USED OKUMA MCR-C
The OKUMA MCR-C is a high-performance large-scale double-column machining center designed for heavy-duty 5-sided machining of oversized components in industries such as aerospace, energy, shipbuilding, automotive tooling, and heavy equipment manufacturing. It is engineered to deliver high power, high torque, and high productivity while maintaining dimensional stability over long machining cycles. The machine is widely used for large structural parts, molds, and complex prismatic components where rigidity and cutting strength are critical.
A key feature of the MCR-C is its exceptionally rigid structure combined with a powerful spindle system designed for heavy cutting. The machine supports 5-sided machining using multiple spindle heads and attachment systems, allowing different machining orientations without full re-fixturing. This reduces setup time, improves accuracy, and increases productivity for large parts.
The machine offers a highly scalable working envelope depending on configuration. Table sizes range from approximately 1,500 × 3,000 mm up to 3,000 × 12,000 mm, making it suitable for very large industrial components. The distance between columns ranges from about 2,650 mm to 3,650 mm, while axis travel can extend up to X: 12,200 mm, Y: 4,200 mm, and Z: 1,250 mm in larger models.
The spindle system is built for heavy-duty machining, typically offering speeds up to 4,000 RPM with optional configurations up to 6,000 or 10,000 RPM depending on application needs. Spindle power is typically around 45/37 kW (or higher in certain configurations), enabling strong material removal rates on steel and cast iron.
Tool capacity is highly flexible, starting from around 50 tools and expanding up to 360 tools depending on setup, making it suitable for complex multi-operation machining with reduced tool change interruptions.
Overall, the MCR-C is designed for large-scale manufacturing environments where rigidity, power, and flexible 5-sided machining capability are more important than compact size or high-speed light machining.
OKUMA MCR-C SPECIFICATIONS
| OKUMA MCR-C – AXIS |
|---|
| 3-Axis Double Column Machining Center |
| X-Axis (Table Longitudinal Movement) |
| Y-Axis (Cross Rail / Column Movement) |
| Z-Axis (Ram / Spindle Head Vertical Movement) |
| 5-Face Machining via Attachment Heads |
| AAC (Auto Attachment Changer) System |
| High-Rigidity Ram Spindle Structure |
| OKUMA MCR-C – AXIS TRAVELS |
|---|
| X-Axis Travel: 4,200 – 12,200 mm |
| Y-Axis Travel: 3,200 – 4,200 mm |
| Z-Axis Travel: 1,050 – 1,250 mm |
| Distance Between Columns: 2,650 – 3,650 mm |
| Designed for Extra-Large Heavy Components |
| OKUMA MCR-C – CAPACITY |
|---|
| Table Size: 1,500 x 3,000 mm to 3,000 x 12,000 mm |
| Maximum Workpiece Capacity: Multi-ton Class |
| High-Rigidity Table for Heavy Cutting |
| Suitable for Large Industrial Structures |
| OKUMA MCR-C – SPINDLE |
|---|
| Spindle Speed: 4,000 rpm (Optional 6,000 / 10,000 rpm) |
| Spindle Motor Power: 45 / 37 kW (60 / 50 hp) |
| Max Torque: Up to 2,025 N·m |
| Gear-Driven Ram Type Spindle |
| Designed for High-Power Heavy Cutting |
| OKUMA MCR-C – TABLE |
|---|
| Large Fixed Table Construction |
| Supports Very Large Workpieces |
| High Load Capacity Bed Design |
| Optimized for 5-Face Machining |
| OKUMA MCR-C – TOOL MAGAZINE |
|---|
| Tool Capacity: 50 Tools (Standard) |
| Optional: 80 / 100 / 120 / 180 / 240 / 360 Tools |
| Automatic Tool Changer (ATC) |
| Supports AAC Attachment Heads |
| OKUMA MCR-C – FEEDRATES |
|---|
| Rapid Traverse (X/Y): 24 m/min |
| Rapid Traverse (Z): 15 m/min |
| High-Speed Movement for Large Axis Travel |
| Stable Heavy-Duty Cutting Performance |
| OKUMA MCR-C – COOLANT & CHIP MANAGEMENT |
|---|
| Flood Coolant System |
| High-Volume Chip Flushing |
| Chip Conveyor (Optional) |
| Designed for Continuous Heavy Machining |
| OKUMA MCR-C – CONTROL SYSTEM |
|---|
| CNC Control: Okuma OSP Suite |
| Thermo-Friendly Concept |
| Servo Stability Control |
| AAC Integration for Multiple Heads |
| High Precision Large-Part Machining |
| OKUMA MCR-C – POWER & AIR REQUIREMENTS |
|---|
| Power Requirement: Approx. 60 – 80 kVA |
| Voltage: 3-Phase Industrial Supply |
| Air Requirement: Approx. 5–6 bar |
| Suitable for Heavy Industrial Operations |
| OKUMA MCR-C – DIMENSIONS |
|---|
| Machine Length: Up to ~27,930 mm |
| Machine Width: ~7,810 – 9,895 mm |
| Machine Height: ~6,620 – 7,200 mm |
| Very Large Double Column Structure |
| Requires Factory-Level Installation Space |
| OKUMA MCR-C – GENERAL INFORMATION |
|---|
| Machine Type: Double Column Machining Center |
| Manufacturer: Okuma Corporation |
| Model: MCR-C |
| Designed for Heavy Industry Large-Part Machining |
