Tutorials

2 0 Intermediate
πŸš€ Welcome to our latest 3D modeling tutorial! In this video, we take you through the step-by-step process of designing a crankshaft for an inline 5-cylinder engine using Siemens NX software. Whether you're an engineering student, a CAD designer, or a mechanical enthusiast, this tutorial will help you understand the key concepts of crankshaft design and how to efficiently model it in Siemens NX. πŸ”Ή What You’ll Learn in This Video: βœ… Understanding the crankshaft design for an inline 5-cylinder engine βœ… Creating the main shaft and journals with accurate dimensions βœ… Designing the crank throws and balancing considerations βœ… Applying fillets, chamfers, and proper constraints βœ… Finalizing the model with high-quality rendering This tutorial covers essential NX CAD modeling techniques, including parametric modeling, sketching, and assembly constraints to ensure a realistic and functional crankshaft design. πŸ“Œ Who is this for? This video is ideal for: πŸ”§ Mechanical engineers and students πŸ”§ CAD designers and Siemens NX learners πŸ”§ Automotive and engine design enthusiasts

2 0 Intermediate
Welcome to our detailed tutorial on 3D modeling of the 8085 Microprocessor using Siemens NX software. In this video, we take you through the step-by-step process of creating an accurate 3D representation of the Intel 8085 microprocessor, covering essential tools, commands, and techniques in NX CAD. πŸ”Ή What You Will Learn: βœ… Understanding the 8085 microprocessor structure βœ… Creating the base body and chip layout βœ… Modeling pins and connections This tutorial is perfect for engineering students, CAD designers, and electronics enthusiasts who want to explore product modeling in Siemens NX. 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 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 1 Intermediate
In this video, we’ll create a detailed 3D model of an Electromagnetic Clutch using Siemens NX CAD software. This tutorial demonstrates the complete design process β€” from part modeling to assembly β€” with a focus on precision, realistic representation, and mechanical functionality. Whether you’re a mechanical design engineer, CAD enthusiast, or student, this video will help you understand the key design considerations and workflow for complex mechanical components in NX Siemens. 🎯 Topics Covered: Introduction to Electromagnetic Clutch components - Part modeling using NX features - Assembly and constraints setup - Design visualization and rendering tips πŸ“ Software Used: Siemens NX (Unigraphics NX) 🎯 Skill Level: Beginner to Intermediate πŸŽ“ Ideal For: Engineering Students | CAD Designers | Product Developers Don’t forget to Like πŸ‘ | Share πŸ”— | Subscribe πŸ”” for more NX CAD tutorials on automotive & mechanical components.

2 0 Intermediate
Example 6.2. Locate all the instantaneous centres of the slider crank mechanism as shown in Fig. 6.12. The lengths of crank OB and connecting rod AB are 100 mm and 400 mm respectively. If the crank rotates clockwise with an angular velocity of 10 rad/s, find: 1. Velocity of the slider A, 2. Angular velocity of the connecting rod AB

2 0 Beginner
A short video tutorial on how to import .stl file to BlenderCAD

2 0 Beginner
Hello viewers, As many of my viewers suggest me to publish tutorial of sketch. Here it is. Finally, this tutorial will helps those who is starting designing in Siemens NX9. This 5th part of Sketch video include following sub-commands of Sketch, and rest of sub-commands will be in next part. - Pattern Curve (No Shortcut) Have any queries? - comment on it. Like my videos if you are satisfied & for more videos, kindly Subscribe my channel. For any commercial discuss please visit www.rinkeshpatel.com Thank You.

2 0 Beginner
Design of Rod Bush, Piston and Link Pin, Plug Radial engine, Type of internal-combustion engine used mainly in small airplanes, in which the cylinders (ranging from five to as many as 28, depending on engine size) are mounted in a circle around the crankshaft, sometimes in banks of two or more.

2 0 Intermediate
Learn use of project curve and revolve in NX CAD.

2 0 Beginner
https://www.youtube.com/watch?v=nOaEhoDrtUs https://www.youtube.com/watch?v=AtPm5DbFLNA

2 0 Beginner
This course shows how to apply a texture to a material in Blender. To do this, a texture mix is ​​used.

2 0 Beginner
EARTH Movers Playlist https://www.youtube.com/playlist?list=PLsTi7aWegx-Aj1yoQz-qFYag1v85y96vv

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 1 Expert
Welcome to our latest CAD tutorial! In this video, we'll walk you through the complete process of modeling a car spoiler using Siemens NX β€” one of the industry-leading CAD/CAM/CAE tools. From creating the initial sketches to finalizing the aerodynamic surfaces, you'll learn the professional techniques used in automotive design. Whether you're a beginner or looking to sharpen your skills, this tutorial will give you clear insights into using NX Surface Modeling, Extrude, Sweep, Loft, and Edge Blend features to create a realistic and functional spoiler. 🎯 What You'll Learn: - Setting up reference planes and curves - Sketching aerodynamic profiles -- Creating solid bodies using sweeps and lofts - Surface modeling techniques for smooth flow - Finishing touches: blends, fillets, and aesthetics - Best practices for automotive part design

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.