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Computer Numerical Control (CNC) CNC Training Course Computer numerically controlled (CNC) 03035530865 Course in Rawalpindi
CNC Programming Course Content
01.Introduction to Computer Numerical Control (CNC)
Numerical control
Functions of a machine tool
Concept of numerical control
Historical Development
Definition
Advantages of CNC machine tools
Evolution of CNC
02.Blue print reading
Reading the machining sketches
Different Geometrical Tolerance symbols.
Reading Dimensional Tolerances.
Understanding the Views.
Concept of First angle & Third angle projection.
03.Auto CAD basic (ACAD-01)
Sketching Points line, Circles & Arcs.
Simple exercises based on above.
Isometric Views.
Splines & poly lines
Identifying the points in given drawing.
04.Conventional milling Awareness
Introduction to milling machine & its parts.
Different operations of milling.
Plain milling
Step milling
Slot malling
Pocket milling
Co-ordinate drilling
Job setting in vice by dialing
Job setting on bed with clamps
05.CNC Milling- Basic
Fundamentals of CNC milling
Familiarization of control panel
Fundamentals of CNC programming
Part programming techniques
Machining practice on CNC Milling
Practice session at Industry
06. CNC Turning.
Work piece setting methods
Tool setting methods
Practice on CNC Turning.
Exercises on machine & Practice.
Course Contents
Basic Math & Trigonometry
Tolerances
Safety & First Aid
Fundamentals of CAD
Conventional Machine Shop Operations
CNC Machine Shop Operations
Manual Programming
CNC Software Programming (CAM)
Life Skills
Learning Outcomes
Draw (2D & 3D) drawings by using AutoCAD
Understand and Explain about CNC machine operations
Generate Manual Program with help of G and M codes
Calculate the Cutting Speed and Spindle Speed
Write Manual Program
Simulate Programming on CNC Simulator
Operate CNC Turning Center and Machining Center
Generate cutter location data and manufacture actual part as per CAD model
Computer numerically controlled (CNC) programming is employed by makers to instruct machines in manufacturingcomponents. browse on to be told however CNC programming works and to search out out the steps you would possibly desire become a CNC applied scientist. colleges providing Machining & producing degrees may be found in these widespread decisions.CNC programming training in Rawalpindi
CNC programmers write the directions for the computing module that’s accustomed run CNC machines. The machines square measure accustomed form and cut exactness product like machine, car, and aviation components. The programmers plot out every step of however machines build these components. They convert that info into a kind that is usable to the machine.
Once a CNC set-up operator downloads the program onto a machine and tests it, any necessary modifications and enhancements square measure created. in step with the U.S. Bureau of Labor Statistics (BLS), CNC programming
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CNC Artcam Traininigs CAM Software based CNC programming Installation and commissioning of CNC machines Control elements and feedback devices Electric drives and servomotors
Study on CNC machine — mechanical elements
Maintenance of Pneumatic and hydraulic elements
ABOUT THE COURSE
Development of CNC is an outstanding contribution to the manufacturing industries. With the help of CNC technology, it has been possible to integrate production equipment into a totally computer-controlled environment. So it becomes essential to update the knowledge of practicing engineers in the areas of diagnostics, troubleshooting and maintenance of CNC machines. The course content if framed to provide an in depth knowledge on the present state-of-art technology.
OBJECTIVE OF THE COURSE
To induce knowledge on the basics of CNC technology and their latest developments.
To develop all participants capable of independently program, operate, maintain and trouble shoot CNC machines.
FACILITIES AVAILABLE
CD PSG CNC Lathe with Fanuc Controller.
Galaxy CNC Lathes with Fanuc Controller.
DMG CNC Turning Centres with Fanuc Controller.
DMG VMC 810 CNC Milling with Fanuc Controller.
Fanuc NC Guide Software
Course Contents
Introduction and basics of CNC Machines
Fundamental and advanced programming of CNC Lathes and Machining centres
Tooling for CNC machines
CAM Software based CNC programming
Installation and commissioning of CNC machines
Control elements and feedback devices
Electric drives and servomotors
Study on CNC machine — mechanical elements
Maintenance of Pneumatic and hydraulic elements
Maintenance and troubleshooting of CNC machines.