| High Rigidity for Roughing and Finishing |
| Supports Full 5-Face Machining with Attachments |
| INDUSTRIES THAT USE OKUMA MCR-C |
|---|
| Aerospace |
| Automotive |
| Energy & Power Generation |
| Shipbuilding |
| Heavy Engineering |
| Mold & Die |
| TYPICAL PARTS OKUMA MCR-C CAN PRODUCE |
|---|
| Large Machine Tool Beds |
| Turbine Casings |
| Structural Steel Components |
| Ship Engine Parts |
| Heavy Industrial Frames |
| Large Mold Bases |
| WHY CHOOSE OKUMA MCR-C |
|---|
| Extremely High Rigidity for Heavy Cutting |
| Large Work Envelope for Oversized Parts |
| High Torque Spindle for Tough Materials |
| AAC System Enables Flexible 5-Face Machining |
| Stable Thermal Control for Accuracy |
| Ideal for Large-Scale Industrial Production |
WHY BUY USED OKUMA MCR-C
Buying a used OKUMA MCR-C is a strong decision for manufacturers that require large-part machining capability but want to significantly reduce capital investment. Since this machine is built for heavy industrial cutting, it maintains strong structural rigidity and performance even after long-term use.
One of the biggest advantages is cost savings. A new MCR-C is a major capital investment due to its large double-column structure, long travel capabilities, and high-power spindle system. A used machine allows access to the same heavy-duty machining capacity at a much lower price, making it attractive for industries such as energy, railway, automotive tooling, and large fabrication.
Another key benefit is high-productivity 5-sided machining. The MCR-C uses interchangeable spindle heads and attachment systems that allow multiple machining orientations in a single setup. Even in used condition, this reduces setup time, minimizes repositioning errors, and improves overall production efficiency.
Cutting time (machine hours) is an important factor when evaluating used units. Lower-hour machines generally have better spindle condition, improved axis accuracy, and reduced wear on guideways and tool systems. However, the MCR-C is designed with a highly rigid structure and thermal stability system, meaning even higher-hour machines can remain productive if properly maintained.
Another advantage is flexibility in large-part production. The machine can handle both heavy roughing and precision finishing of oversized components, making it suitable for both job shops and dedicated production environments.
Additionally, Okuma’s strong global service network and in-house control system support ensure long-term reliability and parts availability, reducing operational risk when purchasing used equipment.
Overall, a used MCR-C offers excellent value for manufacturers needing rigid, high-power, large-format machining capability at a significantly reduced investment compared to new machines.
HOW MUCH DOES A USED OKUMA MCR-C COST?
The cost of a used OKUMA MCR-C depends heavily on machine size configuration, age, condition, spindle hours, tool magazine capacity, and attachment system options. As a large double-column machining center, pricing is strongly influenced by structural condition and production usage history.
For older machines (typically pre-2005 or heavily used units with 40,000–80,000+ cutting hours), prices generally range from $150,000 to $350,000. These machines are often sold in as-is condition and may require spindle refurbishment, control upgrades, or guideway reconditioning before full production use.
For machines built between 2005 and 2015, used pricing typically falls between $350,000 and $700,000, depending on condition and configuration. Machines in this category often have moderate cutting hours (20,000–50,000 hours) and can still perform reliably in heavy industrial environments if properly maintained.
For newer machines manufactured between 2015 and 2025, pricing generally ranges from $700,000 to $1.5M+, especially for long-travel configurations, high tool capacity systems, and advanced automation setups.
Cutting time is one of the most important pricing factors. Lower-hour machines typically have better spindle health, improved axis accuracy, and reduced wear on tool changers and guideways. Higher-hour machines may be cheaper initially but can require significant maintenance investment.
Other key pricing factors include table size configuration, spindle power rating, attachment head system condition, tool magazine capacity, and whether the machine has been used in continuous heavy production environments.
In conclusion, the used MCR-C market is strongly driven by condition, configuration, and cutting hours. A well-maintained mid-hour machine typically offers the best balance of cost efficiency and large-scale machining capability.
