By Wasim Younis
Inventor Simulation is an important a part of the Autodesk electronic Prototyping approach. It permits engineers and architects to discover and try parts and items almost, visualizing and simulating real-world functionality. Up and working with Autodesk Inventor Simulation 2010 is devoted to the necessities of Inventor clients who have to fast examine or refresh their abilities, and practice the dynamic simulation, meeting research and optimization features of Inventor Simulation 2010. step by step method will get you up and operating fastDiscover tips to convert CAD versions to operating electronic prototypes, permitting you to augment designs, lessen over layout, failure, and the necessity to create actual prototypesExtensive real-world layout difficulties discover the entire new and key good points of the 2010 software program, together with meeting tension research; parametric optimization research; growing joints successfully; averting redundant joints; unknown strength; common sense stipulations; and more.Tips and counsel you to take on your personal layout demanding situations with confidenceCompanion web site (elsevierdirect.com/companions) presents Simulation datasets for the layout difficulties within the e-book that enable you observe, test and manage options, and movement directly to fixing your personal layout difficulties. Inventor Simulation is a vital a part of the Autodesk electronic Prototyping method. It permits engineers and architects to discover and try elements and items almost, visualizing and simulating real-world functionality.
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Extra resources for Up and Running with Autodesk Inventor Simulation 2010: A Step-by-Step Guide to Engineering Design Solutions
12. Click OK to accept the Dynamic Simulation warning That Prismatic:4 joint is created under Standard Joints as illustrated below. In total, 4 joints have been created. 35 By accepting the above warning, Cylindrical:3 joint has now become a redundant joint. This means the joint is overconstrained by two degrees of freedom as mentioned in the warning. The redundancy phenomenon will be discussed later, but in the meantime, we will determine how we can remove redundancy from this joint. Repair redundant joints To resolve Cylindrical:3 (Arm2:1, Slider:1) joint you can either a.
Select Insert Joint The cylindrical joint will now be the default joint, as it was the last created joint. 22. Select Camshaft edge as shown to deﬁne Z axis of Component 1 44 23. Select the Component 2 button Ͼ Select the edge of the Component 2 as shown 24. Click Apply. The following joint will be created Make sure the Z axes are pointing in the same direction. CHAPTER 1 An Introduction to Inventor Simulation 25. In the Insert Joint dialog box, select Point-Plane Joint from the pull down menu 26.
This makes the assembly statically indeterminate, which means the assembly has inﬁnite solutions for joint types and thus reaction forces. In order to explain this concept of redundancy, I will use the following door assembly, comprising of door and frame. Most residential doors have at least two hinges, and some high security doors will have at least three hinges if not more. 47 CHAPTER 1 An Introduction to Inventor Simulation The door example has two components, a frame and door. Each unconstrained component has six degrees of freedom, and by applying joints, we restrict motion by restricting these degrees of freedom.
Up and Running with Autodesk Inventor Simulation 2010: A Step-by-Step Guide to Engineering Design Solutions by Wasim Younis