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#Cadlearning Reel by @cadcraft101 - [NEW Video Uploaded on YT๐Ÿ”ฅโš™๏ธ]
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Watch the full tutorial video on YouTube Channel!
Follow me on Instagram: @cadcraft101 
Youtube Tutorials ๐Ÿ‘‰ CA
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@cadcraft101
[NEW Video Uploaded on YT๐Ÿ”ฅโš™๏ธ] โ€”โ€”โ€”โ€”โ€”โ€”โ€” Watch the full tutorial video on YouTube Channel! Follow me on Instagram: @cadcraft101 Youtube Tutorials ๐Ÿ‘‰ CAD Craft โ€”โ€”โ€”โ€”โ€”โ€”โ€” How to Make a Scotch Yoke Engine Mechanism in CATIA V5 | CATIA DMU Kinematics Motion Simulation Tutorial โš™๏ธ The Scotch Yoke engine mechanism is a mechanical system used to convert rotational motion into linear reciprocating motion. It is commonly studied in mechanical engineering because it provides a simple and efficient method for transforming circular movement from a rotating crank into straight-line motion. #CATIA #CATIAV5 #DMUKinematics #ScotchYoke #ScotchYokeEngine MechanicalMechanism MotionSimulation EngineeringDesign CADTutorial
#Cadlearning Reel by @biwinside_design - โœ… Cable Joint Motion Simulation in CATIA V5 | DMU Kinematics Motion Analysis.

Sharing a motion simulation from my CATIA V5 learning journey demonstra
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@biwinside_design
โœ… Cable Joint Motion Simulation in CATIA V5 | DMU Kinematics Motion Analysis. Sharing a motion simulation from my CATIA V5 learning journey demonstrating the working principle of a Cable Joint created using DMU Kinematics. This simulation showcases how cable joint constraints control movement between connected components, allowing coordinated motion while maintaining defined limits and degrees of freedom within the assembly environment. ๐Ÿ”ง Key highlights from this simulation: โœ… Cable joint mechanism definition โœ… Controlled motion behavior demonstration โœ… Degree of Freedom (DOF) control and validation โœ… Mechanism creation and constraint hierarchy โœ… Real-time motion analysis using DMU Kinematics โœ… Practical understanding of cable-driven systems This exercise enhanced my understanding of motion control systems, assembly kinematics, and simulation-driven design workflows. . . . . #CATIA #DMUKinematics #CableJoint #MotionSimulation #MechanicalDesign CADLearning EngineeringDesign MechanicalEngineering SimulationEngineering
#Cadlearning Reel by @cadcraft101 - The Quick Return Mechanism โš™๏ธ [Full Video on YT๐Ÿ”ฅ]

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Watch the full tutorial video on YouTube Channel!
Follow me on Instagram: @cadcraft101 
Yo
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@cadcraft101
The Quick Return Mechanism โš™๏ธ [Full Video on YT๐Ÿ”ฅ] โ€”โ€”โ€”โ€”โ€”โ€”โ€” Watch the full tutorial video on YouTube Channel! Follow me on Instagram: @cadcraft101 Youtube Tutorials ๐Ÿ‘‰ CAD Craft โ€”โ€”โ€”โ€”โ€”โ€”โ€” #CATIA #CATIAV5 #DMUKinematics #MechanismSimulation #MotionAnalysis MechanicalEngineering EngineeringDesign CADTutorial 3DAssembly
#Cadlearning Reel by @biwinside_design - Y Fork commonly used in mechanical linkages and motion transfer systems.
Started with the base block, then created symmetric arms with precise spacing
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@biwinside_design
Y Fork commonly used in mechanical linkages and motion transfer systems. Started with the base block, then created symmetric arms with precise spacing to accommodate a pin connection. Focused on maintaining alignment, concentricity, and dimensional accuracy between the fork ends. Applied proper fillets to reduce stress concentration and improve the realistic mechanical look. #CATIA #MechanicalDesign #Clevis #CADModeling #DesignEngineering 100DaysOfCATIA
#Cadlearning Reel by @caddcentrevadapalaniporur - Our student developing CAM skills using Siemens NX CAM software

#caddcentrevadapalani #caddcentre #mechanicalcaddesign #solidworks #nxcam
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@caddcentrevadapalaniporur
Our student developing CAM skills using Siemens NX CAM software #caddcentrevadapalani #caddcentre #mechanicalcaddesign #solidworks #nxcam
#Cadlearning Reel by @biwinside_design - โœ… DMU Kinematics | Four Bar Link Mechanism Motion Simulation & Kinematic Validation | CATIA V5

