Tutorials

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 Jointโ€”a key component in mechanical power transmission systems. ๐Ÿ”ง What Youโ€™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 ๐Ÿ› ๏ธ 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. โš™๏ธ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design

3 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. ๐Ÿš€ What Youโ€™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 โš™๏ธ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

2 1 Intermediate
In this detailed SolidWorks tutorial, you'll learn how to design, assemble, and animate a classic radial engine step by step. Perfect for beginners and mechanical design enthusiasts alike, this guide will walk you through the entire process using SolidWorks' powerful features. Weโ€™ll begin by creating every individual part of the radial engine โ€” from the complex crankcase to the pistons, connecting rods, and other essential components. As you model these parts, you'll become familiar with key SolidWorks tools and best practices for precision mechanical design. Once all components are ready, we'll move into the assembly stage. You'll discover how to use mates to position each part accurately and simulate realistic movement within the engine. This phase will show you how to bring multiple parts together into a fully functioning mechanical assembly. Finally, weโ€™ll explore SolidWorksโ€™ animation capabilities. Youโ€™ll learn how to create a motion study to simulate the engineโ€™s operation and visualize the synchronized movement of the pistons and crankshaft โ€” a great way to understand the internal mechanics of a radial engine. By the end of this tutorial, youโ€™ll have a fully modeled, properly assembled, and smoothly animated radial engine. More importantly, youโ€™ll gain solid experience with SolidWorks tools and a deeper appreciation for mechanical design principles.

2 0 Intermediate
I have prepared a training session on nonlinear bending analysis of sheet metal parts in SolidWorks. In this training, you will be able to easily examine the stress concentration areas of the parts. Based on the analysis results, you will be able to evaluate material piling and tearing. You will also be able to obtain deformation data and prepare detailed reports.

1 0 Intermediate
saya telah mendesain Learn Step by Step to Make Servo bus Serial RS485 24V 120kg dengan menggunakan softwar fusion 360, kegunaan nya untuk berbagai macam kebutuhan seperti contohnya teknologi robotic yang dapat digunakan untuk penggerak lengan robotic.

1 1 Intermediate
Welcome to FarmMach Pro! ๐ŸŽ๏ธ๐ŸŒพ Welcome to FarmMach Pro! ๐Ÿšœ ๐Ÿ‘‰ Subscribe Here: https://www.youtube.com/@farmmachpro ๐Ÿ‘‰ Rube Goldberg Machine : https://www.youtube.com/shorts/tJf9RNZf5pQ

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. ๐Ÿ” What youโ€™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 ๐Ÿ“Œ Software Used: Siemens NX / NX Unigraphics ๐Ÿ“Œ Difficulty Level: Beginner to Intermediate ๐Ÿ“Œ Suitable for: Mechanical Engineers, CAD Designers, Automotive Design Students

1 1 Intermediate
How to make a measure equal to the other by using equations.

1 0 Intermediate
Sheet Metal Design and Press Brake Application in SolidWorks โ€” Training Content Module 1: Introduction to Sheet Metal Design Objectives: Understand the fundamentals of sheet metal parts. Learn about bend allowances, K-factor, and design constraints. Familiarize with sheet metal design standards for manufacturing. Topics Covered: What is Sheet Metal Design? Common Manufacturing Methods (Laser Cutting, Press Brake Bending) Overview of Material Properties Design Guidelines for Sheet Metal Module 2: SolidWorks Sheet Metal Tools Overview Objectives: Explore SolidWorks sheet metal feature set. Understand the difference between solid and sheet metal modeling. Topics Covered: Sheet Metal Toolbar Sheet Metal Parameters: Thickness, Bend Radius, K-Factor Base Flange/Tab, Edge Flange, Hem, Jog, Sketched Bend Flatten and Unflatten Features Exercise: Open a new part. Enable the Sheet Metal tab. Use the Base Flange/Tab feature to create a 2mm thick sheet base. Add Edge Flange to create a simple box shape. Module 3: Creating a Sheet Metal Part Objectives: Create a real-world sheet metal component from scratch. Understand best practices for designing for bending. Step-by-Step: Start with Base Flange/Tab to define the main shape (e.g., rectangular plate). Add Edge Flanges to form sides (adjust angle and length). Add Reliefs for bends (Tear, Obround, or Rectangular). Use Sketched Bend to simulate press brake bends manually. Apply Corner Treatments (Corner Relief, Corner Trim). Check Flat Pattern for laser cutting and press brake compatibility. Module 4: Understanding Bend Calculations Objectives: Learn how SolidWorks calculates bend allowances. Apply correct K-Factor for accurate flat pattern dimensions. Topics Covered: Bend Allowance vs. Bend Deduction K-Factor Explanation (Typical values: 0.3 to 0.5) How to set custom bend tables in SolidWorks Controlling bend direction and bend radius Exercise: Create a U-shaped bracket. Calculate the flat length manually and compare with SolidWorks flat pattern. Modify the K-factor and observe changes. Module 5: Exporting for Manufacturing Objectives: Prepare a design for laser cutting and bending. Generate flat patterns and technical drawings. Topics Covered: Creating 2D Flat Pattern View in Drawings Adding Bend Notes and Bend Lines DXF/DWG Export for Laser Cutting Assigning Bend Directions (Up/Down) Exercise: Generate a drawing of your sheet metal part. Add a Flat Pattern view. Ann

