Siemens solid edge 2019 tutorial free.Beginners tutorials for getting started with Simcenter Amesim Student Edition
This Solid Edge siemens solid edge 2019 tutorial free instructs users to create a 3D assembly with moving gears, components, and restrictions to create an articulated mechanical claw. This video tutorial created by Solid Edge will give you step by step instructions on how to design a name tag, адрес, text, and synchronous edits. This tutorial instructs users to create a 3D model of a fidget spinner in Siemens solid edge 2019 tutorial free Edge with instructions, video guides, and part files.
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Use our in-depth CAD tutorial to create a simplified front loader with parts, detailed drawings, and assemblies in Solid Edge. Learn the advanced CAD design principles with our tutorial to build a rocket, using sketching, holes, assemblies, sheet-metal design, and more. Tutorial Difficulty Beginner Tutorila Advanced.
All Ages Beginner Design a name tag with protrusion, text, and synchronous edits This video tutorial created by Solid Edge will give you step by step instructions on how to design a name tag, protrusion, text, and synchronous edits. Elementary School, Middle School Beginner Create a fidget spinner with parts, ege, and assemblies This tutorial instructs users to create a 3D model of a fidget spinner in Solid Edge with instructions, video guides, and part files.
High School Intermediate Build 219 front loader with siemens solid edge 2019 tutorial free, drawings, and assemblies Use our in-depth CAD tutorial to create a simplified front loader with tutofial, detailed drawings, and assemblies in Solid Edge. High School Intermediate Create a rocket with advanced CAD design Learn the advanced CAD design principles with our tutorial to build a rocket, using sketching, holes, assemblies, sheet-metal design, and more.
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Details Provide information and steps to answer the question or resolve the issue. Use formatting like numbered lists for steps that must be followed in order. Include a description of the cause of the issue if known and applicable so the reader understands why they encountered the issue. Thermodynamics: Steel ball in water bath This tutorial deals with heat transfer. Hydraulics: Pressure transducer This tutorial deals with a hydraulic transducer. Mechanics: Vertical throw This tutorial deals with gravity.
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Set radius to 1 mm. Use mirror option to copy the outer body on one side of the wing to the other side. Select the entire outer feature by clicking and dragging a box around the geometry. Select the Mirror button. Select the right plane using the coordinate system. Use the Part Painter on the View tab to color the wing support structure Black dull. Click and drag around the structure. Create a projection of the slot in the bottom of the car body. Select project to sketch button.
Lock to the XZ plane from the coordinate system. Select the 3 edges of the slot in the front of the car body. Add slot in the wing by removing material. Click on the Extrude command. Select chain option from dropdown menu.
Select the 3 projected edges on the XZ plane with one click. Select the cut option from dropdown menu. Point the arrow to the inside of the slot shape and click. Drag the cut through the front wing. Define the center of the rectangle to be on the midpoint of the edge of the face. Add dimensions to the drawing as shown. Click on the region defined by the sketch and select arrow to extrude 10 mm towards the slot.
Click on the Subtract command on the Features tab. Select the Body as the target for the subtraction. Select the Front Wing as the tool body. In place activate into the car body by clicking the Edit in place button after selecting the body, and notice the new pockets in the car body for the Front Wing.
Select the bottom face of the Front wing key slot. Remove the material by dragging the face downward through the bottom slot. Add Rounds to the edge of the extrusion. Add 0. Add round to the front of the car body. Use the chain option from dropdown menu. Type in radius of 1 mm.
Select the edge of the front face of the car body. Close and return to the assembly. Isolate the Front Wing by selecting it and clicking on the Edit in place icon. Click the Round command and select the top edges of the feature. Add 1 mm rounds. Click arrow underneath round button for more options. Select Chamfer Equal Setbacks option. Select the edge of the extrusion. Set the setback distance to 0. Finally round the bottom front edge of the wing using the round button. Set round to 1mm. Select Close and Return to go back to the top level assembly.
