Showing posts with label Bevel Gear. Show all posts
Showing posts with label Bevel Gear. Show all posts

Saturday, March 10, 2018

Autodesk Inventor Modelling and Animation Tutorial 'Bevel Gear'

Autodesk Inventor Modelling and Animation Tutorial--'Bevel Gear'

Serial No. 295

In this video, we will demonstrate how to create Bevel Gear & Pinion with the help of Autodesk Inventor Software later we will create the assembly of the aforesaid part and demonstrate how to animate it using Dynamic Simulation.

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

Saturday, December 31, 2016

Bevel Gear with Animation (Solid Edge ST9 Tutorial)

Bevel Gear with Animation

Serial No. 17

Bevel Gear with Animation (Solid Edge ST9 Tutorial)

This tutorial has been picked up from Solid Edge ST9 Help file.

This tutorial gives step by step instructions to design and create a model of bevel gear. In this Tutorial you have learned how to use Bevel Gear Module to design and create a 3D model of bevel gear and pinion for the given inputs by using Engineering Reference Application and animate it by ‘Rotational Motor’ command.

 

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Click the following link to get the model file: - http://bit.ly/2INn3LV

Monday, May 2, 2016

Bevel Gear-Motion Simulation (Video Tutorial) Siemens NX 10

Bevel Gear

Serial No. 19

Bevel Gear - Motion Simulation (Video Tutorial) Siemens NX 10

In this video we will describe, how to simulate the ‘Bevel Gear’ with different joints, Gear joint, Revolute joint and so on in Motion Simulation Application Environment.

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Click the following link to get the model file: -http://bit.ly/359dmAO

Friday, November 21, 2014

Bevel Gear with Animation (Video Tutorial) SolidWorks 2014

Bevel Gear with Animation

Serial No. 39

Bevel Gear with Animation (Video Tutorial) SolidWorks 2014

In this video, we create Bevel Gear with the aid of SolidWorks Design Library Tool Box and Animate it by Motion Study.

 

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

Wednesday, November 20, 2013

Bevel Gear-Dynamic Simulation-Autodesk Inventor 2012 (with caption and audio narration)

Bevel Gear-Dynamic Simulation

 

Serial No. 5

Bevel Gear-Dynamic Simulation-Autodesk Inventor 2012 (with caption and audio narration)

 

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Click the following link to get the model file:-  http://bit.ly/2m1eLaM


 

 Transcription of Video

  1. Create a ‘New Assembly’ and save it with the name ‘Bevel Gear–Dynamic Simulation’.
  2. Select Place component from the marking menu and place the Bevel Gear in the Assembly.
  3. Align the Gear in correct position by using View Cube.
  4. Select the Gear in the Design window, right click and deselect Grounded from the context menu.
  5. At present there are six Degrees of Freedom in Gear and it can be moved in any direction in the Assembly.
  6. Open the visibility of Z Axis of Assembly and Z Axis of Gear from the Browser Bar and then apply a Mate Constraint between them.
  7. Apply another Mate Constraint between Centre point of the Assembly and Top point of the Gear.
  8. Now this time only one Degrees of Freedom is left and Gear can be moved only on its Z Axis.
  9. Select Place component from the marking menu and place the Pinion in the Assembly.
  10. Open the visibility of Y Axis of Assembly and Z Axis of Pinion from the Browser Bar and then apply a Mate Constraint between them.
  11. Apply a Mate Constraint between Top Point of Assembly and Centre Point of Pinion from the Browser Bar.
  12. Activate the Motion Constraint, first select the top face of Pinion and then top face of Gear. In the Ratio input box, enter the value 23/57 and click Ok.
  13. Set the browser from Assembly View to Modeling View using the toggle at the top of the browser.
  14. Open the visibility of Pitch Diameter of Gear and Pitch Diameter of Pinion.
  15. Once again, check the Degrees of Freedom of gear and pinion in the assembly, this time both the gears are rotating on their own Axis.
  16. Activate the Dynamic Simulation Tool from the Begin Panel of Environments Tab.
  17. Activate Insert Joint from the Marking menu.
  18. Select ‘Rolling: Cone on Cone’ from the drop down menu of Insert Joint dialog box.
  19. In the Insert Joint dialog box, select Pitch Diameter of Pinion in Component 1 and select Pitch Diameter of Gear in Component 2. Click Ok.
  20. Select Revolution:2 joint in the Browser under the Standard Joints folder, right click and select Properties from the context menu.
  21. Click dof 1 (R) tab and select Edit imposed motion button and check the Enable imposed motion option.
  22. Click the arrow to expand the input choices, and click Constant Value.
  23. Enter the value 360 deg/s and click Ok.
  24. Close the visibility of Pitch diameter of Bevel Gear and Pinion.
  25. In Simulation Player fill the value 1000 in the Images field area.
  26. Clear the screen by activating the Clean Screen command.
  27. Click Run in the Simulation Player to display motion in Bevel Gear and Pinion.

Bevel Gear-Drive Constraint-Autodesk Inventor 2012 (with caption and audio narration)

Bevel Gear-Drive Constraint

 

Serial No. 4

Bevel Gear-Drive Constraint-Autodesk Inventor 2012 (with caption and audio narration)

In this video, we will demonstrate how to create the 'Bevel Gear and Pinion' with the help of 'Bevel Gears Component Generator' command in the assembly. Application of the different type of mates in the assembly environment for creating the animation has been implemented through 'Drive Constraints' command.

 

download-Link



Click the following link to get the model file:-  http://bit.ly/2nyXDK4


 

 Transcription of the Video

  1. Create a ‘New Assembly’ and save it with the name ‘Bevel Gear - Drive Constraint’.
  2. Hold the Ctrl key, and click the Bevel Gear tool on the Power Transmission panel of the Design tab.
  3. The Bevel Gears Component Generator dialog box will open with its default values. Click ok.
  4. Click anywhere in the Design Window, to place the Bevel Gear 2 and Bevel Gear 1.
  5. Align the model in correct position by using View Cube.
  6. Make the Bevel Gear Assembly flexible from the Browser Bar.
  7. Apply a Mate Constraint between Z Axis of Bevel Gear 2 and the Y Axis of the Assembly.
  8. Place a Mate Constraint between Centre Point of Assembly and Top Point of Bevel Gear 2.
  9. Place another Mate Constraint between Z Axis of Assembly and Z Axis of Bevel Gear 1.
  10. Open the visibility of XZ Plane of Bevel Gear 2.
  11. Place an Angle Constraint between YZ Plane of Assembly and previously opened XZ Work Plane of Bevel Gear 2. In the solution field area, select Directed Angle option.
  12. Turn off the visibility of Work Plane to make the screen clear.
  13. Set the browser from Assembly View to Modeling View using the toggle at the top of the browser.
  14. Select the Angle Constraint in the Browser and change its name as ‘Drive’ by clicking twice slowly.
  15. Right click the Drive Constraint and select Drive Constraint Tool from the context menu.
  16. In the Drive Constraint dialog box, set the End value to 360 deg.
  17. Expand the dialog box and the set the value for Increment 0.25 deg.
  18. Clear the screen by activating the Clean Screen command, Click the Forward Button to display motion in Bevel Gear 2 and Bevel Gear 1.