Diseña MALLAS FLEXIBLES para impresión 3D paso a paso | Fusion 360
📘 Complete Fusion 360 Course — Learn to design from scratch and master a complete workflow for 3D printing: 👉 https://knincustom.com 📦 3D Models and Files on Printables — Find my projects and free downloads: 👉 https://www.printables.com/@KNIN_Cust... 📺 Related Videos: OrcaSlicer Settings - • Orca Slicer: TODOS los ajustes explicados ... 3D Printer Calibration - • IMPRIME BIEN y un 30% MÁS RÁPIDO con ESTA ... 3D Print Without Supports - • Cómo Imprimir en 3D Sin Soportes (¡Incluso... Design Hexagonal Patterns - • Diseña el patrón Honeycomb en Fusion 360 |... Can Flexible Meshes Be 3D Printed? Yes, and in this video, I'll show you how to design them yourself from scratch in Fusion 360, understanding exactly how they work and which type of mesh to choose for your project. I've been experimenting with different types of 3D printed meshes, looking for a design that is flexible, strong, and reliable to print. After several tests, I've settled on two that work especially well: A square mesh, very simple and customizable. A hexagonal mesh, like NASA's, more advanced and with spectacular flexibility. In this video, I explain how each one behaves, its pros and cons, and show you how to design them step by step in Fusion 360, parametrically and ready to print without errors. The goal is that, by the end of the video, you'll know how to design your own flexible meshes, understand how they bend, what limitations they have, and how to optimize them for your own parts. What you'll learn in this video: How to design flexible meshes for 3D printing from scratch in Fusion 360 Structural differences between square and hexagonal (NASA) meshes How to prevent meshes from jamming when bent What influences flexibility and direction of movement How to apply decorative patterns like scales or textures Recommended parameters for successful printing Application ideas: coasters, cases, decorative surfaces, and more I'll also show you actual printed results, how each mesh type behaves when bent, and explain which design is best suited to your intended use: If you're looking for a decorative or customizable mesh, the square mesh will be a better fit. If you need a highly flexible and functional mesh, the NASA mesh will be your best option. There's hardly any practical information online about designing flexible meshes for 3D printing, and even less from a parametric modeling perspective using Fusion 360. Here, I'll not only show you the finished product, but also how to create your own, understand geometry, symmetries, and how they affect flexibility. Chapters: 00:00 Introduction 00:31 Today you will learn... 01:25 The 2 types of mesh 02:14 3 main characteristics 02:48 1 FLEXIBILITY 04:42 2 RELIABILITY 05:33 3 DECORATION 06:53 Step-by-step design 07:12 Square mesh design 13:19 Dragon scale design 19:40 NASA mesh design 27:29 Conclusion Iker Libano l KNIN Custom

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