ITI Additive Manufacturing Technician 3D Printing Syllabus: Semester-wise Syllabus, Course Structure

Mrunmayai Bobade

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ITI Additive Manufacturing Technician 3D Printing syllabus is divided into two semesters for practical and theoretical trades for nearly 1,600 Notional Training Hours (NTH). Scroll down for a detailed syllabus for ITI Additive Manufacturing Technician (3D Printing), semester-wise subjects, course structure, etc.
ITI AMT (3D Printing) Syllabus

The ITI Additive Manufacturing Technician 3D Printing syllabus is designed to provide prospective students with the technical expertise, workshop calculation & science, and employability skills essential to launch their careers early. The first things a student studies include artificial respiratory recovery, utilisation of fire fire-fighting equipment, and environmental and safety awareness. They understand how to create 3D models using simple computer processes. This covers the process of producing a drawing sheet under SP-46:2003 as well as the making of geometrical figures with drawing tools.

Pupils begin producing multi-view sketches after learning the fundamentals of drafting vocabulary. They also study section views, auxiliary views, and projection strategies. Additionally included are isometric drawing, technical design and orthographic diagram representation, lettering, cooperation, metric development, and oblique and perspective mapping. Prospective students can download the ITI Additive Manufacturing Technician (3D Printing) syllabus PDF using the link provided in the following table to refer to the detailed topics and subjects covered in this trade:

"ITI Additive Manufacturing Technician 3D Printing" is one of the favoured vocational courses provided nationwide by the network of ITIs under the Craftsman Training Scheme (CTS). Furthermore, Workshop Calculation & Science and Trade Theory & Practical (Domain areas) impart students with professional skill sets and knowledge, while Employability Skills (Core area) provide them with the essential fundamental skills and facts as well as interpersonal skills. In this article, we will discuss a detailed ITI Additive Manufacturing Technician (3D Printing) syllabus, semester-wise subjects, course structure, trade learning outcomes, and more.

Semester-wise ITI Additive Manufacturing Technician 3D Printing Syllabus: Theory & Practical

There are two six-month semesters in the one-year training for this trade. During the course, candidates acquire both theoretical and practical skills to design and fabricate prototype/end-use products for Additive Manufacturing (AM) by implementing FFF as well as photo-polymerisation (SLA)/ PLA technologies. The ITI AMT (3D Printing) syllabus also aims to train graduates to create and analyse fixtures, evaluate different composite components, produce attractive models, and recommend optimisation procedures. The following is a discussion of the semester-wise ITI Additive Manufacturing Technician 3D Printing syllabus for both theoretical and practical trades.

First Semester Syllabus for ITI Additive Manufacturing Technician (3D Printing)

The table below outlines the 1st-semester ITI AMT (3D Printing) syllabus for both theory and practical trades:

ITI Additive Manufacturing Technician 3D Printing Syllabus

(Trade Theory Subjects)

ITI Additive Manufacturing Technician 3D Printing Syllabus

(Trade Practical Subjects)

  • Occupational Safety & Health
  • Soft Skills, Its importance and Job area after completion of training
  • Importance of housekeeping &
  • good shop floor practices
  • Importance of safety and general precautions followed in the industry/shop floor
  • Importance of trade training, List of tools & Machinery
  • Hazard identification and avoidance
  • First Aid Method and basic training
  • Use of Fire extinguishers
  • Demonstrate the functions
  • of 3D printing and Scanning
  • Basic computer
  • Introduction to 3D Printing and Scanning
  • Engineering Drawing
  • Perform Computer operation
  • Engineering Drawing
  • Construct regular polygons (up to 8 sides) on an equal base
  • First-angle and third-angle projection
  • Methods of obtaining orthographic view
  • Orthographic projection
  • Difference between Isometric drawing & Isometric projection
  • Construct the isometric view of Polygons and circular lamina
  • Draw an angle bi-sector and a line bi-sector
  • Draw isometric views of truncated cone and pyramid
  • Customisation of keyboard command
  • Introduction to 2D User Interface
  • Writing text on a dimension line and a leader
  • Create a new document
  • Draw 2D objects using: polyline, ray, polygon, line, etc.
  • Construct an isometric view of
  • machine blocks
  • 3D Modeling and Design Software
  • Difference between sweep and loft
  • Featured tools in Command Manager Feature Toolbar
  • Types of files, care and maintenance of files
  • Perform part-level basic cost estimation
  • Create a 3D transition figure
  • Make history free part-defeature
  • Create a hollow rectangular duct
  • Different manufacturing processes
  • Determination of tap drill size
  • Drilling processes
  • Types of plastics and their properties (warpage& shrinkage)
  • Understand 2D simplification
  • Create automatic reports
  • Manufacturing Technology
  • Mark off and drill through holes

Second Semester Syllabus for ITI Additive Manufacturing Technician (3D Printing)

The table below summarises the 2nd-semester ITI AMT (3D Printing) syllabus for both theory and practical trades:

