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The Geometry Optimizer goes a step further: It displays and heals inaccurate edges. The Geometry Inspector finds-and tries to fix-geometry inconsistencies that can cause problems downstream, such as self-intersecting geometry, generate geometry, and loop inconsistencies. Incidentally, ST5 has two new tools for fixing imported geometry. The recognized holes become editable that is, designers can change hole depth, type, and other properties. ST5 recognizes holes on imported models, such as straight bore, counter sunk, and counter bored. Conversely, working with individual parts and part files may be easier for complex assemblies and part structures.) (Note that a single part file can better represent purchased components received as an assembly. For example, a single sheet-metal part might be better manufactured, easier to assemble, and stronger overall if it were multiple components. Support for multi-body modeling lets ST5 users merge or split imported geometry into a single part or multiple parts, depending on manufacturing needs. Multi-body modeling, imports, and slot assemblies Analysis displays can include iso-line or iso-surfaces show meshing with automatic detail removal and a mix of mesh types when displaying results. Heat transfer studies can be coupled with static or buckling analysis. Simulations can include temperature, heat flux, convection, radiation, and heat generation applied to faces, edges, points, features, or bodies. This lets simulations of thermal, mechanical, even electro-mechanical systems run within the same CAD package. ST5 includes steady-state thermal simulation technology based on Femap (the pre- and post-processing system) and NX Nastran (finite element analysis). (Of course, users can switch back and forth at will between synchronous edit and dynamic edit.) One clever new feature in synchronous editing is a dialog box for pushing faces right, left, or a symmetric distance in opposite directions. Other icons let users “relax” (or, suspend) various “live rules” invoked by ST, including persisted relationships and dimensions. An icon of a magnifying glass lets users preview edits before accepting them. As “seeing is believing,” users can see and control those model relationships affected when editing geometry. These are handled by the Solution Manager, which in preview mode lets users graphically interact with a model. Several new options have been added to control synchronous editing. Because ST is so productive for Solid Edge users, says Dan Staples, Siemen PLM’s director of product development-Solid Edge, “We’ve continued to focus on that, extend it, make it faster, make it apply to more cases.” With ST, designers no longer need to preplan their design steps and modifications when working on existing part designs, saving significant amounts of time. ST helps cut design time and increase the reuse of imported models. (The qualifier is there because future versions of Solid Edge are sure to come.)Īs its name suggests, ST5 has further improvements to Siemens’ synchronous technology (ST), a history-free, feature-based approach to designing.
#Solid edge file car body software
If that’s the case, Solid Edge ST5 from Siemens PLM Software (/plm/solidedgest5) is pretty much complete. How is “having an edge” in mid-market computer-aided design (CAD) systems defined these days? One way might be the completeness of the CAD package. The line display style of each position can be controlled. This helps people better understand the range of motion when assembling parts. ST5 can show a moveable assembly in multiple positions within a drawing.