Showing posts with label Round. Show all posts
Showing posts with label Round. Show all posts

Monday, July 24, 2017

Crankshaft || Creo Parametric Tutorial

Crank-Shaft-(1280x720)

In this Creo Parametric Tutorial, we will create a model of Crankshaft. While creating this model we will learn how we can pattern a set of feature without disturbing the parent features. To do so we will create group of features to be patterned and then use copy and paste special command. While pasting we will move and rotate the grouped features. Addition to this application of various 2D sketching, Extrude, Round and Mirror Tool is also displayed in the video.

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Model designing concept is taken from videos available over YouTube.
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  download-Link


Visit the following link to get the model file…
http://bit.ly/32HPCSR


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Visit the following link to watch basic tutorial on Creo Parametric by me

https://www.youtube.com/playlist?list=PLhloyISzAQksnPmtyZtncWCQJ3NpoX_SW
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To watch detailed tutorials on the same software visit the following link:--

https://www.youtube.com/playlist?list=PLKWX3xUP3pPorULULn8Q5BbDXqBjK_ZXD
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Hope all of you will enjoyed the tutorial. If you find the video useful please like it and share it with your friends/colleagues and do not forget to subscribe us to get latest updates about our new uploads.

http://www.youtube.com/user/nisheethsorjm?sub_confirmation=1

Monday, February 20, 2017

Wrench (Solid Edge ST9 Tutorial)

Wrench

Serial No. 32

Wrench (Solid Edge ST9 Tutorial)

In this Solid Edge Tutorial we will describe how to build the model of a ‘Wrench’. It is an equation based part modelling tutorial, several equations will be used to build the model with the help of ‘Variables’ command. Use the Variable Table to create expressions between dimensional values. You can use the Show All Formulas, Show All Names, and Show All Values commands on the dimension shortcut menu to change the display of dimensions to make it easier to define expressions between dimensions.

It will cover the following topics.

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• Creating 2D Sketches on different Planes.

• Use some sketch constraints as Connect, Parallel, Concentric, Perpendicular, Symmetric, Horizontal/Vertical, Equal etc. that are applied on during sketch creation.

• Use sketch command such as Line, Circle, Polygon, Trim, 3point/CenterPoint arc, Extend to Next, Mirror etc.

• How to give the aligned dimension on the slant line and rectangle, chose the ‘Use Dimension Axis’ option in ‘Smart Dimension’ command.

• How to relate the dimensions with variables with the help of ‘Smart Dimension’ command.

• How to add the parameters in the Extrude and Fillet feature by using ‘Select - Dynamic Edit’ option.

• How to add different named parameters in the Variable Table.

• How to create a work plane (Normal to Curve) command between sketch point and arc.

• Use features command such as Extrude, Revolve, Cut, Round Feature etc.

 

download-Link


Click the following link to get the model file: - http://bit.ly/2OvKPiY

Sunday, February 12, 2017

Allen Screwdriver—Double Ended (Solid Edge ST9 Tutorial)


Allen Screwdriver (Double Ended)


Serial No. 30


Allen Screwdriver—Double Ended (Solid Edge ST9 Tutorial)
In this Solid Edge Tutorial we will describe how to build the model ‘Allen Screwdriver (Double Ended)’. The edge of Allen screwdriver (Double Ended) has been constructed by different surface tools like Bound, Stitch, Extend etc. It is a Part and Assembly modelling tutorial. This assembly consist 3 part files (Handle, Circular Rod, Sleeve etc.).
It will cover the following topics.
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• Creating 2D Sketches on different Planes.
• Use some sketch constraints as Connect, Horizontal/Vertical, and Equal etc. that are applied on during sketch creation.
• Use solid and surface feature command such as Revolved Cut, Bounded, Stitched, Extrude, Cut, Circular Pattern, Subtract, Round etc.
• How to create a line by using ‘3D Line’ command in 3D Sketch environment.
• How to change the color of the model by using ‘Part Painter’ tool.
• How to insert component into the assembly using drag and drop from parts library by using ‘Insert Component’ command.
• How to resize (scale) the handle of screwdriver with the help of ‘Part Copy’ command. You use the Part Copy Parameters dialog box to specify which geometry you want to copy and whether you want to mirror, scale, or flatten the copied geometry.
• How to create a sleeve part in context of an assembly in the assembly environment with the help of ‘Create Part In-Place’ command.
• How to mate the parts by using ‘Flash Fit’ command in the assembly.
• How to flip the component by using ‘Flip Side’ option in ‘Flash Fit’ command in the assembly.
• How to lock the rotation of the component by using ‘Lock Rotation’ option in ‘Flash Fit’ command in the assembly.
• Use the ‘Subtract’ command (Boolean) to remove the tool body volume from selected target bodies in the assembly. You can select multiple target bodies and multiple tool bodies.



