Tutorials

6 2 Intermediate
Welcome to VR DESIGNER! In this detailed CAD modeling tutorial, we guide you through the complete 3D design of a Turbine Turbocharger using Siemens NX (Unigraphics NX). From sketching the core components to assembling the full turbocharger model, this video is perfect for mechanical engineers, CAD designers, and engineering students aiming to sharpen their NX skills. πŸš€ What You’ll Learn: Introduction to the Turbine Turbocharger design Part-by-part modeling workflow in NX Siemens Techniques in sketching, extruding, revolving, and patterning Assembly of impeller, turbine housing, compressor, shaft, and blades Tips for clean parametric modeling βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

6 1 Intermediate
Welcome to this comprehensive tutorial on 3D modeling a Universal Joint using Siemens NX software. Whether you're a mechanical engineering student, CAD designer, or enthusiast, this video walks you through every step of designing a realistic Universal Jointβ€”a key component in mechanical power transmission systems. πŸ”§ What You’ll Learn in This Video: - Basics of part modeling in NX Siemens - Creating sketches and applying constraints - Extruding and revolving features for mechanical components - Assembling parts of the universal joint - Real-time modeling tips and best practices πŸ› οΈ About the Universal Joint: A universal joint, also known as a U-joint, is a joint or coupling that allows shafts to rotate freely when they are not in a straight line. Commonly used in vehicle drive shafts and industrial machinery, it enables torque transmission at varying angles. βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design

5 1 Intermediate
Welcome to VR DESIGNER! In this detailed tutorial, we will walk you through the complete process of modeling a stylish alloy wheel rim using NX Siemens CAD software. Whether you are a beginner or an advanced user, this video will help you learn key surface and solid modeling techniques used in automotive component design. πŸ”§ In This Video: - Sketching the Rim Base Profile - Revolve and Extrude Features - Cutouts for Lightweight Design - Circular Patterns for Spokes - Fillet & Chamfer for Finishing 🌟 Designed to give you a hands-on experience in 3D modeling, this tutorial is perfect for mechanical engineers, automotive designers, and CAD enthusiasts. βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

3 0 Intermediate
In this video, we’ll create a detailed 3D model of a Flywheel using Siemens NX β€” covering every essential step from sketching and dimensioning to part modeling and final visualization. This tutorial is perfect for mechanical engineers, CAD designers, and students who want to enhance their skills in NX Siemens 3D modeling. You’ll learn how to: - Design a Flywheel with accurate proportions - Apply constraints and features effectively - Use extrude, revolve, fillet, and hole tools Visualize and render the model for presentations or manufacturing documentation Watch till the end to master flywheel modeling in Siemens NX and improve your mechanical design portfolio. πŸ“ Software Used: Siemens NX (Unigraphics NX) 🎯 Skill Level: Beginner to Intermediate πŸŽ“ Ideal For: Engineering Students | CAD Designers | Product Developers

2 0 Intermediate
Welcome to VR DESIGNER! In this detailed CAD modeling tutorial, we walk you through the complete 3D design process of an Exhaust Manifold for an Inline 4-cylinder engine using Siemens NX (Unigraphics NX) software. πŸ“Œ Whether you're a mechanical engineering student, a design engineer, or a CAD enthusiast, this step-by-step guide is perfect to understand: βœ… The design logic behind exhaust manifolds βœ… Parametric modeling in NX βœ… Accurate sketching and 3D features like sweep, loft, extrude, mirror, and Boolean operations

2 0 Intermediate
Explore this detailed 3D model of a Suspension System created using Siemens NX, a powerful CAD design tool. This video showcases the design, assembly, and animation of the suspension components, including springs, dampers, wishbones, and joints. πŸ”§ Highlights of the video: 3D modeling and assembly of the suspension system in NX Step-by-step view of the suspension design Visualized motion simulation for real-world functionality Application of realistic materials and animations This model demonstrates the mechanical design precision possible with Siemens NX for automotive and mechanical engineering projects. Perfect for design engineers, CAD enthusiasts, and students exploring suspension system mechanics! πŸ”” Don't forget to like, share, and subscribe for more CAD design videos!

2 0 Intermediate
Welcome to our step-by-step tutorial on 3D modeling a car fender using Siemens NX! In this video, you'll learn how to create a precise and professional automotive fender model from scratch using advanced surfacing tools and parametric design techniques in NX CAD software. Whether you're a mechanical design student, an automotive engineer, or just passionate about CAD, this tutorial will help you understand real-world design practices used in the automotive industry. πŸ”§ What you'll learn in this video: - Setting up your design environment in Siemens NX - Sketching the base profile of the fender - Using extrude, revolve, and sweep commands - Surface modeling techniques for complex curves - Adding design details like mounting points and edge flanges - Finalizing the model with proper constraints and dimensions - Tips for preparing the part for simulation or manufacturing βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

2 0 Intermediate
Welcome to this detailed tutorial on creating a Bevel Gear using Siemens NX! In this video, we'll guide you through the entire process of 3D modeling a bevel gear, ensuring you learn essential design techniques and tips for precision engineering. πŸ“Œ What You'll Learn: 1️⃣ Setting up your Siemens NX workspace for gear modeling. 2️⃣ Using sketch tools to define the gear profile. 3️⃣ Applying extrude, pattern and unit commands. 4️⃣ Creating the teeth with advanced features like patterning. 5️⃣ Finalizing the gear model with realistic rendering. Whether you're a beginner or a professional, this tutorial will boost your skills in parametric modeling and mechanical design. Watch till the end for expert tips to enhance your designs!

