
Enroll in CATIA V5 basic to advance in plastics, an online course preparing you for automotive jobs with classes and 2 to 3 months, 4 months, or 180 days batches.
Master CATIA V5 basics to advance plastics design for automotive parts, following OEM rules and working on real light parts, plastics, metals, and lighting trims to gain a one-year experience.
This course guides freshers to become automotive design engineers by choosing one software, selecting a plastics domain, and mastering part modeling, parent-child relationships, and relevant design processes for job readiness.
Master CATIA V5 basics to advanced in plastics through automotive design, part modelling, sketch rules, boolean operations, reverse engineering, surfaces, drawings, and engineering features.
Learn CATIA V5 basics to advanced plastics: sketching with constraints, part design, boolean operations, reverse engineering, surfacing, plastic workflow, draft analysis, engineering features, and assembly processes.
Learn how to perform boolean operations in CATIA V5 for plastics part design, using sketches, pads, holes, and material removal within the main body workflow.
Explore reverse engineering in CATIA V5 to create a parametric model from a part with no history, using isolation of bodies, plane selection, and stepwise operations.
Explore reverse engineering in CATIA V5, building profiles, sketches, and shell operations to ensure correct thickness, matching parts, and space analysis for accurate deflection.
Watch a live class discussion that demonstrates a CATIA V5 plastics workflow with a glasses model, detailing metal frame, plastic shell, and leather surfaces, plus draft analysis, thickness, and cutouts.
Analyze assemblies in CATIA V5 by performing gap analysis to detect interferences, set section planes in X, Y, or Z, and evaluate dimensions to ensure proper fit.
Explore basic plastic design concepts in catia v5, including surface modification, thickness and stresses, color-coded analysis, and aligning features with customer requirements for serviceability.
Perform space analysis in CATIA V5 to compare old and new parts, assess deviations, and visualize material addition or removal and hole alignment in an assembly.
Learn how to use CATIA V5 measuring tools to gauge distances between lines, edges, and surfaces, selecting picking points, infinite geometry, and intersections to obtain minimum and maximum dimensions.
In this Catia v5 session, learn to design a football from sketches and surfaces, using points, lines, planes, and intersections to build a precise 3D model.
Master the basics of sketching in Catia v5, creating 2d profiles with reference elements and projection planes, applying constraints and dimensions for 3d part modeling.
Master CATIA V5 basics in plastics with Exercise 1: position sketch and constraints, drawing profiles on a chosen plane using rectangles, circles, lines, and ellipse.
Practice checking sketches in CATIA V5 to ensure accuracy for plastics design, applying sketch validation, constraint checks, and clean geometry throughout the exercise.
Practice with CATIA V5 basic to advanced in plastics through a series of constrained sketches, circles and arcs, using planes, projections, tangents, concentric constraints, and holes to build precise features.
Explore exercise-4 in CATIA V5, creating a sketch profile with a center axis, a 30-degree line, and a 16 mm offset on one side, noting symmetry is not always used.
Continue the previous exercise by constraining circles along lines, fixing center points, setting radii and diameters, applying offsets and symmetry, and preparing for 3D modeling and boolean operations.
Explore Catia v5 basics by configuring essential settings, license options, and visualization preferences in the part workbench, including non-hybrid design and drafting fundamentals.
CATIA v5 part modeling by applying basic sketches and projection points, and using fundamental features such as dresser, pocket, grooves, and material removal to create 3d geometry.
Explore how CATIA V5 handles volumes through positive and negative polarity to add or remove material, and see how assemble operations affect bodies.
Master trim and multisection in CATIA V5 by building sketches, applying unions, shells, and multisection operations, using planes, constraints, and concentric circles.
Master creating and rotating a sketch with the revolve command in CATIA V5, including axis selection, exact distances, and a 270-degree rotation, with notes on variable thickness and molding flow.
learn to perform transformations in CATIA V5, using sketches, planes, and assemblies, apply draft and concentric constraints, and manage dimensions and features for part design.
Develop a multi-sketch slot in catia v5 by projecting three sketches on different planes, aligning points, and applying shell and multi-section features, with discussion of hybrid and on hybrid design.
This lecture demonstrates creating a CATIA V5 multi-section part from sketching profiles and planes to assembling sections, closing points, and drafting to avoid twists, with industry notes on usage.
