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TURBOFAN | TURBINE IN CATIA
Avnish Kumar (अवनीश कुमार )
in
Assemblies
44
12
Expert
The Rolls-Royce Trent 900 is a high bypass turbofan produced by Rolls-Royce plc to power the Airbus A380, competing with the Engine Alliance GP7000. Initially proposed for the Boeing 747-500/600X in July 1996, this first application was later abandoned but it was offered for the A3XX, launched as the A380 in December 2000.
CATIA
autocad
solidwork
v6
v5
catia
turbofan
turbine
V6 Engine Design in Catia
Avnish Kumar (अवनीश कुमार )
in
Assemblies
28
6
Expert
V6 Engine Design in Catia | Advanced Assembly | CATIA TUTORIALS Vedio Links-https://www.youtube.com/watch?v=IoZoQKwlWtA&t=5s A V6 engine is a six-cylinder piston engine where the cylinders share a common crankshaft and are arranged in a V configuration. The first V6 prototype engine was produced in 1906, however it took until 1950 for the first automotive V6 engine to reach production. In the past 20 to 30 years, the V6 layout has become the most common layout for six-cylinder automotive engines
CATIA
step
assmbly
v6
v5
catia
enigine
engine
automobile
Back door design and Engineering Feature
Nishanth kumar
in
Assemblies
17
4
Intermediate
This project aims to design a sheet metal panel for a car's backdoor using provided skin data while adhering to design rules and guidelines. The backdoor serves various functions, including rear coverage, visibility, and storage. The design process involves selecting the backdoor type (top-mounted, side-mounted, or bottom-mounted), choosing materials (steel or aluminum), and creating components like outer and inner panels, hinges, and reinforcements. The design is based on factors like rear visibility, sealing, structural support, crash regulations, and joining techniques. The outcome is a well-designed backdoor assembly that considers both functionality and aesthetics.
CATIA
dfm
car parts
exterior trim
catia
surface design
sheet meatl
car back door
back door
Assembly Boolean in CATIA
Ananth Narayan
in
Assemblies
17
2
Intermediate
When one thinks how to match thread profile of bolt to the hole to avoid minor clash, then here is the tutorial. This method can be used for other application where you don't need much work.
CATIA
boolean
catia
Sheet Metal Rolling Machine
Avnish Kumar (अवनीश कुमार )
in
Assemblies
16
1
Expert
Sheet metal rolling machine
CATIA
solidwork
v6
catia
V6 ENGINE IN CATIA TUTORIALS
Avnish Kumar (अवनीश कुमार )
in
Assemblies
11
5
Expert
A V6 engine is a six-cylinder piston engine where the cylinders share a common crankshaft and are arranged in a V configuration. The first V6 prototype engine was produced in 1906, however it took until 1950 for the first automotive V6 engine to reach production. In the past 20 to 30 years, the V6 layout has become the most common layout for six-cylinder automotive engines.
CATIA
How to Build Your Own Quadcopter Drone at Home for Beginners- Part 2
RAMBO TECHNOLOGY SERVICES AND SOLUTIONS
in
Assemblies
8
0
Beginner
BUILD A QUADCOPTER IN JUST 5 EASY STEPS. THE STEPS ARE EASY TO UNDERSTAND WITH MULTIPLE PICTURES AT EACH AND EVERY STEP. ALSO THE REQUIRED COMPONENTS DETAIL GIVIEN IN THE YOUTUBE VIDEO DESCRIPTION. The quadcopter shown above is a simple type of multicopter, with each motor/propeller rotating in opposite directions from the two motors on either side of it (i.e. motors at opposite corners of the frame rotate in the same direction). A quadcopter can control its roll and pitch rotation by speeding up two motors on one side and slowing down the other two. For example, if the quadcopter wants to roll to the left, it will speed up the motors on the right side of the frame and slow down the two on the left. Similarly, if it wants to spin forward, it speeds up the rear two motors and slows down the front two. The copter can turn left or right by speeding up two motors that are diagonal to each other and slowing down the other two. Horizontal movement is accomplished by temporarily speeding up/decelerating some of the motors so that the vehicle leans in the desired direction of travel and increases the overall thrust of all the engines so that the vehicle moves forward. Generally, the more the vehicle leans, the faster it travels. Altitude is controlled by accelerating or decelerating all motors simultaneously. PART 1 LINK: https://youtu.be/19V4oBooOhU PART 3 LINK: It will be uploaded soon... Warning:--- This video is for educational purposes only. Do not attempt to recreate the actions in this video as they are dangerous if not performed correctly and may result in serious injury. If you are confident on the information shown in this video, you are responsible for the results. Have fun, but always think ahead and remember that every project you attempt is at your own risk. For more details contact email: rambo.tss19@gmail.com WhatsApp:7548875553
CATIA
fpvdrone
fpv
automobile
vtoldrone
drone
uav
vtol
How to Build Your Own Quadcopter Drone at Home for Beginners- Part 1
RAMBO TECHNOLOGY SERVICES AND SOLUTIONS
in
Assemblies
8
0
Beginner