Sharing a motion simulation from my CATIA V5 learning
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@biwinside_design
โœ… DMU Kinematics | Four Bar Link Mechanism Motion Simulation & Kinematic Validation | CATIA V5 Sharing a motion simulation from my CATIA V5 learning journey demonstrating the working principle of a Four Bar Link Mechanism developed using DMU Kinematics. This simulation highlights how coordinated joint constraints and link relationships enable controlled motion transfer within the mechanism. The model demonstrates realistic kinematic behavior where rotational input drives synchronized motion across connected links. ๐Ÿ”ง Key highlights from this simulation: โœ… Four bar linkage motion behavior demonstration โœ… Rotational motion transfer through multiple links โœ… Revolute joint interaction and constraint validation โœ… Degree of Freedom (DOF) control and mechanism testing โœ… Real-time kinematic simulation workflow โœ… Motion path visualization and linkage synchronization This project strengthened my understanding of motion transmission systems, linkage coordination, and simulation-based mechanism validation. . . . . #CATIA #DMUKinematics #FourBarMechanism #MotionSimulation #MechanicalDesign CADLearning EngineeringDesign MechanicalEngineering SimulationEngineering MechanismEngineering KinematicsDesign
#Cadlearning Reel by @biwinside_design - โœ… Reverse Engineering Series - Part 4 | IC Engine Piston Modeling | CATIA V5

Continuing my Reverse Engineering learning series, this project focuses
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@biwinside_design
โœ… Reverse Engineering Series โ€“ Part 4 | IC Engine Piston Modeling | CATIA V5 Continuing my Reverse Engineering learning series, this project focuses on recreating an Internal Combustion Engine (IC) Piston using CATIA V5, following structured OEM-standard CAD modeling practices. Pistons are one of the most critical components in internal combustion engines, responsible for converting combustion energy into mechanical motion. They operate inside the engine cylinder and transfer the generated force to the connecting rod through the piston pin. In this exercise, I recreated the piston geometry including the piston crown, ring grooves, skirt, and wrist pin hole using CATIA V5 Part Design tools. The model was developed through a structured parametric workflow ensuring proper feature hierarchy and design organization. . . ๐Ÿ“Œ Key Modeling Operations Used โœ” Reference plane and axis system creation โœ” Sketch creation and dimensional constraints โœ” Pad and revolve operations for base geometry โœ” Groove creation for piston rings โœ” Pocket operations for wrist pin hole โœ” Edge fillet application for smooth transitions โœ” Feature tree organization for structured modeling . . ๐Ÿ“Œ Industry Importance Engine pistons are essential in automotive powertrains because they:- โ€ข Convert combustion pressure into mechanical motion โ€ข Transfer force to the crankshaft through the connecting rod โ€ข Maintain compression within the engine cylinder โ€ข Support piston rings for sealing and lubrication โ€ข Enable efficient power generation in internal combustion engines . . ๐Ÿ“š Key Learning Outcomes Through this project I improved my understanding of:- โ€ข Reverse engineering workflow in CATIA V5 โ€ข Parametric CAD modeling techniques โ€ข Automotive engine component design fundamentals โ€ข Feature-based modeling and design tree organization โ€ข Mechanical component reconstruction from reference geometry Continuing to strengthen my knowledge in automotive design, mechanical engineering, and CAD modeling workflows. . . . . #CATIA #CATIAV5 #ReverseEngineering #CADModeling #CADDesign #MechanicalDesign #AutomotiveEngineering #AutomotiveDesign #ICEngine #EngineDesign #ProductDesign #MechanicalEngineering #ParametricDesi
#Cadlearning Reel by @metacae_chennai - ๐‚๐€๐ƒ ๐ฏ๐ฌ. ๐‚๐€๐„: ๐“๐ก๐ž ๐ฌ๐ข๐›๐ฅ๐ข๐ง๐  ๐ซ๐ข๐ฏ๐š๐ฅ๐ซ๐ฒ ๐ญ๐ก๐š๐ญ ๐š๐œ๐ญ๐ฎ๐š๐ฅ๐ฅ๐ฒ ๐ ๐ž๐ญ๐ฌ ๐ฌ๐ญ๐ฎ๐Ÿ๐Ÿ ๐๐จ๐ง๐ž! 