Learn to create complex parts in CATIA V5 by building a single sketch, rotating features, applying 70-degree and 5-degree relationships, adding holes and cutouts, and using circular patterns.
Explore multi-section CAD workflows in CATIA V5, using mirroring on reference planes, analyzing surface tangents, and managing radii and history to build clean, connected aircraft components.
Learn to manage points on curves in CATIA V5, select and place points accurately, apply neutral offsets on both sides, and adjust gaps and angles to create precise plastic parts.
Learn to create a parametric model from an existing part using reverse engineering in CATIA V5, by setting references and reconstructing geometry through sketches and operations.
In exercise 1.2, students refine a CATIA V5 plastics model by sketching profiles, applying shell operations, checking thickness, and using space analysis to assess deflection and fit.
Master the reverse engineering workflow in catia v5 by turning a given part with no history into a parametric model, with sketching, shell operations, and sheet metal considerations.
Create a solid model and convert it into a parametric model, check sheet metal status and thickness, and use sketches, constraints, and intersections to build a recliner bracket.
Create an L-shape plate in CATIA V5 by building a base pad, sketching constraints, and removing material to match surfaces, with surface checks and fillet refinements.
Master CATIA V5 basics to advanced plastics design by practicing slot creation through plane sketches, circles, and profiles, aligning and refining surfaces for precise fits.
Explore how to compare two parts in CATIA V5, assess slot creation accuracy, visualize material added or removed, set accuracy levels, and review gap and flush analysis in assemblies.
Participate in exercise 7 doubts class to clarify actions, screen visibility issues, and troubleshooting steps through guided demonstrations and student questions.
Explore CATIA V5 basics for plastics through surface matching, shell and fillet applications, and offset and radius control to troubleshoot noisy areas and achieve accurate geometry.
Explore CATIA V5 modeling techniques for plastics, focusing on creating and editing shapes with circles and rectangles, performing operations, and ensuring accurate alignment and material removal.
Resolve live doubts on CATIA V5 workflows, including mating parts, reordering operations, and field settings to ensure correct shell features and assembly alignment.
Set up a coordinate system and position and assemble a part in CATIA V5. Verify the part's orientation and relations within the assembly.
Explore live CATIA V5 techniques for cushion frame design, including setting zero degree and 90 degree angles, making surfaces normal, and establishing solid surface references.
Create a metal bead in CATIA V5 plastics by using planes and a middle point, extract profiles, and apply remove and filter steps to shape the body and skirt.
Exercise 22 guides you through sketching and modeling in CATIA V5, focusing on selecting points and lines, creating normals, applying constraints, and defining ribs and thickness for robust surface features.
Join a doubts class to clarify CATIA V5 concepts, focusing on operations, intersections, and surface handling within plastics design. The session emphasizes applying terminology and methods discussed in the lecture.
Learn some tricks for remastering in complicated parts within Catia V5, advancing your plastics design skills from basic to advanced levels.
Learn practical tricks for remastering complicated parts in CATIA V5, using assembly insights, reference principles, and system-level workflows to advance plastics design.
Explore tricks for remastering in complicated parts, using surveys to define goals, select appropriate tools, and evaluate stepwise operations to guide project outcomes.
Explore practical tricks for remastering complicated parts using CATIA V5 in plastics, from basic to advanced techniques.
Learn core surfacing techniques in CATIA V5, including wireframe and surface creation, revolved and sweep operations, profile selection, and splitting, joining, and quality checks for plastic design.
Explore surfacing techniques in CATIA V5 for plastics by learning curvature-based extrapolation, edge selection, surface joining, splitting, trimming, and multi-section sweeps.
This first surfacing exercise guides you to sketch, build a 360-degree revolve and swept surfaces using boundary and multi-section techniques, and join surfaces to create a solid in Catia v5.
Build a generative ship design in CATIA v5 by generating sketches, sweeping profiles on planes, applying tangent constraints, and forming a closed, connected body.
Explore CATIA V5 basics to advanced plastics with exercise 2.2, applying sketches, surfaces, and thickness concepts to create closed bodies, hollow parts, and multi-directional sweeps.
