3D Modeling & Design for Mechanics

January 31, 2025 7:26 pm Published by :

3D Modeling &
Design for Mechanics

      Online Course
      3D Modeling & Design for Mechanics

      The Certificate Program in 3D Modeling & Design for Mechanics is a focused, four-month course designed for aspiring mechanical designers who want to master the fundamentals of 3D modeling. This program equips students with the knowledge and skills needed to create complex mechanical parts and assemblies using industry-standard software like SolidWorks, Fusion 360, or AutoCAD. Students will explore essential techniques in 3D modeling, including parametric design, assembly, simulation, and material selection, which are vital for building accurate and functional mechanical designs.

      Graduates of this program are well-prepared for various roles within mechanical design and engineering fields, as 3D modeling and design skills are highly valued across automotive, aerospace, manufacturing, and consumer goods industries. With expertise in 3D CAD software and an understanding of design for manufacturing principles, students can pursue positions as 3D modelers, CAD technicians, product designers, and engineering assistants. This certificate provides a competitive edge for those seeking entry-level roles in design and mechanical engineering, as well as those looking to enhance their practical knowledge for personal projects or entrepreneurial ventures.

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      Course Fee

      ₹ 30,000/-

      Qualification

      Diploma/B.Tech

      Duration

      2 Months

      Course Type

      Certification

      Our Recognitions Speaks

      Creative Mentors was honored for its excellency in animation education industry

      WHAT WE TEACH

      Here’s a 4-month curriculum for a Certificate Program in 3D Modeling & Design for Mechanics. This program is structured into modules that cover essential skills in 3D modeling, assembly, and mechanical simulation, providing hands-on experience in using industry-standard tools for mechanical design.
      • Topics:
        • Introduction to 3D CAD Software (e.g., SolidWorks, Fusion 360, or AutoCAD)
        • Overview of 3D Modeling Concepts and the Role of CAD in Mechanical Design
        • Essential Tools and Operations: Extrude, Revolve, Loft, and Sweep
        • Creating and Modifying Basic Shapes
        • Sketching Techniques and Constraints in 3D Modeling
      • Assignment: Model basic mechanical parts (e.g., gears, brackets) using extrusion and revolve functions.
      •  
          • Topics:
            • Introduction to Parametric Modeling: Constraints, Dimensions, and Parameters
            • Advanced 3D Features: Fillets, Chamfers, Shell, and Draft
            • Modeling Complex Shapes and Curves for Mechanical Components
            • Using Equations, Configurations, and Relations for Dynamic Modeling
            • Creating and Managing Assemblies of Parts
          Assignment: Design a parametric model of a part with complex geometry (e.g., a connecting rod or lever arm) using advanced features and constraints.
          • Topics:
            • Introduction to Assembly Design: Mating, Part Interactions, and Movement Constraints
            • Understanding Assembly Constraints and Degrees of Freedom
            • Basics of Motion Analysis: Animating Mechanical Assemblies
            • Introduction to Finite Element Analysis (FEA): Structural Integrity, Stress, and Load Analysis
            • Running Basic Motion and Stress Simulations on Mechanical Assemblies
          Assignment: Create a multi-component assembly (e.g., a small gearbox or joint mechanism) and conduct a basic motion and stress analysis.
        • Topics:
          • Introduction to Design for Manufacturability (DFM) Principles
          • Material Selection for Mechanical Design: Metals, Polymers, and Composites
          • Preparing Models for 3D Printing: Exporting STL Files, Orientation, and Supports
          • Basics of Additive Manufacturing (3D Printing) for Rapid Prototyping
          • Optimizing CAD Models for Machining and Other Manufacturing Techniques
        Assignment: Design a mechanical part with manufacturability in mind, prepare it for 3D printing, and, if possible, produce a prototype.
        • Project Description:
          Each student will undertake a comprehensive design project, applying all skills acquired in the course to design a functional mechanical component or small assembly. This project should include:
          • A detailed 3D model with parametric design features
          • An assembled mechanism or multi-part model with motion constraints
          • Simulation tests for stress, motion, or load as applicable
          • Consideration of manufacturability with a 3D-printed prototype or manufacturing-ready files
        •  
      Upon completion, students will have a portfolio-ready project that demonstrates their skills in 3D modeling, assembly, and design for manufacturability—key competencies for careers in mechanical design and engineering.

      TO START AN EXCITING CREATIVE CAREER

      OUR FACULTY

      Amanda Lee

      Senior project

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      Adam Cheise

      Head of Platform

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      FROM THE STUDENTS

      Direct testimonials from the students who completed the course

      ADMISSION PROCESS

      Creative Mentors Animation, Gaming and VFX School is looking for dedicated students who want to become tomorrow’s art and design leaders. We seek innovators, storytellers, collaborators, problem solvers, dreamers, leaders—all are welcome here.

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