
Learn to create two-dimensional sketches in Solid Edge with the sketcher on chosen planes, drawing lines, arcs, circles, and points, and using projection and infinite reference lines.
Learn to create rectangles in Solid Edge using center point, two-point, and three-point methods, set dimensions and angle, then construct six-sided polygons with vertex or midpoint references.
Use the trim tool in sketcher to delete or cut lines, circles, and intersections by dragging, then use trim corner to auto trim excess and create a perfect corner.
Master smart dimension in Siemens Solid Edge essential training, using automatic horizontal, vertical, and angular dimensions, distances from origin, and nominal and limit dimension types.
Create a second Solid Edge model by sketching a circle of radius ten, adding lines and another circle, applying tangency and dimensions to fully define the sketch for 3D model.
Revolve creates a cylindrical object from a sketch by selecting a profile and an axis of rotation. The lecture covers 360-degree rotations, axis selection, and closed profiles.
Create this object by sketching on the front plane, using a 45 radius fillet, resolving dimensions and angle with smart dimension, applying offset and trim, finally hiding the base plane.
Learn how to apply the chamfer command in three-dimensional solid modeling using the jumper option in sketcher, with separate distances, equal setback, and angle-setback variations to create precise edge chamfers.
Build a rib in Solid Edge by sketching circles on the front view, extruding, cutting, and applying circular patterns with radii and hole features.
Create a bench base model in Solid Edge from front, top, side, and isometric views, extruding symmetrically to 64, adding a 16 by 16 chamfer, and drilling six-inch holes.
Use the scale body tool to enlarge or reduce a component, selecting a base point and scale factor, with options for uniform or non uniform scaling.
Learn to create a rectangular pattern in Solid Edge by selecting a feature, drawing a boundary rectangle, and setting counts and directions in x and y with preview.
Create a Solid Edge model by sketching circles with specified diameters and radii, applying tangent constraints and trims, extruding to 2.5 mm, and using a linear pattern to repeat features.
Explore the mirror copy feature in Siemens Solid Edge, using a reference point and plane to mirror a feature across to the opposite side, matching points and finishing mirrored design.
Delete faces in Siemens Solid Edge by selecting faces or regions, using space and region options, and applying rotations to complete precise removals.
Learn to resize rounds by selecting resize zones and symbols, adjust values from three to six, and see how the whole release changes and history updates.
Create a carburetor part for a two stock engine in Solid Edge by sketching top, front, and side views, extruding, mirroring, cutting, and adding holes and fillets.
Create an engine cover in Solid Edge by sketching concentric circles with specified diameters, applying tangency and mirroring, then using a circular pattern and extruding to final depth and skirt.
Use the contour flange to create a user defined flange by selecting an edge, defining a section and distance, with symmetric extent and the option to chain to multiple edges.
Apply a two band corner with flanges, match radii on both sides, and configure close corner and close three options, including circular and v-shaped band shapes.
Convert solid models to sheet metal parts in Siemens Solid Edge, adjust bend radius and wall thickness, and refine the sheet metal box using extrude and cut operations.
Create a sketch by drawing a center rectangle, then select the edge to automatically generate an impression preview.
Create a louver by sketching lines, setting height and distance, applying radius and angle, and patterning the feature with rectangular and circular options in solid edge.
Explore creating a normal cutout by sketching multi-layered geometry, selecting a plane, drawing shapes like rectangles and circles, and cutting the geometry to match the sketch.
Master bend and unbend operations in Solid Edge: select faces, define lines, set radius and angle, control bend direction, then use normal cut with a rectangle.
Develop a revolve exercise by creating top-down sketches, applying dimensions and radii, and refining the revolved surface with stitch, trim, and finishing steps in Solid Edge.
Create a solid model by drafting front and side sketches, applying dimensions and radii, and converting sketches into solid features, with a 3m thickness and material applied.
Explore how to flatten any surface in Siemens Solid Edge to compute its area, using base and distribute, and preview the normal direction for accurate surface flattening and area measurement.
Engage in a surface exercise in Siemens Solid Edge essential training to build a complex model using sketches, sweep, extrude, intersect, stitch, fill, thicken, and split operations.
Create a cross-curve solid by sketching on the front view, applying constraints and offsets, then define dimensions and set thickness to form the solid.
Explore the split surface tool in Siemens Solid Edge, splitting surfaces by curve, plane, or other surfaces, creating separate outer and inner surfaces and applying offset distances.
Shows how to apply the flashfit relationship in Siemens Solid Edge training by inserting two components and aligning them automatically or manually, with distance and rotation for a matched assembly.
Learn to build a butterfly valve assembly in Solid Edge by inserting components, applying ground fixed and mate constraints, and aligning parts with axis, drag, and offset.
Assemble the cylinder crank assembly by placing the base and components, aligning faces with mates, applying constraints, and adding a rotational motor to drive the crankshaft and piston head.
Learn to replace a part in an assembly by selecting the component, choosing a new part, and applying automatic updates when compatible, or adjust casting and relationships as needed.
all the parts are given on solid Exercise, please check
Create a parts list from an assembly, generate a table of quantities and part details, and add notes or text as needed for the bill of materials.
Create and place a part list and hole table in a Solid Edge assembly, define origin, pick views (isometric and 1 to 1), apply shading, generate balloons, and verify coordinates.
Learn to draft a component in Solid Edge by setting up an A2 sheet, adding a part, configuring views (top, front, isometric, principal), creating a section, and dimensioning.
Description
In this "Siemens Solid Edge Essential Training" program you will experience a unique successful method with hands on files for practice.
This course is designed for students who are new to Solid Edge as well as working in any company who had learned any CAD course (SolidEdge) long time ago and just want a brush up on the tools and operation quickly and use in their projects immediately.
Even if you presently know nothing about 3D Design and Siemens Solid Edge this course is geared to accelerate you professional development and validate your skills by preparing you to pass the Solid Edge Level 1 certification exam with confidence.
This course solid edge is not a shortcut to certification. To pass you will need to cover all the course material and spend time using and experimenting with Solid Edge and get industry recognized credentials.
Solid Edge with Ordered Technology is a computer-aided design (CAD) system for mechanical assembly, part modeling, drawing production, and simulation. Synchronous technology makes it possible to modify the design of any model, without having to know how it was constructed.
You will learn:
How to navigate through the Solid Edge interface in Ordered environment.
How to sketch with different sketch commands.
How to define sketches using relations or distances.
How to use more than 10 different features to create 3D models. (extruded boss and cut, fillet, chamfers, revolved boss and cut, swept boss and cut, lofted boss and cut)
How to create additional reference planes.
How to modify given parts to match design needs.
How to explore different materials for your models.
How to design sheet metal parts.
How to assemble different parts into an assembly design.
How to generate drawings from parts (solid, surface) and models.
How to work with surface models.
How to generate drafting of any model and assembly.
Who this course is for:
Students - Engineers 3D Mechanical Design?
Want to improve their job skills?