Save the assembly. You have now completed the Front Wing of the F1 Car. Part 3. Start your rear wing design by using the previously made F1 Body design assembly. Click on the Green checkmark button. Draw an arc using 3 points above the car body. This is an estimation and correct dimension will be applied later. Using the line sketch feature, draw a line starting from the centerline of the rear wheel axle upwards.
Click on the connect button in Relate section to align the arc center to the vertical line. Using the same connect button, connect the arc and the centerline to remove the remaining arc segments. Draw another line from the arc centerline to the other end of the arc.
Click on the construction button and select both straight lines. Using the smart dimensions, define the radius of the arc 70mm. Define the angle of the arc 25 degrees. To define the thickness of rear wing: Offset the arc by clicking on the offset button and selecting the arc. Offset the arc to the inside 3 mm.
Press the tab key to enter the angle dimensions instead of length. Sketch a circle on the trailing edge to create the back end of the wing. Select the tangent circle option from the dropdown menu. Place the circle between the two arcs. Apply a third tangent relationship between the arc and the angled line as shown. Taking advantage of the synchronous technology, click and drag a box around the sketch to select the enclosed shape.
Extrude the enclosed shape 80 mm. Since we no longer need the sketch, we can delete the sketch in the pathfinder. Sketch 3 lines on the center plane to create the mounting structure for the rear wing. Using the smart dimensions, add a few dimensions to the sketch. Use the extrude feature to create a solid extrusion. Extrude the structure 20 mm symmetrically.
Make sure to select chain option from the dropdown menu. Use the subtract feature to subtract the wing from the car body. Add rounds to the model to make it aesthetically pleasing. Round the 4 corners on the support structure.
Sketch a rectangle by center on the back side of the wing. Dimension the rectangle 3 mm wide and 6 mm height. Extrude the lower region of the rectangle. Extrude 22 mm towards the leading edge of the wing. Using the Pathfinder, delete the rectangle sketch. Use the coincident plane feature to create a plane coincident to the side of the mounting structure. Using the steering wheel, translate the plane so that it is coincident to the end face of the wing.
Use the new sketch plane to create a sketch for the support structure at the end of the wing. Use smart dimensions to add a few measurements to the sketch. Select the sketch and the wing arc to extrude 3mm towards the center plane.
Add rounds to the 4 corners of the structure for aesthetic purposes. Select face round option in the drop down menu to add round to the entire face of the support structure. Click and drag a box around the entire support structure to select it. Mirror the entire structure across the center plane using the mirror feature command. Use part painter feature to paint the two end structures of the wing. Paint the structures Black dull.
Use the subtract feature to subtract the rear wing body from the car body to remove the interference Uncheck the box next to rear wing part in the pathfinder so that you can see the slot in the car body.
Click on the car body and select edit in place Extend the resulting slot by dragging the end face beyond the edge of the part Also drag the front end of the slot an extra 2 mm. Add rounds to the corners of the slot using the Round feature. Specify a 0. Check the box next to rear wing part in pathfinder to see the entire assembly. Select the rear wing and click Edit in Place option to work with only the wing. Add chamfers to the bottom edge of the key. Add 2 mm rounds to the bottom of the wing.
Make sure to round all four sides of the wing as shown in the picture below. Click on Close and Return button. Save the assembly to save the changes to the parts. Now you have completed the rear wing of the F1 Car.
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Close search. Information Title. Beginners tutorials for getting started with Simcenter Amesim Student Edition. URL Name. Summary Briefly describe the article. The summary is used in search results to help users find relevant articles. You can improve the accuracy of search results by including phrases that your customers use to describe this issue or topic.
Details Provide information and steps to answer the question or resolve the issue. Use formatting like numbered lists for steps that must be followed in order. Include a description of the cause of the issue if known and applicable so the reader understands why they encountered the issue.
Thermodynamics: Steel ball in water bath This tutorial deals with heat transfer. Hydraulics: Pressure transducer This tutorial deals with a hydraulic transducer. Mechanics: Vertical throw This tutorial deals with gravity. Filter Feed Refresh this feed. Skip Feed View This Post. August 7, at PM. Academic Simcenter Amesim. More comments 1 of 2. Select the 3 edges of the slot in the front of the car body. Add slot in the wing by removing material. Click on the Extrude command.
