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Mechanical Engineering Design
Kenya
Приєднався 16 бер 2020
Mechanical Engineers Design power-producing machines such as electric generators, Internal Combustion Engines, Steam and gas turbines. They also design machines, such as refrigeration and air-conditioning systems and Machines used inside the buildings, such as elevators and escalators.
As a mechanical engineer, you also need to stay up to date with the ever growing technology. This channel will cover all areas related to design in Mechanical Engineering field.
Subscribe to my UA-cam channel to support me and visit my social media pages below to grow your knowledge.
All the best in your endeavors.
As a mechanical engineer, you also need to stay up to date with the ever growing technology. This channel will cover all areas related to design in Mechanical Engineering field.
Subscribe to my UA-cam channel to support me and visit my social media pages below to grow your knowledge.
All the best in your endeavors.
AUTOCAD Elbow joint-Square Cross Section Practice Tutorial for beginners
Here is the step-by-step procedure for creating the 3D elbow model with flanges at both ends:
Create the Flange Base (Top Plane)
Start by drawing a square on the Top Plane (XY Plane) with dimensions 50mm x 50mm. Inside this square, create a circle at the center with a diameter of 24mm. This circle will represent the internal hole of the elbow. Then, extrude the square (with the circle inside) to a thickness of 5mm to form the flange. The flange will have a thickness of 5mm.
Create the Elbow Profile
Switch to the Right Plane (XZ Plane). Draw a quarter-circle profile with an outer radius of 50mm and an inner radius of 24mm. This profile represents a hollow elbow, with a wall thickness of 3mm.
Extrude the Elbow Profile
Extrude the quarter-circle profile along the X-axis to form the 3D elbow. The extrusion should create a hollow section of the elbow with a wall thickness of 3mm and an internal diameter of 24mm. The extrusion should match the desired length of the elbow.
Position the Elbow to Align with the Flange
Align the extruded elbow with the flange. Ensure the center of the elbow aligns with the center of the internal hole in the flange. The elbow should be extruded along the right-hand side (positive X direction), facing the right side.
Add the Flange Holes
On the top and bottom faces of the flange (the 50mm x 50mm square), create four circles with a diameter of 5mm. Position these circles at the corners of a square, with a side length of 41mm, inside the flange. Extrude the circles to cut through the flange, creating holes with a 5mm diameter.
Copy the Elbow
Once the first elbow is created, copy the entire elbow part, including the flange, to produce a second identical part.
Rotate and Position the Second Elbow Part
Select the second elbow part and use the Rotate command. Rotate the second part 90 degrees around the Z-axis to place it perpendicular to the first elbow part.
Join the Two Elbow Parts
Align the two elbow parts at the ends so that they meet at a 90-degree angle. Use the Join command to combine the two parts into a single, connected 3D model.
Finalize the Model
Review the model for accuracy. Ensure that both elbows have flanges at both ends, the elbow has a wall thickness of 3mm, the flanges have a thickness of 5mm, and the internal hole of the elbow is 24mm in diameter. Verify that the flange holes are 5mm in diameter and are placed in a square pattern with a 41mm spacing. Double-check that the two parts of the elbow are properly rotated and joined at a 90-degree angle.
Create the Flange Base (Top Plane)
Start by drawing a square on the Top Plane (XY Plane) with dimensions 50mm x 50mm. Inside this square, create a circle at the center with a diameter of 24mm. This circle will represent the internal hole of the elbow. Then, extrude the square (with the circle inside) to a thickness of 5mm to form the flange. The flange will have a thickness of 5mm.
Create the Elbow Profile
Switch to the Right Plane (XZ Plane). Draw a quarter-circle profile with an outer radius of 50mm and an inner radius of 24mm. This profile represents a hollow elbow, with a wall thickness of 3mm.
Extrude the Elbow Profile
Extrude the quarter-circle profile along the X-axis to form the 3D elbow. The extrusion should create a hollow section of the elbow with a wall thickness of 3mm and an internal diameter of 24mm. The extrusion should match the desired length of the elbow.
Position the Elbow to Align with the Flange
Align the extruded elbow with the flange. Ensure the center of the elbow aligns with the center of the internal hole in the flange. The elbow should be extruded along the right-hand side (positive X direction), facing the right side.
Add the Flange Holes
On the top and bottom faces of the flange (the 50mm x 50mm square), create four circles with a diameter of 5mm. Position these circles at the corners of a square, with a side length of 41mm, inside the flange. Extrude the circles to cut through the flange, creating holes with a 5mm diameter.
Copy the Elbow
Once the first elbow is created, copy the entire elbow part, including the flange, to produce a second identical part.
Rotate and Position the Second Elbow Part
Select the second elbow part and use the Rotate command. Rotate the second part 90 degrees around the Z-axis to place it perpendicular to the first elbow part.
Join the Two Elbow Parts
Align the two elbow parts at the ends so that they meet at a 90-degree angle. Use the Join command to combine the two parts into a single, connected 3D model.