Course Contents
Basic Math & Trigonometry
Tolerances
Safety & First Aid
Fundamentals of CAD
Conventional Machine Shop Operations
CNC Machine Shop Operations
Manual Programming
CNC Software Programming (CAM)
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Email: [email protected]
03035530865, 03219606785
CNC Programmer Certificate is the highest level CNC certificate program and is designed to address the need of manufacturers for people with the ability to program computer numerical control (CNC) O32196O6785
milling and turning machines using ISO/EIA "G & M" code programming. This course of study teaches learners to write programs to machine parts in CNC lathes and CNC mills. Learners also learn to program CNC machines using computer aided manufacturing (CAM) software. Participants will write programs, proof the programs, set up CNC machines, call up programs, and run the programs that they write to produce parts.
CNC (Computer Numerical Controlled) Operator Certificate Programs
CNC stands for computer numerical control. It is a versatile system that allows you to control the motion of tools and parts through computer programs that use numeric data. CNC can be used with nearly any traditional machine. The most common CNC machines found in the machine shop include machining centers (mills) and turning centers (lathes). These classes will explain operations performed with the help of CNC. The content is for individuals who need to understand what CNC is and how it works. Content covers the basic machines as well as programming for the more experienced user.
Theoretical & Practical courses available, including:
Basic and Advanced Turning
Basic and Advanced Milling
CAD CAM
The two most popular forms of metal-cutting CNC machine tools include:
CNC machining centres, which machine a stationary work piece with a rotating cutting tool
CNC turning centres, which machine a rotating work piece with a stationary cutting tool.
This course focuses on turning centres. Note that a similar course is available for machining centres. Participants will learn how to program CNC turning centres in four lessons. The more you know about basic machining practices as they apply to turning operations, the easier it will be to learn to program a CNC turning centre. We emphasize manual programming (G code Level) techniques. It is with this style of CNC programming that you can be the most intimate with the CNC machine tool, commanding everything the machine will do from within your program. And a thorough understanding of manual programming is prerequisite for mastering any computer aided manufacturing (CAM) system.
In a manufacturing environment where machines do much of the labor, the human touch is needed to ensure consistent productivity and high quality of goods. Computer numerical controlled (CNC) equipment operators handle the initial startup of a program, maintain quality control of the parts being machined and troubleshoot CNC machine tools when necessary.
CNC operators use CNC machinery to create machine parts and other precision products. Individuals looking for employment as CNC operators can learn their craft through CNC operator certificate programs. CNC operator certificate programs include instruction in methods for setting up, programming and operating CNC machinery. CNC Machine Operators require skills in operating a CNC machine but are not machinists. Through industry task analysis as well as strong involvement with our development partner, CNC Machine Operator Program brings a highly focused, streamlined set of skills to CNC Machine Operator training. Many training programs for CNC Machine Operators use training really designed for machinists, which incorporates a lot of theory not relevant to the role of CNC Machine Operator. For example, a CNC machine operator needs to know how to run a CNC program – not how to design one.
RSDC’s CNC Machine Operator Program focuses exclusively on the modern CNC machine operator, including such tasks as maintaining machines and recording SPC (Statistical Process Control) data. It covers all the skills operators need, from operating the CNC machine to set-up of tooling and fixtures to quality inspection.
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Tel: +92 303 5530 865 & +92 321 9606 785
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Email: [email protected]
03035530865, 03219606785
VMC (Vertical Machining Centers)
A vertical machining center (VMC) is a machining center with its spindle in a vertical orientation. High-end VMCs are high-precision machines often used for tight-tolerance milling, such as fine die and mold work. Low-cost vertical machining centers are among the most basic CNC machine tools. vertical machining centers are designed to provide stiffness and rigidity for chatter-free cutting, agility for high-speed/hard-milling and accuracies for tight-tolerance blends and matches typical of complex, 3-D contoured geometry associated with die/mold and medical production. VMC delivers precision, accuracy and excellent stability for the machining of complex materials, including ceramics, intricate cores and cavities.
CNC Machine Operator Program is the real deal – students can develop and practice the skills required to effectively operate a CNC machine.They learn by doing. CNC machine operators must have a wide array of skills to be effective in their jobs.
CNC machine operators must have a wide array of skills to be effective in their jobs. RSDC’s CNC Machine Operator Program teaches operators hands-on skills in the following areas:
Performing part measurement and gauging
Interfacing with a CNC
Making tooling decisions
Responding to machine malfunctions
Setting-up and operating a CNC machine
CNC Set-Up/Operator Certificate is designed for individuals who have limited or no manufactuirng background in the setup and operation of CNC equipment. This certificate covers how to perform:
Operation of machine tools
Computer operations
Entry-level CNC programming
CNC setup
CNC operation
Industrial trades math
Blueprint reading
Use of precision measuring equipment
Certification
A certificate will be issued to students who successfully complete the three levels of Operations and/or the three levels of Programming within each certificate. Our leading-edge equipment provides an excellent opportunity to get hands-on training as an operator and programmer.
