Watch short demo clips that explain each feature in action.
The block diagram shows that a basic or initial model can be imported from an Excel file or an existing Dyrobes™ file.
A model can also be created from a PDF/JPEG/PNG/similar image with a few user clicks.
After such model is imported onto the main canvas, it becomes "live" which allows user to directly interact with it using mouse e.g., draging line or point, add part, add item such as disk, bearing, flexible support, station etc. The final model can then be exported to Dyrobes™ for subsequent analysis with a click .
A simple "Step Table" on a given Excel template can be read and the corresponding "live" model automatically created on the Main Canvas, which allows user to directly interact with it using mouse.
Typically a single material is assigned to a part. However, some applications warrant a part to have multiple material subregions. For example, the middle of a shaft may be hotter than its ends and consequently high temperature material properties should be assigned in the middle subregion while the base material at lower temperature is assigned at two ends.
Any scaled image of a rotating machinery in PDF, JPEG or a similar format is imported onto the Image Canvas of the RotorModeler™. Then the corresponding assembly model is readily created with a few mouse clicks. Such model is then exported to the Main Canvas for further enhancements.
Dyrobes™ De-Translator is able to read an existing .rot file and then create the underlying model on the Main Canvas. This is a "live" model with which user can directly interact for any modifications or enhancements. It is then passed through the Dyrobes™ Translator to create the modified .rot file which is then exported to Dyrobes™ for subsequent analysis.
A "live" model on the Main Canvas can be passed through the Dyrobes™ Translator and a corresponding .rot file is created which is then exported to Dyrobes™ for subsequent rotordynamic analysis.
Efficiently creates a "live" model on Canvas with which user can directly interact.