Solid Edge Fundamentals
Students will have learned how to utilize Solid Edge to design production level parametric (ordered) models of parts, synchronous models of parts, assemblies, detail drawings. They will also be familiar with the Solid Edge user interface, adding features, sketching tools and various modeling techniques. This course does not cover sheet metal modeling.
Solid Edge Fundamentals + Sheet Metal
Students will have learned how to utilize Solid Edge to design production level parametric (ordered) models of parts, synchronous models of parts, assemblies, detail drawings. They will also be familiar with the Solid Edge user interface, adding features, sketching tools and various modeling techniques. Students will also have learned how to utilize Solid Edge Sheet Metal to design production level parametric (ordered) models of sheet metal parts, and synchronous models of sheet metal parts.
Note: This is our most comprehensive introductory course for Solid Edge.
Synchronous Technology for Experienced Ordered Users
This course is designed to teach synchronous modeling to existing users of Solid Edge’s ordered or traditional modeling. Students will learn how to construct and edit models in the synchronous paradigm. They will also learn how to use integrated models (synchronous and ordered features together in the same part model). This course does not include Sheet Metal. If you also require Sheet Metal, please register for the Synchronous Technology for Experienced Ordered Users with Sheet Metal course.
Synchronous Technology for Experienced Users with Sheet Metal
This course is designed to teach synchronous modeling to existing users of Solid Edge’s ordered or traditional modeling. Students will learn how to construct and edit models in the synchronous paradigm. They will also learn how to use integrated models (synchronous and ordered features together in the same part model). This course includes Synchronous Sheet Metal. If you do not require Sheet Metal, please register for the Synchronous Technology for Experienced Ordered Users course.
Solid Edge XpresRoute - Tubing course
This course is designed to introduce users to the XpresRoute environment with an emphasis on the creation of tubes and hoses. To get the most out of this course, students should have completed the Solid Edge Fundamentals course.
Students will learn the design workflow for creating tubes and hoses. This includes learning both the automated and manual creation of tube paths, the creation of tubes, and the creation of tube bend tables and reports. Students will also learn how to modify and edit existing tubes, and be introduced to using some of the more advanced assembly tools,that can be used with tubes and hoses. After completion of this course,students will have a good working knowledge of how to create, manipulate, and work with tubes and hoses in Solid Edge.
Solid Edge Ordered Basics
Students will have learned how to utilize Solid Edge to design production level parametric (ordered) models of parts, simple assemblies, detail drawings. They will also be familiar with the Solid Edge user interface, adding features, sketching tools and various modeling techniques. This course does not cover sheet metal modeling, or synchronous modeling, or data management.
Solid Edge Ordered Basics + Sheet Metal
Students will havelearned how to utilize Solid Edge to design production level parametric(ordered) models of parts, parametric (ordered) models of sheet metal parts, simpleassemblies, detail drawings. They will also be familiar with the Solid Edgeuser interface, adding features, sketching tools and various modelingtechniques.
Solid Edge Sheet Metal
Students will have learned how to utilize Solid Edge Sheet Metal to design production level parametric (ordered) models of sheet metal parts, and synchronous models of sheet metal parts.
Solid Edge Advanced Modeling
Students will have learned how to use advanced features in sketching, part modeling, and sheet metal modeling. They will have a working knowledge of curve creation and surface modeling. This knowledge will improve their overall modeling skills allowing them to become more efficient and effective in their design work.
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