Tutorials

Shock Absorber Preload Analysis using CATIA Generative Structural Analysis (FEA)

2 0 Expert
This BND TechSource video shows how to use CATIA Generative Structural Analysis (FEA) to prove the following: 1) The spring rate will be linear when the spring has a consistent (evenly spaced) pitch and a constant diameter. 2) Preloading the spring on the coil over assembly will NOT change the rate of the spring. 3) Preloading the spring on the coil over assembly WILL affect the deflection at load (length at load) of the shock absorber. Please visit us at: https://bndtechsource.wixsite.com/home Compression Spring calculations with FEA results (Excel): https://docs.google.com/spreadsheets/d/1zuos7ku2lzUF9r2k7wINmk1g3dGYyvwg/edit?usp=sharing&ouid=114849995441101610372&rtpof=true&sd=true

Transverse Module Involute Helical Gear in CATIA V5 (manual input)

2 0 Expert
This BND TechSource video shows the steps for creating a “template” part for our Transverse Module Involute Helical Gear. This part may be modified by simply changing the parameters of any/all of the following five formulae: Fw - Face width // length parameter [Fw = input] z - number of teeth // real parameter [z = input] Tpa - Transverse Pressure Angle // angle parameter [Tpa = input] m - module // length parameter [m = input] Ca - Cylinder helix angle // angle parameter [Ca = input] Next we will look at using CATIA V5 to create the Normal Module Involute Helical Gear. Please visit us at: https://bndtechsource.wixsite.com/home Transverse Involute Helical Gear calculator (Excel): https://drive.google.com/file/d/1G4DVdNp8LdKRG4hwEWZM7URW7HT71wxn/view?usp=sharing

Normal Module Involute Helical Gear in CATIA V5 (manual input)

1 0 Expert
This BND TechSource video shows the steps for creating a “template” part for our Normal Module Involute Helical Gear. This part may be modified by simply changing the parameters of any/all of the following five formulae: Fw - Face width // length parameter [Fw = input] z - number of teeth // real parameter [z = input] Npa - Normal Pressure Angle // angle parameter [Npa = input] m - module // length parameter [m = input] Ca - Cylinder helix angle // angle parameter [Ca = input] Please comment or contact us if you would be interested in seeing how to create the Helical gears with a CATIA Macro. Please visit us at: https://bndtechsource.wixsite.com/home Normal Involute Helical Gear calculator (Excel): https://drive.google.com/file/d/1A1tVjmZr4r2D-nLRk6qzkfkMObjdl7wt/view?usp=sharing

Rear Suspension Simulation using CATIA DMU Kinematics

1 0 Expert
This BND TechSource video shows how to create Rear (5-link) Suspension Simulation using DMU Kinematics in CATIA V5. https://bndtechsource.wixsite.com/home Excel_Susp_Project_Tasks_Calculator_Metric: https://drive.google.com/file/d/1vSp_Q4G_OIpNAtLTxXBAhW5MRL0gQPZ9/view?usp=sharing Excel_Susp_Project_Tasks_Calculator_Imperial: https://drive.google.com/file/d/1fPOMbflU4RY0wI9xIM1BZw6-tRvYjkiJ/view?usp=sharing

23/6/2022

1 0 Expert
23/6/2022

Catia Product Knowledge Template

1 1 Expert
Product template made for BIW Rest and Clamp unit which is made for many possibilities. It reduces design time.

Approximate vs. Involute Gear Tooth Profile in CATIA V5

1 0 Expert
This BND TechSource video shows how to create a “template” part for an Involute Spur Gear. This part may be modified by simply changing the parameters of any/all of the following three formulae: z - number of teeth // real parameter [z = input] Rpa - Ref Pressure Angle // angle parameter [Rpa = input] m - module // length parameter [m = input] And the Undercutting issue can be resolved by introducing Profile Shift which affects the Center Distance between gears as well as adjusting the Addendum and Dedendum circles. Ad – Addendum circle // length parameter [Ad = input] Dd – Dedendum circle // length parameter [Dd = input] https://bndtechsource.wixsite.com/home Excel Involute Spur Gear Calculator with macro: https://drive.google.com/file/d/1b2gzKpBHfOakALJi1-hZfOqGt_KFxNLc/view?usp=sharing

CATIA V5 Tutorial: Beginner to advanced

1 0 Expert
CATIA V5 Tutorial: Beginner to advanced https://www.youtube.com/watch?v=9eNPYFPe8pk&list=PLTkdZKD2ZHsFsWf6kE-GIiSaLFq6tHvkb https://www.youtube.com/channel/UCQn0s06EVrZhbC6gc6DJMTw/featured https://www.youtube.com/channel/UCQn0s06EVrZhbC6gc6DJMTw/videos

CATIALOG CATIA TUTORIALS

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FOR INTERESTING ANAWESOME CATIA VIDEOS YOU WON'T FIND ANYWHERE

Way to reach the drafting menu

1 0 Expert
The way to reach the drafting menu is as follows.

Drawing a sample piece

1 0 Expert
A sample piece drawing is as follows.

Revit Elbow Family

0 0 Expert
To Learn how to create parametric Revit Elbow family follow the link. This video don't have voice over. Please don't hesitate to check out the content. Do share, Like and Subscribe https://www.youtube.com/watch?v=El-NSQVx6NQ&list=PLM7hlfS3Tn5hE4WqbEfhKdgeEVoIYjO37 If you need one on one Training session or any other BIM consulting services feel free to contact to contact@bimmodeller.com

Rendu REVIT

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Le processus de rendu comporte sept étapes que nous allons détailler dans ce chapitre : 1. Création d’une vue 3D. 2. Définition des matériaux composant les différents objets présents dans la scène. 3. Définition des sources d’éclairage (soleil, luminaires…). 4. Ajout d’éléments d’environnement comme des plantes, des personnages ou des véhicules. 5. Choix des paramètres de rendu (qualité, résolution). 6. Rendu. 7. Enregistrement de l’image.

Torsion Bar Analysis using CATIA Generative Structural Analysis (FEA)

0 0 Expert
This BND TechSource video shows how to use CATIA Generative Structural Analysis (FEA) to prove shape change affects the spring rate of a torsion bar. Please visit us at: https://bndtechsource.wixsite.com/home Torsion bar calculations with FEA results (Excel): https://docs.google.com/spreadsheets/d/1fcnP6UekxEIm6hFiCFfc2Qd9F2D60D7H/edit?usp=sharing&ouid=114849995441101610372&rtpof=true&sd=true