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involute
×
Tutorial: How to model involute gears in SolidWorks and show design intent.
Steen Winther
in
Design & CAD
85
23
Beginner
The model from this tutorial is found here: http://grabcad.com/library/involute-gear-design-from-scratch-1
SOLIDWORKS
solidworks
gear
involute
Involute profile in splines (1)
Carlos Soler
in
Theory
30
0
Beginner
This is a short description of how involute profiles are used in splines like DIN 5480, DIN 5482, ISO 4256, and ANSI 92.1
4156
iso
5482
5480
din
serration
spline
involute
Tutorial : How to model involute gear in Creo 3.0
Milan Ilić
in
Modeling
18
3
Beginner
How to model involute (evolvent) gear in Creo 3.0
PTC Creo Parametric
model
engineer
pro
parametric
creo
tutorial
evolvent
involute
gear
Involute profile in splines (2)
Carlos Soler
in
Theory
12
12
Beginner
This is a continuation of the previous tutorial https://grabcad.com/tutorials/involute-profile-in-splines-1
involute
spline
serration
din
5480
5482
iso
4156
Involute profile in splines (3)
Carlos Soler
in
Theory
9
0
Beginner
This is a continuation of the previous tutorial Involute profile in splines (2) https://grabcad.com/tutorials/involute-profile-in-splines-2
ansi b921
ansi
seration
involute
spline
How to model Involute Gear in Solidworks?
Andreas Gkertsos
in
Design & CAD
8
2
Beginner
these are the steps...
SOLIDWORKS
solidworks
gear
model
involute
competition
tutorial
teeth
challenge
how
Spur Gear Involute Gear Teeth Profile
AMAN KHALE
in
Modeling
2
0
Beginner
In this tutorial, I will help you in making involute gear teeth for a spur gear using parameters and relations. I have designed the gear in Catia V5R16 using involute curve equations in "LAW" tool available in knowledge toolbar in Catia. https://www.youtube.com/watch?v=RU-f1E3sTSI
CATIA
catia
relations
parameters
profile
tooth
involute
gear
spur
How to create Spur Gear in fusion 360
N. Kumar
in
Modeling
2
0
Beginner
How can we create fusion 360 in fusion 360. Terminology used for gear are as follows Module(m) =PCD/No. of teeth=10 No of teeth(N) =26 Addendum(add) = 10 mm Dedendum (Ded)= 1.125XADD=11.25 PCD = m X no. of teeth = 10X26=260 Outside dia= PCD+2Xadd = 260+20 =280mm Inside dia = PCD -2 X Ded = 260 -2 X11.25= 237.5 mm Circular pitch = π X PCD /N = π X 260/26=31.4mm Tooth thickness = CP/2= 31.4/2 = 15.7 mm Pressure Angle = 20 degree
Fusion 360
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profile
involute
helical
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