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TBX-300 L CNC Turning Machine

TBX-300 L CNC Turning Machine

Product Details:

  • Product Type Turning Machine
  • Material Metal
  • Type Horizontal
  • Computerized No
  • Automatic Yes
  • Power Source Electric
  • Motor AC Motor
  • Click to view more

TBX-300 L CNC Turning Machine Price and Quantity

  • 1 Unit
  • INR/Unit

TBX-300 L CNC Turning Machine Specification

  • 1 year
  • Electric
  • AC Motor
  • Low Energy Consumption High Speed
  • No
  • Metal
  • Yes
  • Horizontal
  • Turning Machine

TBX-300 L CNC Turning Machine Trade Information

  • Cash Advance (CA)
  • 4 Week
  • All India

Product Description

TBX-300 L CNC Turning Machine that engineered to make various metal parts turning, grilling, grooving and shaping easier. Featured with linear guide-ways On X and Z-Axis, Small Foot Print, linear guide-ways On X and Z-Axis, Full Splash Guard and C Axis, the machine is highly acclaimed for its high operational fluency, easy maintenance, great efficiency and sturdy construction. Ideal for industry of automotive, electrical, instrument apparatus, etc., this machine is available in varied models, sizes and configurations.

TBX-300 L CNC Turning Machine Specifications:

1. Model Name/Number: TBX-300L

2. Material: Mild Steel

3. Maximum Turning Length: 600 mm

4. Power Source: Electric

5. Swing over bed: 500 mm

6. Maximum turning diameter: 300 mm

7. Motor Torque: 7 Nm

Frequently Asked Questions:

Q. What is a CNC turning machine?

Ans: A CNC turning machine, also known as a CNC lathe, is a computer-controlled machine tool used for precision machining of cylindrical workpieces. It rotates the workpiece while cutting tools remove material to achieve the desired shape.

Q. How does a CNC turning machine differ from a conventional lathe?

Ans: CNC turning machines are automated and controlled by computer programs (CNC code) that dictate tool movements, speeds, and other parameters. Conventional lathes require manual operation and do not have the same level of automation.

Q. What types of materials can be machined on a CNC turning machine?

Ans: CNC turning machines can work with a variety of materials, including metals (such as steel, aluminum, and brass), plastics, and some composites. The choice of material depends on the specific requirements of the part being produced.

Q. What are the primary components of a CNC turning machine?

Ans: Key components include the bed, headstock, spindle, chuck or collet, tool turret, tool holders, tailstock, control panel, coolant system, and axis movement mechanisms.

Q. What are the main advantages of using CNC turning machines?

Ans: CNC turning machines offer high precision, repeatability, and efficiency. They can produce complex parts with minimal manual intervention, leading to increased productivity. CNC programming allows for the automation of the machining process.

Q. How is a CNC turning machine programmed?

Ans: CNC programs are created using computer-aided design (CAD) and computer-aided manufacturing (CAM) software. The program contains instructions for tool movements, spindle speeds, and other parameters needed to produce the desired part.

Q. Can CNC turning machines handle multiple tools?

Ans: Yes, many CNC turning machines have tool turrets that can hold multiple cutting tools. This allows for automatic tool changes during machining, enabling the use of different tools for various cutting operations.

Q. What is the role of coolant in CNC turning?

Ans: Coolant is used to lubricate cutting tools, dissipate heat generated during machining, and flush away chips from the cutting area. It helps improve tool life, surface finish, and overall machining efficiency.

Q. How do CNC turning machines ensure accuracy and quality?

Ans: CNC turning machines use feedback mechanisms, sensors, and precision control systems to monitor and adjust parameters in real-time. This ensures accuracy and allows for quality control during the machining process.

Q. What are some common applications of CNC turning machines?

Ans: CNC turning machines are used in various industries for producing components with cylindrical or conical shapes. Common applications include the production of shafts, bolts, screws, bushings, and other precision parts.
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