There are two streams based on the machines (Machining Centre and Turning Centre) available for the CNC Certificate:
CNC Machining Centre Operator Certificate I
CNC Machining Centre Programming Certificate II
CNC Turning Centre Operator Certificate I
CNC Turning Centre Programming Certificate II
You may choose to earn all four certificates.
Program Model / Completion Requirements
In your chosen machine type, it is suggested that you register for all three core courses at the same time. Students completing one level will not be guaranteed placement at the next level.
Students with previous experience who wish to enter a higher-level CNC course, without completing previous levels, will be required to demonstrate CNC skills and competencies prior to registration. Contact program area for the required forms. Students registering in CNC courses are accepted on a “first come - first served” basis.
Note: Students must take courses in the prerequisite sequence.
Program Description
As a student of Mechanical Techniques - CNC Programming, you’ll benefit from a curriculum built on hands-on learning. You’ll spend a large portion of your time working in a practical setting, becoming proficient in metal machining operations and planning procedures, with emphasis on practical machining techniques. You'll be introduced to modern manufacturing processes including Computer Numerical Control (CNC) Programming, Computer Assisted Drafting (CAD) and Computer Assisted Manufacturing (CAM) software. This computer training will enhance your ability to set up and produce pieces in accordance with engineering drawing specifications.
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Email: [email protected]
03035530865, 03219606785
Computer Numerical Control (CNC) CNC Training Course Computer
numerically controlled (CNC) 03035530865 Course in Rawalpindi
What is CNC Machining?
CNC machining is a term commonly used in manufacturing and
industrial applications, but exactly what does the acronym CNC
stand for and what is a CNC machine?
The term CNC stands for 'computer numerical control', and the
CNC machining definition is that it is a subtractive
manufacturing process which typically employs computerized
controls and machine tools to remove layers of material from a
stock piece—known as the blank or workpiece—and produces a
custom-designed part. This process is suitable for a wide range
of materials, including metals, plastics, wood, glass, foam,
and composites, and finds application in a variety of
industries, such as large CNC machining and CNC machining
aerospace parts. When speaking in terms of the machine itself,
the CNC machine definition is that it represents the actual
programmable machine that is capable of autonomously performing
the operations of CNC machining. Note the contrast between the
process (CNC machining definition) versus the machine (CNC
machine definition).
Subtractive manufacturing processes, such as CNC machining, are
often presented in contrast to additive manufacturing
processes, such as 3D printing, or formative manufacturing
processes, such as liquid injection molding. While subtractive
processes remove layers of material from the workpiece to
produce custom shapes and designs, additive processes assemble
layers of material to produce the desired form and formative
processes deform and displace stock material into the desired
shape. The automated nature of CNC machining enables the
production of high precision and high accuracy, simple parts
and the cost-effectiveness when fulfilling one-off and medium-
volume production runs. However, while CNC machining
demonstrates certain advantages over other manufacturing
processes, the degree of complexity and intricacy attainable
for part design and the cost-effectiveness of producing complex
parts is limited.
While each type of manufacturing process has its advantages and
disadvantages, this article focuses on the CNC machining
process, outlining the basics of the process, and the various
components and tooling of the CNC machine (sometimes
incorrectly known as a C and C machine). Additionally, this
article explores various mechanical CNC machining operations
and presents alternatives to the CNC machining process.
Overview of CNC Machining Process
Evolving from the numerical control (NC) machining process
which utilized punched tape cards, CNC machining is a
manufacturing process which utilizes computerized controls to
operate and manipulate machine and cutting tools to shape stock
material—e.g., metal, plastic, wood, foam, composite, etc.—into
custom parts and designs. While the CNC machining process
offers various capabilities and operations, the fundamental
principles of the process remain largely the same throughout
all of them. The basic CNC machining process includes the
following stages:
Designing the CAD model
Converting the CAD file to a CNC program
Preparing the CNC machine
Executing the machining operation
CAD Model Design
The CNC machining process begins with the creation of a 2D
vector or 3D solid part CAD design either in-house or by a
CAD/CAM design service company. Computer-aided design (CAD)
software allows designers and manufacturers to produce a model
or rendering of their parts and products along with the
necessary technical specifications, such as dimensions and
geometries, for producing the part or product.