2 0 Intermediate
In this video, we demonstrate the complete 3D modeling process of a Tripodial Ball Bearing, a crucial component used in automotive drive shafts and CV joints. Using Siemens NX (Unigraphics) CAD software, we take you step-by-step through the precision modeling of this complex part, focusing on design accuracy, realistic geometry, and CAD best practices. What You’ll Learn in This Video: Introduction to Tripodial Ball Bearing and its automotive application Sketching and parametric design techniques in Siemens NX 3D feature creation including extrude, revolve, and boolean operations Assembly design considerations for bearing movement and fit Visualization and rendering tips for presenting your final model Whether you’re a mechanical design engineer, automotive enthusiast, or CAD student, this tutorial will help you understand not just how to model, but also why certain design decisions matter in real-world engineering. βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

1 0 Intermediate
In this detailed tutorial, learn how to create a precise 3D model of a Differential Helical Gear using Siemens NX software. This video walks you through every step, from setting up the gear parameters to creating the helical gear profile and finalizing the differential assembly. Whether you're a beginner or a professional in CAD design, this guide will enhance your skills and understanding of advanced gear modeling techniques. Topics Covered in This Video: - Introduction to helical and differential gears. - Setting up the Siemens NX environment. - Designing the helical gear tooth profile. - Applying the helical twist using advanced tools. - Assembling the differential mechanism. - Tips for ensuring accuracy in your design. - Final rendering and export settings. Who is This Video For? - Mechanical design engineers. - CAD modeling enthusiasts. - Engineering students learning Siemens NX. - Professionals working on gear systems. Why Watch This Tutorial? Differential helical gears are critical in automotive and industrial applications. Mastering their design ensures high performance and precision in real-world systems. By the end of this video, you'll have a clear understanding of how to model these gears effectively using Siemens NX.

1 0 Beginner
πŸš€ Master the Sketch Module in NX Siemens! πŸš€ Welcome to this detailed tutorial on the Sketch Module in Siemens NX! In this video, we will walk you through the essential sketching tools and commands, helping you create precise 2D sketches that form the foundation of 3D models. Whether you're a beginner or looking to sharpen your skills, this guide covers everything you need to know! πŸ”Ή Topics Covered in This Tutorial: βœ… Introduction to the Sketch Module βœ… Creating and Editing Sketches βœ… Lines, Circles, Rectangles, and Arcs βœ… Trimming, Extending, and Mirroring βœ… Pattern & Offset Commands βœ… Using Reference Geometry πŸ’‘ Why Watch This Tutorial? βœ” Learn NX Siemens step by step βœ” Improve your CAD design efficiency βœ” Master essential sketching techniques βš™οΈ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

1 0 Intermediate
Welcome to our tutorials! In this video, we demonstrate the complete 3D modeling process of a car air filter using Siemens NX (Unigraphics NX) software. Whether you're a student, design engineer, or CAD enthusiast, this tutorial will guide you through step-by-step techniques for designing a realistic and functional automotive air filter in a professional CAD environment. πŸ” What you’ll learn: Basic sketching and extrusions Use of Boolean operations and pattern features Parametric modeling for part design Surface modeling essentials (if used) Assembly design tips (if applicable) Industry-level design techniques used in automotive part modeling πŸ“Œ Software Used: Siemens NX / NX Unigraphics πŸ“Œ Difficulty Level: Beginner to Intermediate πŸ“Œ Suitable for: Mechanical Engineers, CAD Designers, Automotive Design Students

1 0 Intermediate
In this video, we create a 3D CAD model of an Oil Filter using Siemens NX (Unigraphics). πŸš—βš™οΈ This tutorial covers sketching, extrude, revolve, fillet, shell, and assembly features to design a realistic oil filter part model. If you are a mechanical engineer, CAD designer, or student, this video will help you improve your NX CAD modeling skills. Perfect for automobile component design projects, mechanical CAD practice, and product design tutorials. πŸ‘‰ Topics Covered in This Video: - Introduction to Oil Filter Design - Step-by-Step Sketching & Constraints - Revolve & Extrude Features for Cylindrical Parts - Shelling & Filleting for Realistic Shape - Detailing & Assembly in NX Siemens - Final Rendering & Visualization

1 0 Intermediate
Learn how to create a Spur Gear using NX Siemens Software in this detailed, step-by-step tutorial. Whether you’re a beginner or an experienced CAD designer, this guide will help you master the essential techniques for modeling gears in NX. What You’ll Learn: βœ… Gear geometry basics βœ… Key design parameters: module, number of teeth, pressure angle βœ… Using NX’s advanced modeling tools βœ… Tips for precision and efficiency This video covers everything from setting up the workbench to generating an accurate 3D model of a spur gear ready for simulation or manufacturing. Perfect for mechanical engineers, CAD enthusiasts, and students in design fields!

1 0 Intermediate
Master 3D Modeling of Herringbone Gears in NX Siemens Software! πŸ› οΈ In this tutorial, we’ll take you step-by-step through the 3D modeling of a Herringbone Gear in NX Siemens software. Whether you're a beginner or a pro, this guide will help you enhance your CAD design skills and learn the best practices for creating precise and efficient gear models. πŸ“Œ What’s Covered: βœ… Basics of Herringbone Gear Design βœ… Detailed modeling process in NX Siemens βœ… Best practices for CAD modeling βœ… Tips for optimizing your design workflow