listed, critical details such as spindle bearing condition, axis accuracy, and full service history are not provided. These factors should be verified directly through inspection, testing, and documentation review before drawing final technical conclusions.

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