BUILD A QUADCOPTER IN JUST 5 EASY STEPS. THE STEPS ARE EASY TO UNDERSTAND WITH MULTIPLE PICTURES AT EACH AND EVERY STEP. ALSO GIVEN REQUIRED COMPONENTS DETAILS IN THE YOUTUBE VIDEO DESCRIPTION. The quadcopter shown above is a simple type of multicopter, with each motor/propeller rotating in opposite directions from the two motors on either side of it (i.e. motors at opposite corners of the frame rotate in the same direction). A quadcopter can control its roll and pitch rotation by speeding up two motors on one side and slowing down the other two. For example, if the quadcopter wants to roll to the left, it will speed up the motors on the right side of the frame and slow down the two on the left. Similarly, if it wants to spin forward, it speeds up the rear two motors and slows down the front two. The copter can turn left or right by speeding up two motors that are diagonal to each other and slowing down the other two. Horizontal movement is accomplished by temporarily speeding up/decelerating some of the motors so that the vehicle leans in the desired direction of travel and increases the overall thrust of all the engines so that the vehicle moves forward. Generally, the more the vehicle leans, the faster it travels. Altitude is controlled by accelerating or decelerating all motors simultaneously. PART 2 LINK: https://www.youtube.com/watch?v=QFeuGz-820Y Warning:--- This video is for educational purposes only. Do not attempt to recreate the actions in this video as they are dangerous if not performed correctly and may result in serious injury. If you are confident on the information shown in this video, you are responsible for the results. Have fun, but always think ahead and remember that every project you attempt is at your own risk. For more details contact email: rambo.tss19@gmail.com
CATIA
fpvdrone
fpv
vtoldrone
drone
uav
vtol
Boolean Operations & Powercopy in CATIA
DHANASEKAR VINAYAGAMOORTHY
in
Assemblies
7
0
Expert
This tutorial contains explanations for Boolean operations & Powercopy in CATIA
CATIA
powercopy
trimming
intersecting
subtract
add
boolean
Clash Analysis In CATIA V5
Innovative Mechanical Designs
in
Assemblies
6
0
Intermediate
In this video i have explained clash detection analysis in CATIA V5 assembly design workbench.
CATIA
catiaclashanalysis
catiaassemblydesign
v5
catia
design of drilling machine
auto design solutions
in
Assemblies
6
0
Intermediate
how to design the drilling machine in CATIA
CATIA
catia
machine
drilling
Connecting Rod (part-2)
Aswinraj S
in
Assemblies
4
1
Expert
This video is How to Assemble the connecting rod parts in catia v5
CATIA
part
engine
rod
connecting
mechanical
assembly
catia
Learn catia V5 Tutorials for beginners #4
mecha engineering
in
Assemblies
4
2
Intermediate
In this channel you will be going to learn what is mean by part design, assembly design and dmu kinematics
CATIA
kinematics
dmu
assembly
design
part
catia
Intro to Dynamic Simulation CATIA 3DX [Part 1]
Maxime Chagnot
in
Assemblies
4
0
Beginner
Hello 3DExperience Fans :) I took a 3-month break from YouTube to get fresh new ideas and now I am back to provide you new videos and tutorial for 3DExperience! Today's video is an introduction to Dynamic Simulation on CATIA 3DExperience R2020x. In first part we will talk about friction coefficient in contacts. First you will learn how to create a mechanism, add weight and create contacts between component. Then you will create a dynamic scenario in Mechanical Systems Experience. You will be able to create a gravity excitation and compute the dynamic simulation. The case of the simulation is a cube sliding on a ramp. You can play with the angle of the ramp and the friction coefficient to obtain different results in the dynamic simulation. Enjoy and remember to stay home! Hope this video will be helpful for you to learn more about 3DExperience :D Find the model on this GrabCad link Please Like, Comment, Share and Subscribe ;)
CATIA
video
contacts
friction
ramp
sliding
gravity
simulation
dynamic
Catia course Free For Beginners
Amit Mourya
in
Assemblies
4
0
Beginner
Our Facebook Page : https://www.facebook.com/EngineeringExplanation Our website: www.engineerknow.com FREE COURSE LINK SOLIDWORKS BEGINNER TO ADVANCE: https://youtu.be/iYYHmvnlSQo Solidworks animation and Motion analysis udemy course link : https://www.udemy.com/course/solidworks-animation-and-motion-analysis/?referralCode=8F40E7F83856CFF0C5FE [if you need discount coupon message me on my facebook page] [FREE]SOLIDWORKS SIMULATION COURSE FOR BEGINNERS: https://youtu.be/XJ_BcNbx_SE our new Youtube channel : Engineerknow : [ for understanding how the machine works and other engineering thing] https://www.youtube.com/channel/UCU5LqyPgX7E8ri4G8ag9xZQ Mechanical Coder : [Coding in Python for mechanical engineers] https://www.youtube.com/channel/UC__7TWjURc7KnChqoQrAYoQ for INDIAN ONLY : https://www.youtube.com/channel/UCDws0ifI1mdQHgJWUSBzrOA Time Stamp 00:00 Introduction 01:07 Part Design and sketch introduction 01:58 User Interface Introduction 04:02 Under define , over define and fully define sketch
CATIA
catia assembly tutorial
catia assembly tu
catia full course english
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catia free course
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cad knowledge
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