download-Link

Click the following link to get the model file: - http://bit.ly/35gBCB8


Thursday, May 1, 2014

Modelling an Elbow in Creo Parametric 2.0

Elbow

In this tutorial we will create an Elbow by utilizing part modelling capabilities of Creo Parametric 2.0

Viewers will be able to watch application of many part modelling tools like Sweep, Shell, Helical Sweep, Pattern and Round tool as well as 2D sketching techniques are also shown.

In cutting of threads I will utilize the same BSP Thread Profile that was shown a previous video by me..

Video Screen Shots

Transcription of Video

  1. Start a new part file from scratch with the default template and give it a name ‘Elbow’.
  2. Select the Top Datum plane and create a new sketch on this plane.
  3. Click the Sketch View icon to orient the sketching plane parallel to the screen.
  4. Clear the screen by closing the visibility of Datum Planes, Axis, Points, Spin centre, etc.
  5. Activate the line tool and draw the sketch as displayed.
  6. As soon as the lines are drawn the constraints are automatically applied.
  7. Change the dimension values as displayed.
  8. Activate the Circular Fillet tool and apply a fillet between these two lines.
  9. Fill the radius of the fillet.
  10. Select the dimensions and lock them.
  11. The sketch is complete so exit from the sketching mode.
  12. Activate the Sweep tool.
  13. Define the visible sketch as trajectory for the sweep.
  14. Flip the direction of the sweep.
  15. Click this icon to activate internal sketcher for creating the sweep cross section.
  16. Draw a circle at the end of trajectory and apply the dimensions as displayed.
  17. Click Ok to return to the Sweep tab.
  18. The preview of the feature is visible so click ok to execute the command.
  19. Change the colour of the model as per your wish.
  20. Activate the Shell tool.
  21. Select the surfaces of the model to be removed. Use ctrl key of your keyboard while selecting multiple surfaces.
  22. Specify the Shell thickness and execute the command.
  23. Save the model file.
  24. Open the visibility of datum planes and create a sketch over Top datum plane.
  25. First create a centerline in the sketch that will work as axis of revolution for the sweep.
  26. Take the project of the internal edge of the model.
  27. Delete this line.
  28. You can see a reference line still exists which will be used to create a new line for Helical sweep profile.
  29. Fill the dimension value which will be the length of thread.
  30. Exit from the sketching mode.
  31. Open the file named ‘BSP_Thread_Profile’.
  32. Here you can see a sketch profile of a British Standard Pipe Thread is drawn. The pitch of the profile is 1/14 inches which governs all the other dimensions by some relations.
  33. Copy this sketch profile.
  34. Now switch back to Elbow file.
  35. Activate the Helical Sweep tool.
  36. At present software prompts to select an open sketch to define Helix sweep profile so select this line.
  37. Fill the pitch value as displayed.
  38. Click this icon to create the sweep section or profile.
  39. Place a geometry point.
  40. Now paste the BSP Thread Profile that was copied earlier and which is still in the Windows Clipboard.
  41. As soon as you paste the sketch the move tool will activate.
  42. In the scale field fill the value 1.
  43. Rotate the profile by 90° in clock wise direction.
  44. Move the profile near to the geometry point and click Ok.
  45. Make some minor correction in the profile because in pasting it some constraints have gone missing.
  46. Again move the profile more near to the geometry point to apply some more constraints.
  47. Delete any constraint that gives error in placing new constraint.
  48. Now profile is properly positioned so exit the sketch.
  49. The preview of sweep is visible in the graphic window.
  50. Activate the remove material option and execute the command.
  51. Activate the shaded with edges option.
  52. Hide the visibility of visible sketch.
  53. Select the Helical sweep in the Model Tree and activate the Pattern Tool.
  54. Open the visibility of Coordinate System.
  55. Set Axis as the type of pattern.
  56. Select Y axis of Coordinate System as axis of rotation.
  57. Enter the number of members to be patterned.
  58. Define the Angle between the pattern members.
  59. Execute the command.
  60. Activate the Round Tool.
  61. Fill the radius of round.
  62. Select the edges and execute the command.
  63. The fully created model is in front of you.
  64. Switch between the Shading With Edges and Shading view.
  65. Save the model file.

