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MCV Series Vertical Machining Center

35.00 Lakh

This is a MCV Series Vertical Machining Center

Product Specification

Number of Axis 3 Axis
X-Y-Z Axis Travel 500x400x450
Spindle Power 5.5 kW
Model ARV 500
Applicable Industry Aerospace, Automobile, Die & Mould, Defence, Semiconductor
Job Material Aluminium, Cast Iron, Steel
Spindle Taper BT-40
Table Working Surface Size 650X400
Table T-Slot Size 3X14X125

Vertical machining centers are commonly used in various industries for precision machining operations. Here are some general characteristics and features associated with VMCs:

  1. Structure and Construction: VMCs are built with a sturdy and rigid structure to ensure stability and minimize vibrations during machining. This rigidity is crucial for achieving high precision and accuracy in the machined parts. The machine’s frame and components are designed to withstand heavy cutting forces and maintain the required stability.
  2. Vertical Spindle: VMCs have a vertically oriented spindle, positioned perpendicular to the worktable. The spindle rotates the cutting tool at high speeds to perform various machining operations, such as milling, drilling, and tapping. The specific specifications of the spindle, including its power, speed range, and tool holding system, can vary depending on the machine model and manufacturer.
  3. Axis Movement: VMCs feature a worktable that can move along multiple axes, typically X, Y, and Z. These axes allow for precise positioning and movement of the workpiece relative to the cutting tool. The machine’s control system precisely controls the movement of the axes to execute complex machining operations with high accuracy.
  4. Automatic Tool Changer (ATC): VMCs often come equipped with an ATC, which automatically changes cutting tools during the machining process. This enables efficient and uninterrupted machining, as different tools can be used for various operations without manual intervention. The capacity of the ATC can vary, ranging from a few tool positions to dozens or even hundreds, depending on the machine’s design.
  5. Control System and Programming: VMCs are typically controlled by computer numerical control (CNC) systems. The CNC system interprets the machining program, which is usually generated using computer-aided manufacturing (CAM) software. The CNC system controls the machine’s movements, spindle speed, tool changes, and other parameters. Programming includes specifying tool paths, cutting parameters, and instructions for the machine to follow.
  6. Precision and Accuracy: VMCs are known for their ability to achieve high levels of precision and accuracy. The combination of a rigid structure, precise control systems, advanced tooling, and accurate positioning allows VMCs to produce tight tolerances and excellent surface finishes on machined parts.

It is in a good working condition.

No pending loan against the machine

It has been Recently serviced.

This is a MCV Series Vertical Machining Center

Product Specification

Number of Axis 3 Axis
X-Y-Z Axis Travel 500x400x450
Spindle Power 5.5 kW
Model ARV 500
Applicable Industry Aerospace, Automobile, Die & Mould, Defence, Semiconductor
Job Material Aluminium, Cast Iron, Steel
Spindle Taper BT-40
Table Working Surface Size 650X400
Table T-Slot Size 3X14X125

Vertical machining centers are commonly used in various industries for precision machining operations. Here are some general characteristics and features associated with VMCs:

  1. Structure and Construction: VMCs are built with a sturdy and rigid structure to ensure stability and minimize vibrations during machining. This rigidity is crucial for achieving high precision and accuracy in the machined parts. The machine’s frame and components are designed to withstand heavy cutting forces and maintain the required stability.
  2. Vertical Spindle: VMCs have a vertically oriented spindle, positioned perpendicular to the worktable. The spindle rotates the cutting tool at high speeds to perform various machining operations, such as milling, drilling, and tapping. The specific specifications of the spindle, including its power, speed range, and tool holding system, can vary depending on the machine model and manufacturer.
  3. Axis Movement: VMCs feature a worktable that can move along multiple axes, typically X, Y, and Z. These axes allow for precise positioning and movement of the workpiece relative to the cutting tool. The machine’s control system precisely controls the movement of the axes to execute complex machining operations with high accuracy.
  4. Automatic Tool Changer (ATC): VMCs often come equipped with an ATC, which automatically changes cutting tools during the machining process. This enables efficient and uninterrupted machining, as different tools can be used for various operations without manual intervention. The capacity of the ATC can vary, ranging from a few tool positions to dozens or even hundreds, depending on the machine’s design.
  5. Control System and Programming: VMCs are typically controlled by computer numerical control (CNC) systems. The CNC system interprets the machining program, which is usually generated using computer-aided manufacturing (CAM) software. The CNC system controls the machine’s movements, spindle speed, tool changes, and other parameters. Programming includes specifying tool paths, cutting parameters, and instructions for the machine to follow.
  6. Precision and Accuracy: VMCs are known for their ability to achieve high levels of precision and accuracy. The combination of a rigid structure, precise control systems, advanced tooling, and accurate positioning allows VMCs to produce tight tolerances and excellent surface finishes on machined parts.

It is in a good working condition.

No pending loan against the machine

It has been Recently serviced.

 

7Expert Score
What is on Sale : This is a Vertical Machining Center
Value for Money
6.5
Maintenance
6
Paperwork (bills, service)
5.5
Working Condition
6
MCV Series Vertical Machining Center
MCV Series Vertical Machining Center

35.00 Lakh

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