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Parting surfaces are used to separate the mold cavity from the core.
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You create shut-off surfaces after you create the parting lines. Shut-off surfaces close up the through holes. To cut a tooling block into two pieces, you need two complete surfaces (a core surface and a cavity surface) without any through holes. You create the parting lines after the model is scaled and proper draft is applied. They are used to create the parting surfaces, and to separate the surfaces. Parting lines lie along the edge of the molded part, between the core and the cavity surfaces. Mold analysis tools are used by designers of molded plastic parts and by designers of the mold tools used to manufacture those parts. The Mold Tools toolbar provides tools for creating mold tooling (cores, cavities, etc.) This overview lists typical mold design tasks and the SOLIDWORKS functions that provide solutions to help you complete those tasks. The new parts have external references to the original model, so changes to the molded part are automatically reflected in the tooling parts in the assembly. Then insert the new parts into an assembly, where you can add other supporting hardware, create mates, and so on. You can save each tooling body into a separate part document by right-clicking the body in Solid Bodies and selecting Insert into New Part. You can also use the Ruled Surface tool to create an interlock surface.Ĭreates the core and cavity bodies, based on the steps followed earlier. See Interlock Surface.Īdds draft to surfaces on imported models. You can also use a parting surface to create an interlock surface. The Parting Lines tool includes the option to select an edge and have the system Propagate to all edges.Ĭreates surface patches to close up through holes in the molded part.Įxtrude from the parting line to separate mold cavity from core. Creates a parting line from which you create a parting surface.Verifies that you have draft on your model, based on the angle you specify.Identifies trapped areas that prevent the part from ejecting.Īnalyzes transitions between positive and negative draft to visualize and optimize possible parting lines. Examines the faces of the model for sufficient draft, to ensure that the part ejects properly from the tooling.