ITI Additive Manufacturing Technician 3D Printing Syllabus

(Trade Theory Subjects)

ITI Additive Manufacturing Technician 3D Printing Syllabus

(Trade Practical Subjects)

  • Measuring Methods of Straightness
  • Application of Dial Test Indicator/ gauge
  • Principle of vernier scale and least count
  • Measure a tapered hole using balls and a depth gauge
  • Metrology
  • Measure distance/clearance using a dial test indicator
  • Limit gauges-classification and applications
  • Gear tooth Terminology
  • Production of interchangeable parts, geometrical tolerance
  • Prepare a report based on the inspection of any item built
  • Draw the diagram illustrating basic size deviations and tolerances
  • Difference between Additive and Subtractive Manufacturing
  • Continuous Liquid Interface Production (CLIP)
  • Foundation of Additive Manufacturing (AM)
  • Digital Light Processing (DLP)
  • Perform lapping of gauges (hand lapping only)
  • Lap flat surfaces using a lapping plate
  • Scrape cylindrical bore
  • Demonstrate various machines used in AM
  • Applications of Additive Manufacturing
  • Design a simple part for AM
  • Design and make a simple assembly/ sub-assemble model
  • Applications of Additive Manufacturing
  • Print composite parts with cloud-based slicing software
  • Design a simple part for AM
  • Design for Additive Manufacturing (DFAM)
  • Case studies for the selection of appropriate AM and suggestion of the optimisation process
  • Select the appropriate AM and suggest an optimisation process
  • Rectify possible assembly faults during assembly
  • Soldering Techniques
  • Rectify possible assembly faults during assembly
  • Soldering Techniques
  • Make aesthetically appealing organic shapes
  • Monitor the machine as per the routine checklist
  • Export 3D models to various CAD file formats
  • Monitor the machine as per the routine checklist
  • Quality Checks
  • Learn to see the internal view display layer
  • Finish the job with different post-processing techniques
  • Analyse and apply different processes of algorithms for slicing
  • Make aesthetically appealing organic shapes
  • Methods of editing scan data through reverse engineering

ITI Additive Manufacturing Technician (3D Printing) Course Structure

As discussed, the one-year ITI AMT (3D Printing) course equips students with the professional knowledge and employment skills they need to establish their career paths immediately following trade completion in multiple allied sectors. The table below summarises the allocation of Notional Training Hours (NTH) across major four-course elements for this duration:

ITI AMT (3D Printing) Course Element

Notional Training Hours (NTH)

Professional Skill (Trade Practical)

1,120

Workshop Calculation & Science

80

Professional Knowledge (Trade Theory)

240

Employability Skills

160

Grand Total

1,600

ITI Additive Manufacturing Technician 3D Printing Syllabus: Industrial Visit/ Project Work

Functional prototypes are the main emphasis of the project work for this trade, which includes the process of reverse engineering and printing utilising authentic industry materials such as simple gearboxes, biomedical elements, robotic gripper assemblies, small compressor assemblies with two distinct components, basic moulds, etc. with a minimum of two QC models evaluations.

ITI Additive Manufacturing Technician (3D Printing) Syllabus: Trade Learning Outcomes

The ITI AMT (3D Printing) evaluation procedure will follow the assessment criteria, and learning outcomes include all of the skills a student has acquired over the training period. The following are the primary learning objectives of the training program, which are based on the ITI Additive Manufacturing Technician (3D Printing) syllabus and allow pupils to:

  • Make recommendations for optimisation.
  • Analyse and interpret scan data.
  • Run CAD software on a 2D user interface.
  • The part should be suitable for the process of additive manufacturing.
  • Design several components fit for assembly, adhere to the compatibility concept and verify performance.
  • Create a basic fixture to meet functional needs.
  • Perform periodic checks on types of equipment used in the process of AM.
  • Use the technique algorithm (applications for slicing).
  • Utilise additional processing methods to complete the task.
  • Describe the various steps involved in the additive process and produce a basic example.
  • Describe the technology behind additive manufacturing (AM) and its new developments.
  • Produce orthographic representations with the title block employing the right line type and scale, providing acceptable measurement.
  • From orthographic views, create a circular projection and an isometric representation as well as vice versa.
  • Generate an end-use product or prototype.
  • Constructing aesthetically pleasing models with commercial appeal.
  • Create various geometrical shapes with sketching tools while taking safety measures.
  • Evaluate various materials and procedures.

We hope the above article has provided pupils with the required details for the ITI Additive Manufacturing Technician 3D Printing syllabus and subjects. Upon passing the training program, the Directorate General of Training (DGT) then offers them an internationally recognised National Trade Certificate (NTC).

For additional information related to the ITI AMT (3D Printing) course syllabus, stay tuned to CollegeDekho ! You can also fill out the Common Application Form (CAF) or call our toll-free helpline at 1800-572-9877 if you have any questions. To have our experts respond to your queries, you can also alternatively reach us via our QnA section .

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