1 0 Intermediate
๐Ÿ“ฆ **SolidWorks โ€“ Bounding Box Command Tutorial ๐ŸŽฏ **Purpose of the Bounding Box The **Bounding Box** is used to automatically generate a **virtual box** that represents the smallest rectangular box that can fully enclose a part or body. It's useful for: * ๐Ÿ“ Estimating raw material size * ๐Ÿ“ฆ Packaging design * ๐Ÿ“Š BOM automation (length, width, height) * ๐Ÿงพ CNC programming / nesting ๐Ÿ”ง Where to Find the Bounding Box Command ๐Ÿ”น **SolidWorks Version**: Available in SolidWorks 2018 and later ๐Ÿ”น **Applicable To**: * Weldment parts (structural members) * Sheet metal parts * Bodies (in multibody parts) ๐Ÿ“ **Location:** * **Insert โžœ Reference Geometry โžœ Bounding Box** * Or, Right-click the **Cut List Item** or **Solid Body Folder** in FeatureManager Tree โžœ *Create Bounding Box* ๐Ÿงฐ **How to Use the Bounding Box Command โœ… Steps: 1. ๐Ÿ–ฑ๏ธ Right-click the **Cut List Item** or the **Solid Body Folder** (e.g., under a weldment or sheet metal part). 2. โž• Click **Create Bounding Box**. 3. ๐Ÿ“ SolidWorks calculates and displays the smallest 3D box around the selected body. 4. ๐Ÿงพ The box dimensions appear in the **Cut List Properties** automatically as: * `Bounding Box Length` * `Bounding Box Width` * `Bounding Box Thickness` (or Height) ๐Ÿ“ *Tip:* You can show these values in a drawing BOM using cut list properties. ๐Ÿ“Œ **Bounding Box Options | Option | Description | | ------------------------ | ------------------------------------------------------------------- | | ๐Ÿ”ฒ **Best Fit** | Default. Creates the smallest possible box, optimized to the shape. | | โ†•๏ธ **Custom Plane** | You can define a specific orientation or plane for the box. | | โœ๏ธ **Manual Adjustment** | Not possible โ€“ the box is always auto-calculated by geometry. | ๐Ÿ“ **Using Bounding Box in Drawings 1. Create a **drawing** from the part. 2. Insert a **Cut List Table** (for weldments or sheet metal). 3. Add columns for: * `Bounding Box Length` * `Bounding Box Width` * `Bounding Box Thickness` 4. ๐Ÿงพ These will auto-populate from the bounding box data. ๐Ÿงช **Example

1 0 Intermediate
ABO EISHA

1 0 Intermediate
I have prepared a sample training on the use of circular (CIRCLE) movements in the Fanuc industrial robot programming software. Friends who are having trouble or difficulties with this code can watch and easily understand the logic behind CIRCLE programming. for teachpendant

1 0 Intermediate
Welcome to VR DESIGNER! In this video, weโ€™ll walk you through the complete 3D modeling process of a Turbocharger using Siemens NX (Unigraphics) CAD software. Whether you're a mechanical engineering student, CAD enthusiast, or design professional, this tutorial will help you understand each stage โ€” from sketching to final assembly. ๐Ÿ”ฅ Learn how to: Create individual turbocharger components Use advanced surface and solid modeling techniques Assemble parts with precision Apply constraints and relations Visualize and render the final model This project will enhance your skills in parametric design, feature-based modeling, and real-world assembly practices. โš™๏ธ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

0 0 Intermediate
The 5S tool is a ๐Ÿ’ก powerful and practical method for organizing your workspace and boosting productivity. Itโ€™s built on five Japanese principles: Sort ๐Ÿ”ด, Set in Order ๐Ÿ”ต, Shine ๐ŸŸก, Standardize ๐ŸŸข, and Sustain ๐ŸŸฃ. Whether you're working in a CAD environment or on the shop floor, 5S helps you remove clutter ๐Ÿงน, arrange tools ๐Ÿงฐ, keep things clean ๐Ÿงผ, create clear standards ๐Ÿ“‹, and build lasting habits ๐Ÿ”. With 5S, you'll work smarter, faster, and saferโ€”making every project a success! ๐Ÿš€๐Ÿ‘ทโ€โ™‚๏ธ #5S #GrabCAD #EngineeringTips #LeanTools #OrganizeToWin #ProductivityBoost

0 0 Intermediate
Gear Pump