Select chain option from dropdown menu. Select the 3 projected edges on the XZ plane with one click. Select the cut option from dropdown menu. Point the arrow to the inside of the slot shape and click. Drag the cut through the front wing. Define the center of the rectangle to be on the midpoint of the edge of the face. Add dimensions to the drawing as shown. Click on the region defined by the sketch and select arrow to extrude 10 mm towards the slot.
Click on the Subtract command on the Features tab. Select the Body as the target for the subtraction. Select the Front Wing as the tool body. In place activate into the car body by clicking the Edit in place button after selecting the body, and notice the new pockets in the car body for the Front Wing.
Select the bottom face of the Front wing key slot. Remove the material by dragging the face downward through the bottom slot. Add Rounds to the edge of the extrusion. Add 0. Add round to the front of the car body. Use the chain option from dropdown menu. Type in radius of 1 mm. Select the edge of the front face of the car body. Close and return to the assembly.
Isolate the Front Wing by selecting it and clicking on the Edit in place icon. Click the Round command and select the top edges of the feature.
Add 1 mm rounds. Click arrow underneath round button for more options. Select Chamfer Equal Setbacks option. Select the edge of the extrusion. Set the setback distance to 0. Finally round the bottom front edge of the wing using the round button. Set round to 1mm. Select Close and Return to go back to the top level assembly. Save the assembly. You have now completed the Front Wing of the F1 Car. Part 3. Start your rear wing design by using the previously made F1 Body design assembly.
Click on the Green checkmark button. Draw an arc using 3 points above the car body. This is an estimation and correct dimension will be applied later.
Using the line sketch feature, draw a line starting from the centerline of the rear wheel axle upwards. Click on the connect button in Relate section to align the arc center to the vertical line.
Using the same connect button, connect the arc and the centerline to remove the remaining arc segments. Draw another line from the arc centerline to the other end of the arc. Click on the construction button and select both straight lines. Using the smart dimensions, define the radius of the arc 70mm. Define the angle of the arc 25 degrees. To define the thickness of rear wing: Offset the arc by clicking on the offset button and selecting the arc.
Offset the arc to the inside 3 mm. Press the tab key to enter the angle dimensions instead of length. Sketch a circle on the trailing edge to create the back end of the wing.
Select the tangent circle option from the dropdown menu. Place the circle between the two arcs. Apply a third tangent relationship between the arc and the angled line as shown. Taking advantage of the synchronous technology, click and drag a box around the sketch to select the enclosed shape.
Extrude the enclosed shape 80 mm. Since we no longer need the sketch, we can delete the sketch in the pathfinder. Sketch 3 lines on the center plane to create the mounting structure for the rear wing. Using the smart dimensions, add a few dimensions to the sketch. Use the extrude feature to create a solid extrusion. Extrude the structure 20 mm symmetrically. Make sure to select chain option from the dropdown menu. Use the subtract feature to subtract the wing from the car body.
Add rounds to the model to make it aesthetically pleasing. Round the 4 corners on the support structure. Sketch a rectangle by center on the back side of the wing. Dimension the rectangle 3 mm wide and 6 mm height. Extrude the lower region of the rectangle. Extrude 22 mm towards the leading edge of the wing. Using the Pathfinder, delete the rectangle sketch. Use the coincident plane feature to create a plane coincident to the side of the mounting structure.
Using the steering wheel, translate the plane so that it is coincident to the end face of the wing. Use the new sketch plane to create a sketch for the support structure at the end of the wing. Use smart dimensions to add a few measurements to the sketch. Select the sketch and the wing arc to extrude 3mm towards the center plane.
Add rounds to the 4 corners of the structure for aesthetic purposes. Select face round option in the drop down menu to add round to the entire face of the support structure. Click and drag a box around the entire support structure to select it.
