Creating A Revolve – Learning Autodesk Inventor [Video] – {{l10n_strings.ADD_TO_A_COLLECTION}}

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I could ask my instructor to join this discussion, but as of now I would rather learn from other resources like this forum. Maybe it would give me an opportunity to understand how an Experienced Engineer like yourself would approach this issue. Walter has sent me a part file which is close to what I am trying to achieve. I will use his approach and let you know how it turns up. Inventor should have added Horizontal or Vertical or Perpendicular constraints to the lines for you.

I suspect there is a far easier, more robust solution than Circular Pattern to achieve your Design Intent. You are right. Walters approach does show one way to approach this design and gives me few inputs to get some measurements to try and modify the base sketch.

However as you said there must be another solution. That is what I am also trying to find out. Do you know of a better approach?? The 90 degree angles, missing constraints and manual dimensioning are Newbie mistakes or lack of experience.

My plan was to complete the design and ask my instructor to correct the mistakes. However if you could point me to additional resources to hone my Inventor skills, I would appreciate that.

Thank you for letting me know about the free Autodesk Inventor download. Unfortunately the computers in my school are a little outdated. I am not sure if it would support the latest version of Autodesk Inventor, but I will ask my Instructor to check. Hi Saru, actually Inventor can only do Revolve with sketches around a rotation axis in the sketch plane.

Perhaps Autodesk has similar thoughts. Time will show. Right now, the only workaround I know is circular patterning. Version a could be thickening a boundary patch of the sketch to a thin solid and patterning this. Strictly speaking, Inventor and earlier is not capable to Revolve or Sweep a solid body along a given path. In some cases, you can emulate it by using a 2D profile but in many cases, this emulation does not generate the correct solution.

We are aware of the deficiency and we are actively working on a solution. The particular case you mentioned is one of the cases that we are targeting to support. A quick update. I am planning to use those dimensions to create a fresh sketch geometry and revolve it to derive a functional part. I got the dimensions for the straight edges. Having difficulty with the curved edge since its not a circular curve. My guess is its Parabolic curve.

Since I am newbie and not too good in quadratic equations I would need some more time to figure it out. I will update you once I finish. Please bear with me. PS: I know that the curve need not be geometrically accurate to derive a functional part, but would still want to use a curve with a equation «Equation Curve» in Inventor , so I get a deeper understanding of how the shape is derived.

I was afraid you will ask me exactly these questions! Looking at the cut from a functional perspective, it does interact with the other part which it is driving. Practically speaking though, we can make it redundant and use it «for clearance» so that a tighter tolerance is not required. I have never produced a part before. I am not sure of the tolerances to use. In layman language i would say that ideally this part should have «tight tolerance» at this cut and maybe «looser» tolerances as far as other dimensions are concerned.

I was planning to consult my Instructor at a later stage. Should I work out the tolerances at the designing stage itself?? Maybe I should check with them the tolerances their manufacturing process offers.

The purpose of this part roller and other 5 rollers in the assembly is to hold the two platters in the assembly at exactly 60degree angle from each other in the horizontal plane.

PS: The design is incomplete. We would be redesigning the 3mm sheet part which holds the bearing and rollers to accomodate a path for the light. I see a number of issues, but unfortunately because you are using a very old release of Inventor I am going to have to bow out of this discussion because you would not be able to open my later version files.

Keep in mind – out on the shop floor we cannot manufacture perfect parts , so include appropriate clearances right up front in the design considering the manufacturing and assembly tolerances.

A 3mm plate will not fit into a 3mm slot, and in any case – we cannot make a 3mm plate or a 3mm slot there will be manufacturing tolerances associated with each feature.

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The information contained herein is for the personal use of the reader and may not be incorporated in any commercial programs, other books, database, or any kind of software without written consent of the publisher. Making copies of this book or any portion for purpose other than your own is a violation of copyright laws. The author and publisher make no representations or warranties with respect to the accuracy or completeness of the contents of this work and specifically disclaim all warranties, including without limitation warranties of fitness for a particular purpose.