download-Link


Get the Model file by visiting the following link:-
http://bit.ly/2m7Haw4

Tuesday, March 18, 2014

Modelling a Hacksaw Blade (Creo Parametric 2.0)

Hacksaw Blade

In this video tutorial creation of a Hacksaw Blade is displayed. Viewers will be able to watch application of many part modelling tools like Extrude, Round, Hole, Mirror and Pattern as well as 2D sketching techniques are also shown.

 

 

Transcription of Video

  1. Start a new part file from scratch and give it a name ‘Hacksaw Blade.’
  2. Select the Top Datum plane and create a new sketch on this plane.
  3. Click the Sketch View icon. This will orient the sketching plane parallel to the screen.
  4. Close the visibility of the Datum Planes, Axis and Points etc. to make the screen clear.
  5. Pick the Centre Rectangle tool from the Sketching panel.
  6. Draw a Rectangle and apply the dimensions as displayed.
  7. As soon as the new dimensions are applied the software will automatically adjust the view of design window so that the sketch can be seen clearly.
  8. Click green check mark to finish the sketch.
  9. Activate the Extrude Tool from the Shape Panel.
  10. Select the sketch and define the depth value.
  11. Select extrude both side of the sketch equally option and execute the command.
  12. Change the colour of the part according to your wish so that it can be acknowledged easily in the design window.
  13. Activate the Reorient tool and position the model in an isometric view using navigation tools.
  14. Save this view for future reference.
  15. Save the part file.
  16. Activate the Round Tool from the Engineering Panel.
  17. Select four outer edges of the model.
  18. Define the radius of the round and execute the command.
  19. Activate the Hole tool.
  20. Select the Top Face of the model to define the Placement Reference.
  21. Enter the Diameter Value for the drilled hole.
  22. Set the offset references of the hole and fill the corresponding offset values.
  23. Select through all option and execute the command.
  24. Open the visibility of Datum Planes.
  25. Select the Hole 1 in the Model Tree and activate the Mirror Tool from the Editing Panel.
  26. Select Right Datum Plane as Mirroring Plane and execute the command.
  27. Select the top face of the model and start a new sketch on this face.
  28. Specify two references for the sketch.
  29. Draw a sketch with the help of line tool as displayed.
  30. Apply the dimensions as displayed.
  31. Click green check mark to finish the sketch.
  32. Activate the Extrude Tool and select the sketch.
  33. Flip the Depth Direction.
  34. Select Remove Material option and Through all option.
  35. Click the green check mark to apply and save the changes.
  36. Select the Extrude 2 in the Model Tree and activate the Pattern Tool from the Editing Panel.
  37. Set Direction as the type of pattern.
  38. Select the front edge of the model to define the direction of the pattern.
  39. Enter the number of members to be patterned.
  40. Define the spacing between the pattern members.
  41. Click the green check mark to apply and save the changes.
  42. So fully developed model is visible in the graphics window.

download-Link


Get the finished model file by visiting the following link :--http://bit.ly/2odNPp1