Mirror the entire structure across the center plane using the mirror feature command. Use part painter feature to paint the two end structures of the wing. Paint the structures Black dull. Use the subtract feature to subtract the rear wing body from the car body to remove the interference Uncheck the box next to rear wing part in the pathfinder so that you can see the slot in the car body. Click on the car body and select edit in place Extend the resulting slot by dragging the end face beyond the edge of the part Also drag the front end of the slot an extra 2 mm.
Add rounds to the corners of the slot using the Round feature. Specify a 0. Check the box next to rear wing part in pathfinder to see the entire assembly.
Select the rear wing and click Edit in Place option to work with only the wing. Add chamfers to the bottom edge of the key. Add 2 mm rounds to the bottom of the wing. Make sure to round all four sides of the wing as shown in the picture below. Click on Close and Return button.
Save the assembly to save the changes to the parts. Now you have completed the rear wing of the F1 Car. Part 4. Start by opening the previously made F1 Body design assembly. Navigate to the folder.. Align the centerline of the axle to the rear hole in the car body. For cylindrical object, automatic axial alignment is created. For the second relationship, select the center plane relationship from the drop down menu. In the Quick bar, be sure the option is set to Double.
Select the two end center points of the axle and then two side faces of the car body. Press esc to exit the Assemble command. Drag another axle into the working space. You can drag the axle from Parts Library or click and drag from Pathfinder to make another copy of the axle. For aligning the front axle, repeat the same steps used for back axle. Click and drag the Wheel Spacer from the Parts Library to create space between the wheels and the car body. Align the centerline of the spacer with the rear axle centerline.
Automatic centerline relationship is created by simply clicking on the rear axle. Click on the car body face to create second relationship as shown in the picture. Press esc to exit the assembly. Click and drag a Wheel Assembly from the Parts Library. For the first relationship, mate the Wheel to the outer edge face of the spacer.
For the second relationship, align using the centerline of the spacer. Repeat the previous two steps to assemble the remaining three spacers and wheels. Click and drag a Pin from the Parts Library. For first relationship, align using the centerline of pin and the hole in the axle For second relationship, select the axle face adjacent to the wheel.
Press esc to exit. Repeat the previous step to assemble the remaining three pins. Click and drag the CO2 cartridge from the Parts Library. For first relationship, align using the centerline of CO2 cartridge and the centerline of the bore hole in the back of the car body.
For second relationship, select the tangent relationship from the drop down menu. Select the spherical end of the cartridge and the inside of the bore hole. Click and drag the eye screw from the part library. For first relationship, select the mate relationship from the dropdown menu. Mate flat face of the eye screw with the face of the slot. For second relationship, select the center plane relationship from the drop down menu. Set the option to Single. Select the centerline of the eye screw and two lateral faces of the slots to align.
Click on the eye screw to select it. Orient the model by clicking the front side of the cube in lower right side of the screen. Use the steering wheel to bury to the screw into the car body.
Lower the screw into the body around 1. Click on the delete button in dialogue box which appears. Using the steering wheel to move the eye screw behind the rear axle. Select the Move -Copy option to create a copy and drag the eye screw towards the front of the car. Around mm from the back eye screw This completes the car assembly. Part 5. Select the lateral face at the front of the car as indicated in the picture.
Click and drag the steering wheel to the vertical edge to pivot the face. Click on the torus of the steering wheel to initiate rotation. Rotate the face degrees. Relocate the steering wheel to the top edge of the same face. Click the middle of the steering wheel and drag to desired location. Notice the changes made to one side is applied to the other side automatically. Move the steering wheel to lateral edge of the side of the car.
Click and drag the arrow along the same axis to shorten the length as shown in the picture. Change the length to 15mm. Click on the back face of the same structure. Click and drag the steering wheel to the vertical edge. Rotate the face 8 degrees to add more clearance for the wheel. Click and drag the steering wheel to the top edge of the face. Rotate the face 25 degrees.
Select the face behind the rear wheel. Click and drag the steering wheel to the vertical edge of the face. Rotate the face -8 degrees. Move the steering wheel to the bottom edge of the face.
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