 The engineering workflow in a nut
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@metacae_chennai
๐‚๐€๐ƒ ๐ฏ๐ฌ. ๐‚๐€๐„: ๐“๐ก๐ž ๐ฌ๐ข๐›๐ฅ๐ข๐ง๐  ๐ซ๐ข๐ฏ๐š๐ฅ๐ซ๐ฒ ๐ญ๐ก๐š๐ญ ๐š๐œ๐ญ๐ฎ๐š๐ฅ๐ฅ๐ฒ ๐ ๐ž๐ญ๐ฌ ๐ฌ๐ญ๐ฎ๐Ÿ๐Ÿ ๐๐จ๐ง๐ž! The engineering workflow in a nutshell: 1๏ธโƒฃ Visualize 2๏ธโƒฃ Model 3๏ธโƒฃ Simulate 4๏ธโƒฃ Succeed Master the cycle with METACAE. ๐Ÿ† Whether youโ€™re a CAD specialist or a CAE expert, collaboration is the secret sauce to a perfect product . . . . . . #engineeringlife #mechanicalengineer #engineers #simulation #CAE#solidworks
#Cadlearning Reel by @educadd_yelahanka_bengaluru - NX CAD | CATIA | SOLIDWORKS | CREO Training with 100% Placement Assistance

Learn industry-leading mechanical design software Siemens NX, CATIA, SOLID
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@educadd_yelahanka_bengaluru
NX CAD | CATIA | SOLIDWORKS | CREO Training with 100% Placement Assistance Learn industry-leading mechanical design software Siemens NX, CATIA, SOLIDWORKS, and PTC Creo at EduCADD โ€“ THINK Works Infotech, Yelahanka New Town, Bengaluru. ๐ŸŽ“ Industry-oriented training ๐Ÿ’ป Real-time projects ๐Ÿ“œ Certification ๐Ÿ’ผ Placement assistance โฐ Flexible batch timings ๐Ÿ“ Yelahanka New Town, Bengaluru ๐Ÿ“ž 74116 68249 | 74116 68259 Start your Mechanical Design Career Today! ๐Ÿš€ #nxcad #catia #solidworks #creo #educaddyelahanka
#Cadlearning Reel by @cadcraft101 - [Full Video on YT๐Ÿ”ฅโš™๏ธ]
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Watch the full tutorial video on YouTube Channel!
Follow me on Instagram: @cadcraft101 
Youtube Tutorials ๐Ÿ‘‰ CAD Craft
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@cadcraft101
[Full Video on YT๐Ÿ”ฅโš™๏ธ] โ€”โ€”โ€”โ€”โ€”โ€”โ€” Watch the full tutorial video on YouTube Channel! Follow me on Instagram: @cadcraft101 Youtube Tutorials ๐Ÿ‘‰ CAD Craft โ€”โ€”โ€”โ€”โ€”โ€”โ€” CATIA DMU Kinematics | How to Model a Scotch Yoke Mechanism in CATIA V5 | Motion Simulation Tutorial โš™๏ธ The Scotch Yoke mechanism is a classic mechanical system used to convert rotary motion into linear reciprocating motion. It consists of a rotating crank or disk connected to a sliding yoke that moves back and forth in a straight line. As the crank rotates, the pin attached to the disk slides inside the slot of the yoke, producing smooth linear motion. #CATIA #CATIAV5 #DMUKinematics #ScotchYoke MechanicalMechanism MotionSimulation EngineeringDesign CADTutorial MechanicalEngineering MachineDesign Kinematics AutomationMechanism IndustrialEngineering MechanismDesign
#Cadlearning Reel by @cadx.studio - Mechanical engineers CAD  is changing.

Instead of
Sketch โ†’ Extrude โ†’ Pattern โ†’ Repeat

You can now simply describe the part.

CadXStudio generates me
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@cadx.studio
Mechanical engineers CAD is changing. Instead of Sketch โ†’ Extrude โ†’ Pattern โ†’ Repeat You can now simply describe the part. CadXStudio generates mechanical components in seconds. Flanges. Brackets. Pulleys. Mounts. All from a simple prompt. What part should we generate next? #cad #ai #solidworks #mechanicalengineering #tech

โœจ #Cadlearning Discovery Guide

Instagram hosts thousands of posts under #Cadlearning, creating one of the platform's most vibrant visual ecosystems. This massive collection represents trending moments, creative expressions, and global conversations happening right now.

#Cadlearning is one of the most engaging trends on Instagram right now. With over thousands of posts in this category, creators like @educadd_yelahanka_bengaluru, @cadx.studio and @cadcraft101 are leading the way with their viral content. Browse these popular videos anonymously on Pictame.

What's trending in #Cadlearning? The most watched Reels videos and viral content are featured above. Explore the gallery to discover creative storytelling, popular moments, and content that's capturing millions of views worldwide.

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Analysis of 12 reels

โœ… Moderate Competition

๐Ÿ’ก Top performing posts average 24.8K views (2.9x above average). Moderate competition - consistent posting builds momentum.

Post consistently 3-5 times/week at times when your audience is most active

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๐Ÿ’ก Top performing content gets over 10K views - focus on engaging first 3 seconds

โœ๏ธ Detailed captions with story work well - average caption length is 686 characters

๐Ÿ“น High-quality vertical videos (9:16) perform best for #Cadlearning - use good lighting and clear audio

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