Mechanical Design With Fusion 360 : Design Of Jack

Posted on 07 Jul 00:22 | by huayting | 26 views
Mechanical Design With Fusion 360 : Design Of Jack
Mechanical Design With Fusion 360 : Design Of Jack
Last updated 11/2020
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 1.81 GB | Duration: 3h 0m

Learn how to design full detailed Vehicle jack along with design calculations and working principles in Fusion 360

What you'll learn
Learn How to design a mechanical device from concept to detail
Learn how to use basic engineering static principles to design machine
Learn Design workflows in Autodesk Fusion 360 to make complex sheet metal parts
Learn about the methodology to solve an engineering problem with Design and calculation
Get the Source Files to design your own project
Requirements
A basic understanding of Engineering mechanics
Some familiarity with Autodesk Fusion 360 to get started
Description
This is a course Centered around solving a Mechanical design problem of Designing a Vehicle Jack for a certain application for a vehicle. Its a unique course which not only covers the CAD modelling part of mechanical design but combines it with first principle explanations of the working mechanism and Force analysis .It is a "Over the Shoulder " training walk-through of solving a problem step by step and learning by doing. What is covered in the course?Basics of a Car jack - the parts, function The Problem definitionDeveloping a Concept sketch which is parametric to guide the CAD design Detailed CAD design of each part and construction of the assembly of the Jack .Design calculations to find the Forces in the system Understand the basics of Lead screw , thread specifications and the working principle of inclined plane applied to threads. Calculations for Torque in Operating the JackFinding the conditions for self locking of the Jack screwDesign calculations to evaluate strength and stability of the screw and pinsDiscussion on Failure modes and ways to improve design to counteract them It is a Fully practical course with all the course material available for download.The best value you can derive from this course is by designing the device with your own dimensions and inputs. All the Guiding steps are provided to arrive at a basic fully specified design. A Basic Working level knowledge of Autodesk Fusion 360 - the free mechanical design software will be necessary but most CAD modelling is step by step with explanation of each workflow .

Overview

Section 1: Introduction

Lecture 1 Introduction

Lecture 2 What is a Car jack?

Lecture 3 Basics of Lead screws

Lecture 4 Problem statement and Requirements

Section 2: Concept Design

Lecture 5 Concept Parametric Sketch

Lecture 6 Special feature - Interlocking teeth

Section 3: CAD Modelling

Lecture 7 Base Bracket

Lecture 8 Bottom Link 1 Design - Sketch

Lecture 9 Bottom Link 1 Modelling

Lecture 10 Bottom Link 2 Sketch

Lecture 11 Transferring Body from Top component to sub component

Lecture 12 Bottom Link 2 Modelling

Lecture 13 Top Link 1 Modelling

Lecture 14 Top Link 2 Design

Lecture 15 Making Holes on links

Lecture 16 Top Bracket design

Lecture 17 Pin Blocks modelling

Lecture 18 Lead screw Modelling

Lecture 19 Hook Modelling ( for rotating the lead screw)

Lecture 20 Need for Bearing

Lecture 21 Modelling Bearing housing

Lecture 22 Top and Bottom Pin Rivet modelling

Lecture 23 Modelling the Mid Threaded Pins

Lecture 24 Aligning the Mid Pins to Holes

Lecture 25 Importance of Section of Links

Section 4: Force Analysis of Links

Lecture 26 Static Force Analysis Of Top links

Lecture 27 Finding the tension in Lead screw Rod

Lecture 28 Simplified Formula relating Tension to Load

Section 5: Design of Lead Screw - Principles and calculations

Lecture 29 Specifications of the Lead screw Threads

Lecture 30 Working Principle - Inclined Plane

Lecture 31 Free Body Diagram of Lead Screw

Lecture 32 Force Analysis of Lead Screw

Lecture 33 Equations for torque and Self Locking conditions

Lecture 34 Specifying the Threads in SI units

Lecture 35 Calculating Raising Torque and Check Self Locking

Lecture 36 Tensile Stress in Lead Screw calculations

Section 6: Design Calculations and Failure Modes

Lecture 37 Evaluating the Pins for Shear

Lecture 38 Evaluating the Lead screw in Torsion

Lecture 39 Calculating Number of Revolutions required to lift

Lecture 40 Possible Failure Modes and Design Remedies

Section 7: Bonus Section

Lecture 41 Bonus : More resources for learning Mechanical engineering and design

Engineering students who want to learn about the mechanical design process,Enthusiasts who want to have exposure to the the methods of engineering problem solving


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