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A locked 3D dimension elsewhere on the part is likely blocking the modification. Check the PathFinder for locked variables.
Use this to move multiple faces at once, even if they aren't physically connected.
Synchronous Technology frees you from this. It combines the speed and simplicity of direct modeling with the precise dimensional control of parametric design. Instead of navigating a complex tree, you simply — selecting a face, feature, or region and moving it dynamically. The software's powerful Live Rules automatically detect and maintain geometric relationships like parallelism, tangency, and concentricity in real-time, ensuring your design intent stays intact without tedious manual constraints. solid edge synchronous best
Synchronous Technology isn't just about moving faces; it includes a suite of advanced features that truly set it apart.
Complex surface lofts, sweep paths, and highly specialized plastic injection molded features. A locked 3D dimension elsewhere on the part
Many experts suggest that the best practice is often a "mixed" approach—using Synchronous for the main design and Ordered for specific features if needed.
The power of Synchronous Technology extends seamlessly into sheet metal design. With ST for sheet metal, you can achieve faster modeling with less preplanning. The intuitive "grab-n-go" tools allow you to dynamically modify flanges, tabs, and cutouts without being bound by a rigid feature history, drastically reducing the time needed to iterate on complex sheet metal parts. Synchronous Technology frees you from this
If you want to take your engineering workflow to the next level, let me know: What is your team currently using? What specific industry or product does your company design? traditional ordered modeling for a specific type of part?
Click a specific shaft to constrain modifications to a single linear direction. 2. Establish Intent with Live Rules