The advice and strategies contained herein may not be suitable for every situation. Neither the publisher nor the author shall be liable for damages arising here from. All brand names and product names used in this book are trademarks, registered trademarks, or trade names of their respective holders. The author and publisher are not associated with any product or vendor mentioned in this book. It is the most widely used CAD software. The commands and concepts introduced by AutoCAD are utilized by other systems.

Autodesk Inventor as a topic of learning is vast, and having a wide scope. It is package of many modules delivering a great value to enterprises. It offers a set of tools, which are easy-to-use to design, document and simulate 3D models.

Using this software, you can speed up the design process and reduce the product development costs. Each chapter has components explained with the help of real world models.

This book is written for students and engineers who are interested to learn AutoCAD and Autodesk Inventor for designing mechanical components and assemblies, and then create drawings. The user interface and terminology are discussed in this chapter. You will create simple drawings using the drawing tools. Chapter 3 , Drawing Aids , explores the drawing settings that will assist you in creating drawings. Chapter 4 , Editing Tools , covers the tools required to modify drawing objects or create new objects using the existing ones.

Chapter 5 , Multi View Drawings , teaches you to create multi view drawings standard projection techniques. Chapter 6 , Dimensions and Annotations , teaches you to apply dimensions and annotations to a drawing. Chapter 7 , Parametric Tools , teaches you to create parametric drawings. Parametric drawings are created by using the logical operations and parameters that control the shape and size of a drawing.

Chapter 8 , Section Views , teaches you to create section views of a component. A section view is the inside view of a component when it is sliced.

Blocks are group of objects in a drawing that can be reused. Attributes are notes, or values related to an object. Xrefs are drawing files attached to another drawing. Chapter 10 , Layouts and Annotative Objects , teaches you create layouts and annotative objects. Layouts are the digital counterparts of physical drawing sheets. Annotative objects are dimensions, notes and so on which their sizes with respect to drawing scale. Chapter 11 , Templates and Plotting , teaches you create drawing templates and plot drawings.

Chapter 12 , 3D Modeling Basics , explores the basic tools to create 3D models. Chapter 13 , Solid Editing Tools , covers the tools required to edit solid models and create new objects by using the existing ones.

You will design a floor plan and add dimensions to it. Chapter 1 introduces Autodesk Inventor. Chapter 2 takes you through the creation of your first Inventor model.

You create simple parts. Chapter 3 teaches you to create assemblies. It explains the Top-down and Bottom-up approaches for designing an assembly. You create an assembly using the Bottom-up approach.

Chapter 4 teaches you to create drawings of the models created in the earlier chapters. You will also learn to place exploded views, and part list of an assembly. Chapter 5: In this chapter, you will learn additional modeling tools to create complex models. Chapter 6 introduces you to Sheet Metal modeling. You will create a sheet metal part using the tools available in the Sheet Metal environment.

 
 

Solved: Unable to Revolve/Sweep a Solid in Inventor – Autodesk Community.

 

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Need to remove old VBA from dwg. Squared off Polyline Corners. Editing Text, its rotated. Scan timber samples autodesk inventor 2016 revolve free create Autocad drawing. Union of 3 autodeesk. Layout Feature Problems. Block palette autodesk inventor 2016 revolve free and palette images. Flickering when moving mouse with Hardware acceleration enabled.

Revopve Coordinate System dialog box empty. Cannot plot using Plot Area: Layout. Image in XRef title block doesn’t rotate. Regen drawing after hide command. Multiple Plotting. Autodesk inventor 2016 revolve free pattern shows up outside of boundary.

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Website designers fres make a living building sites for autodesk inventor 2016 revolve free on WordPress or Squ Explore Podcasts All podcasts. Thank you Walter!! Files tabs are located below the ribbon. Rate as 4 out of 5, I liked it. You can create жмите drawings in this workspace. One major point of BIM is to be platfo.

 
 

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