Tutorials

CRANKSHAFT ( INLINE 5 CYLINDER ENGINE ) || 3D MODELING || ENGINE PART || NX SIEMENS

1 0 Intermediate
🚀 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. 🔹 What You’ll Learn in This Video: ✅ Understanding the crankshaft design for an inline 5-cylinder engine ✅ Creating the main shaft and journals with accurate dimensions ✅ Designing the crank throws and balancing considerations ✅ Applying fillets, chamfers, and proper constraints ✅ 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. 📌 Who is this for? This video is ideal for: 🔧 Mechanical engineers and students 🔧 CAD designers and Siemens NX learners 🔧 Automotive and engine design enthusiasts

MICROPROCESSOR 8085 || ELECTRICAL EQUIPMENTS || 3D MODEL || NX SIEMENS

1 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. 🔹 What You Will Learn: ✅ Understanding the 8085 microprocessor structure ✅ Creating the base body and chip layout ✅ 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. ⚙️ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.

TYRE || WHEEL || 3D MODELING || NX SEIMENS

0 0 Intermediate
Welcome to our in-depth tutorial on Tyre 3D Modeling in Siemens NX! 🚗💨 Whether you're an engineering student, a CAD professional, or a designer looking to enhance your skills, this video will walk you through the entire process of designing a 3D tyre using Siemens NX software. 🔹 What You’ll Learn: ✅ Step-by-step guide to creating a realistic tyre model ✅ How to use sketching, revolve, and extrude tools effectively ✅ Adding intricate tread patterns for a professional finish ✅ Applying material properties and realistic rendering ✅ Useful tips & tricks to improve your 3D modeling workflow

TORSION BAR || SUSPENSION || 3D MODELING || NX SIEMENS

0 0 Intermediate
Welcome to this in-depth tutorial on 3D modeling a Torsion Bar in Siemens NX! In this video, we will guide you through the step-by-step process of creating a detailed and precise torsion bar using Siemens NX CAD software. Whether you're a beginner or an experienced designer, this tutorial will help you enhance your skills in parametric modeling, sketching, and solid modeling. 📌 What You’ll Learn: ✅ Introduction to Torsion Bar Design ✅ Sketching Techniques for accurate geometry ✅ Extrusion & Revolve features in Siemens NX ✅ Applying Fillets & Chamfers for realistic modeling ✅ Using Assembly Constraints (if applicable)

WISHBONE || SUSPENSION || 3D MODELING || NX SIEMENS

0 0 Intermediate
Welcome to our in-depth Siemens NX tutorial on Wishbone 3D modeling! In this video, we'll guide you through the process of designing a Wishbone suspension component using Siemens NX software. Whether you're a mechanical design engineer, CAD enthusiast, or student, this tutorial will help you understand the workflow, constraints, and best practices for creating an accurate wishbone model. 📌 Topics Covered: ✅ Introduction to Wishbone Suspension ✅ Sketching the Basic Geometry ✅ Applying Constraints & Dimensions ✅ Extrusions, Revolves & Boolean Operations ✅ Adding Fillets & Chamfers ✅ Assembly Considerations ⚙️ Software Used: Siemens NX - A powerful and versatile CAD/CAM/CAE software for 3D modeling and engineering design.