In this Exercise 3, learn CATIA V5 workflows for plastics by sketching, sweeping, and modifying features, observing surfaces, setting drafts, and preparing boundaries for assembly and tooling.
Design an assembly hook and cavity in Catia v5, adjust tolerances and gaps, and add ribs and gantry features to ensure proper clearance and fit.
Build surfaces and sheet metal parts in CATIA V5, using take operation and simple sketches. Align the model with tangents, split surfaces, and checks to reproduce the target part geometry.
Master Catia v5 surfacing for plastics remastering using draft with direction, parallel curve, split and trim, extrude, join, and thick operations to build seamless parts without sketches.
Master CATIA V5 basics to advanced plastics by performing surface remastering and part modeling, including thick operations, fillets, trims, splits, and sweeps to create complex surfaces.
Learn to offset surfaces, create parallel curves, and apply extrude, trim, and isolate operations in CATIA V5 for plastics, with attention to centers and tangency.
Learn Catia v5 surfacing to recreate a door map pocket on a plastic panel, using multi-section, boundary control, and continuity to form engineering features and depressions.
Model a door panel in Catia V5 for plastics by creating and modifying surfaces, checking thickness, applying offsets, extrapolating, and verifying intersections and boundaries.
Learn the automotive plastic design process from concept sketches to 3d class a surfaces, covering exterior and interior trims, CAD tools like Alias and Catia, and production validation.
Explore the plastics product cycle from OEM specifications and class a surface for seating to rfq costing, tooling direction, and injection molding fundamentals in a live session.
Explore draft analysis for a cup holder in an injection mold, determine the main tooling direction, and design a, b, and c surfaces with the required grain and draft angles.
Explore side shield introduction in CATIA V5, covering seating geometry, cutouts and features, assembly placement, tooling lines, draft analysis, and surface modifications for moldable parts.
Modify side shield geometry in CATIA V5 plastics by defining surfaces, splitting with boundaries, trimming, and joining into a single clean model for the physical part.
Design a side shield body in CATIA V5, mastering surface creation, blending, and coupling while ensuring 2.5 mm thickness and draft analysis to prevent sink marks.
Learn Catia v5 surfaces modification by filling a customer surface with cutouts, including a belt cutout, using batch-based surface creation and boundary management.
Master tooling analysis in CATIA V5 for plastics, focusing on B-surface checks, thickness control, rib design, and draft analysis to ensure proper fill and part strength.
Explore tooling analysis and B-surface continuity in CATIA V5 plastics by using sweep and direct blend to connect surfaces, adjust directions, and ensure smooth intersections.
Review the side shield checklist for plastic parts, performing draft analysis, gap checks, and serviceability considerations, including snaps, screws, and mold flow to ensure fit, visibility, and manufacturability.
Refine the cupholder design in CATIA V5 by aligning the center of gravity and surface normals, enforce a five-degree tolerance, and select filters and fillers for a smooth, continuous flow.
Perform draft analysis in CATIA V5 for plastics, assess surface degrees for visible areas, and create a closing surface by refining the interface and periphery.
Draft a side shield in CATIA V5 for plastics, applying GD&T to establish datums and tolerances. Define holes, profile tolerances, and assembly references across views, sections, and datum planes.
My name is Manjeet Singh and professionally am automotive seating design engineer and I have 10+ year of experience of working with many OEMs such as Hyundai, Honda , JLR , Audi and mahindra & mahindra
In this course we are going will learn the Automotive interior design with engineering. CAD and engineering, and if we are doing both that is called design, there is no use of CAD if you are design something without using engineering
So this course is totally industry oriented and we will follow every rule of design, and we will work on 3D to 3D
Here am going to teach you from job prospectus, if you are looking for job in automotive then this course is for you Whether you are a fresher or working in small scale industries
In the course course I have also discussed the interview process and the discussion happened during interviews that ill really Help you to find a job ,
If someone have job constrain contact me I will help you
You some of having questions How to become a automotive design engineer
For that I have free course on Udemy, that will clear your all doubt about design
So in this course we will learn automotive interior and seating doming from very basic level to advance level
And then we will do some project that you can reflect on your resume for interview
And I added some recorded doubts session of my personal classes, that will clear your many doubt if you want you can skip that but I wont suggest
Every Sunday am taking free classes for Udemy student and you can join my free classes to clear your doubts