Business How To

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Description

A video about how to work software

Vocal Characteristics

Language

English

Voice Age

Middle Aged (35-54)

Accents

North American (Canadian-General) North American (US General American - GenAM) North American (US Mid-Atlantic)

Transcript

Note: Transcripts are generated using speech recognition software and may contain errors.
In this video, we will explore setting up and using a structural analysis within creo simulation live. When we first entered the live simulation environment, a structural study is set to the default study type. Let's begin by defining the loads and constraints for the study. We will add a fixed constraint to the inside surface of the whole and a pressure load of 1500 Pascal's to the top surface of the piston. Head pressure loads are applied normally to the selected surface. Note. The connecting rod experiences several areas of high stress around its slot. Let's try changing the dimensions of the slot to see how this affects the stress experienced in the model. We'll edit the model by decreasing its width to six millimeters and the distance between the arc centers to 20 millimeters after the model regenerates. The updated simulation reveals that the connecting rod still experience is relatively higher amounts of stress around the slot, however, are changes have caused overall levels of stress to drop throughout the model. After the model regenerates are updated, simulation reveals that the connecting rod still experience is relatively higher amounts of stress around the slot. However, our changes have caused the overall levels of stress to drop throughout the model. Let's try to decrease the stress of this model even further. We shall do this by enabling a feature in the model tree that was previously suppressed. With this change, our simulation again updates and reveals that the levels of stress experienced throughout the model have dropped significantly. Once again. With creo simulation live, we can improve our designed by making changes to our model and view the results of our changes in real time. In effect, we can improve the model with real time design feedback.