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CNC-VMC

Description

VMC is the most economical and most effective way of processing metals and other substances. VMCs are easy to use compared to HMC and easier to configure and manage. The VMC debugger is easier, which is why it is widely used on the market. VMC is more versatile compared to horizontal counterparts and has relatively simple CNC control.

Most VMC machines have three axes, x axis, y axis and z axis. The axis means the number of motors that can be individually driven to control the position of the tool. The X axis is usually left to right, the Y axis is pointing forward, and the Z axis is pointing up and down. In the standard 3-axis VMC, the cutter remains in the vertical direction. the cutting head in this milling machine is vertical and is a special type of milling machine in which the spindle moves in a vertical axis called the z axis. It has simpler configuration, management and functionality.

What will you learn
  • The learners should be able to understand the concept and techniques of CNC / VMC Machining.
  • You will be able to understand how to write drilling program by manually using G codes and M code.
  • You will be familiar with writing face milling program and circular pocket program by manually using G codes and M codes.
  • You will be able to understand how to write fillet and chamfer program and sub program for square pocket by manually using g codes and m codes.

499

Syllabus

CHAPTER 1 CNC Introduction
About cnc
Advantages of cnc
Disadvantages of cnc
Method of programing
Components in cnc
Types of cnc
Tools in cnc
Reference points
G codes
M codes

CHAPTER – 2 VMC INTRODUCTION
VMC introduction
G codes
M codes

CHAPTER – 3 VMC MACHINE WORKING VIDEO
How to set the work and tool
How to insert the program
How automatic tool changer work
How CNC-VMC work

CHAPTER – 4 REFFERENCE TYPES AND CO-ORDINATE SYSTEM TYPES
Types of reference
Types of co-ordinate system
CHAPTER – 5 DRILLING MANUAL PROGRAM
How to write drilling program by manually using G codes and M codes

CHAPTER – 6 FACE MILLING MANUAL PROGRAM
How to write face milling program by manually using G codes and M codes

CHAPTER – 7 CIRCULAR POCKET MANUAL PROGRAM
How to write circular pocket program by manually using G codes and M codes

CHAPTER – 8 FILLET AND CHAMFER MANUAL PROGRAM
How to write fillet and chamfer program by manually using g codes and m codes

CHAPTER – 9 SUB MANUAL PROGRAM FOR SQUARE POCKET
How to write sub program for square pocket by manually using G codes and M codes

CHAPTER – 10 SUB MANUAL PROGRAM FOR CICULAR POCKET
How to write sub program for circular pocket by manually using G codes and M codes

CHAPTER – 11 CUTTER COMPENSATION AND ITS MANUAL PROGRAMS
Types of cutter compensation
Cutter compensation manual program

CHAPTER – 12 CAD AND CAM PROGRAMMING INTRODUCTION
Programing steps in software
Prepare the Model in cad
Import the model in cad
File types
Define milling and operation

CHAPTER – 13 FACE MILLING CAM PROGRAM
How to write face milling program by using CAM (CRE-O) software

CHAPTER – 14 DRILLING CAM PROGRAM
How to write face drilling program by using CAM (CRE-O) software

CHAPTER – 15 FILLET AND CHAMFER CAM PROGRAM
How to write face fillet and chamfer program by using CAM (CRE-O) software

CHAPTER – 16 POCKET CAM PROGRAM USING ROUGHING OPTION
Roughing option
How to write pocket program by using CAM (CRE-O) software

CHAPTER – 17 POCKET MAKING CAM PROGRAM USING VOLUME ROUGHING OPTION
Volume roughing option
How to write pocket program by using CAM (CRE-O) software

CHAPTER – 18 MULTIPLE OPERATIONS IN SINGLE CAM PROGRAM
Drilling, engraving, fillet in single CAM (CRE-O) program

CHAPTER – 19 EXAMLE OF CRITICAL JOB CAM PROGRAMING
Making critical job in CREO Making cam program CREO Save that program

CHAPTER – 20 Video Project

Duration

7Hrs

Language

தமிழ்

Qty

1 DVD ROM

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