Designs for CNC machined parts are restricted by the
capabilities (or inabilities) of the CNC machine and tooling.
For example, most CNC machine tooling is cylindrical therefore
the part geometries possible via the CNC machining process are
limited as the tooling creates curved corner sections.
Additionally, the properties of the material being machined,
tooling design, and workholding capabilities of the machine
further restrict the design possibilities, such as the minimum
part thicknesses, maximum part size, and inclusion and
complexity of internal cavities and features.
Once the CAD design is completed, the designer exports it to a
CNC-compatible file format, such as STEP or IGES.
CAD File Conversion
The formatted CAD design file runs through a program, typically
computer-aided manufacturing (CAM) software, to extract the
part geometry and generates the digital programming code which
will control the CNC machine and manipulate the tooling to
produce the custom-designed part.
CNC machines used several programming languages, including G-
code and M-code. The most well-known of the CNC programming
languages, general or geometric code, referred to as G-code,
controls when, where, and how the machine tools move—e.g., when
to turn on or off, how fast to travel to a particular location,
what paths to take, etc.—across the workpiece. Miscellaneous
function code, referred to as M-code, controls the auxiliary
functions of the machine, such as automating the removal and
replacement of the machine cover at the start and end of
production, respectively.
Once the CNC program is generated, the operator loads it to the
CNC machine.
Machine Setup
Before the operator runs the CNC program, they must prepare the
CNC machine for operation. These preparations include affixing
the workpiece directly into the machine, onto machinery
spindles, or into machine vises or similar workholding devices,
and attaching the required tooling, such as drill bits and end
mills, to the proper machine components.
Once the machine is fully set up, the operator can run the CNC
program.
Machining Operation Execution
The CNC program acts as instructions for the CNC machine; it
submits machine commands dictating the tooling’s actions and
movements to the machine’s integrated computer, which operates
and manipulates the machine tooling. Initiating the program
prompts the CNC machine to begin the CNC machining process, and
the program guides the machine throughout the process as it
executes the necessary machine operations to produce a custom-
designed part or product.
CNC machining processes can be performed in-house—if the
company invests in obtaining and maintaining their own CNC
equipment—or out-sourced to dedicated CNC machining service
providers.
Types of CNC Machining Operations
CNC machining is a manufacturing process suitable for a wide
variety of industries, including automotive, aerospace,
construction, and agriculture, and able to produce a range of
products, such as automobile frames, surgical equipment,
airplane engines, and hand and garden tools. The process
encompasses several different computer-controlled machining
operations—including mechanical, chemical, electrical, and
thermal processes—which remove the necessary material from the
workpiece to produce a custom-designed part or product. While
chemical, electrical, and thermal machining processes are
covered in a later section, this section explores some of the
most common mechanical CNC machining operations including:
Drilling
Milling
Turning
CNC Drilling
CNC Milling
Milling is a machining process which employs rotating multi-
point cutting tools to remove material from the workpiece. In
CNC milling, the CNC machine typically feeds the workpiece to
the cutting tool in the same direction as the cutting tool’s
rotation, whereas in manual milling the machine feeds the
workpiece in the opposite direction to the cutting tool’s
rotation. Operational capabilities of the milling process
include face milling—cutting shallow, flat surfaces and flat-
bottomed cavities into the workpiece—and peripheral milling—
cutting deep cavities, such as slots and threads, into the
workpiece.
CNC Machining Equipment and Components
As indicated above, there is a wide range of machining
operations available. Depending on the machining operation
being performed, the CNC machining process employs a variety of
software applications, machines, and machine tools to produce
the desired shape or design.
Types of CNC Machining Support Software
The CNC machining process employs software applications to
ensure the optimization, precision, and accuracy of the
custom-designed part or product. Software applications used
include:
CAD
CAM
CAE
Course Contents
Basic Math & Trigonometry
Tolerances
Safety & First Aid
Fundamentals of CAD
Conventional Machine Shop Operations
CNC Machine Shop Operations
Manual Programming
CNC Software Programming (CAM)
24/7 Whatsapp/Line Support
Tel: +92 303 5530 865 & +92 321 9606 785
Contact: (Ufone=331) . 5 1 . 4 5 6 o 1
Web: www.coursepk.com || www.ipatsedu.com
Email: [email protected]
03035530865, 03219606785
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