Finalize the Model
Review the model for accuracy. Ensure that both elbows have flanges at both ends, the elbow has a wall thickness of 3mm, the flanges have a thickness of 5mm, and the internal hole of the elbow is 24mm in diameter. Verify that the flange holes are 5mm in diameter and are placed in a square pattern with a 41mm spacing. Double-check that the two parts of the elbow are properly rotated and joined at a 90-degree angle.
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you saved me bro, explained too well ❤
You are welcome 🤗
I have uploaded the second method check out: ua-cam.com/video/nknjbHsdASY/v-deo.html
Hello! I have a similar problem, I have done the install flexnet server already and task manager says it's running and while installing, it says can't connect to server and I proceeded with installing solidworks and it still won't connect to the server, I tried uninstalling and reinstalling the flexnetserver and still the same problem.
Also, take note that eDrawings is working but not SolidWorks
Okay bro.
Check The second Video I have Uploaded. The solidworks licensing services was running in the background which affected the overall funtionality of the app
I'm glad your problem got solved🤗
make it orthograpic top front and right side
I will bro
Wow interesting 😊
Wow
U
Ok❤
Thank you
excellent explanation 👍
Thank you 🙏
Do you understand the mechanisms?
salut, pouvez-vous m'aider à télécharger le pack de langue française d'autocad car le site a supprimé tous les packs pour les versions inférieures à 2019.
So weldon sir
So perfect sir
Thank you brother 😊
Thanks so much
Wow, I am happy it helped you 🤗
But could you explain what the issue was exactly and why you took those steps to rectify it?
The cam has to be continuous, ie polyline as opposed to line segments. The follower needs to have a point of contact.
Thanks so much for this. Was really helpful
You're welcome
You're very welcome!
hi... how can we fixed the rack and move only the pinion?
Use mates. Mate front, right and top plane of the assembly with the ones or the rack . Everything else remains the same.
Thank you so much! I had a CAM issue with a Door Latch
You are welcome, your feedback is a motivation to my channel 👌
It is easier to use a parametric equation driven curve than constructing the involution by hand using a spline. Add an equation driven curve to the drawing and use these formulas for x and y respectively. x(t) = "base_circle_radius" * (cos(t) + t * sin(t)) y(t) = "base_circle_radius" * (sin(t) - t * cos(t)) Where t is the the angle in radians. Try the range t1=0 and t2 = pi/4 and you will see the result. The formula is obtained the same way you construct using lines. It just expresses the x, y coordinate as a point follows a circular path and adds a vector attached to the point, perpendicular to the radius, with a length that increases by radius * t to obtain the final coordinate on the involution (cog). Notice equation driven curves can be moved around and be rotated if attached at the end and aligned using tangent and similar constraints. Try copy and then mirror on a curve. You can copy and paste a curve and set a minus sign before one of Xt or Yt in the equation of the copy to mirror the curve about x or y axis.
Thank you engineer 👏 Will try out this
Appreciate it!
You're welcome 🤗
Hello friend! Is it possible to reverse the tool turret position from rear to front in Solidworks Cam with the simple turning method?
Hello to you too 👋 I used HSMworks to generate this code, I haven't tried SOLIDWORKS cam.
Albert Einstein was a genius 🤲 1:05
can you give me the views of the drawing. seen from the front, from above and from the left
What's+254 748 059 041
penis
Thanks man. It was helpful
You are welcome
Wow 👏
Thanks ❤️
how did you find the width of each tooth
The face width is 12 times module. In this case 12X6= 72mm Check video at 0:00 1:45 How to find face width of the spur gear
@@Mechanical_Eng_Design I think I understand that part, but I don't understand why you multipled the number of teeth by 4 to find the tooth degree to be 3
It's a standard formula for teeth design (360°/4T) where T is the number of teeth
Nice
Thanks bro
Here is the Assembly part Enjoy 😊 ua-cam.com/video/7GxK-mufQBw/v-deo.html
Very nice video sir.....🔥
Thank you bro ❤️
🙂🙂
Some good job 🔥
Thank you so much pal 🙏
Nice video champ⚡⚡
Thank you bro 🙏
Nice, keep going!
Thank you very much 🙏
Manual block machine video
Yes
nice tutorial ..the music is not necessary though
You like it without?
Thanks for this🙏🏻
𝕡𝕣𝕠𝕞𝕠𝕤𝕞
Obrigadu 🙏
Thank you
Elliptical Crank Mechanism Design, ua-cam.com/video/38OBsIOE9a0/v-deo.html
To learn how to draw a spur gear with an involute profile, check my video; ua-cam.com/video/tPvzfleiMBA/v-deo.html
Some good content bro
Thank you so much
All the best bro 💥💥💥👊
Thank you brother
When I tried to chamfer the edge at the end, AutoCAD gave me an error saying, "failure while chamfering," no matter what. The only way I was able to get the result in the video was by extruding a 1x1 right triangle along an arc, snapping it to where the chamfer would be, then subtracting that shape from the bolt.
Hello, Make sure you do chamfer before creating the thread ie immediately after presspull Use Chamferedge option
For more tutorials visit ua-cam.com/video/APUyWPgdhEA/v-deo.html
How to draw a metric bolt in AutoCAD @
How to draw a metric bolt in AutoCAD ua-cam.com/video/8hwL9UYetIk/v-deo.html
Thanks for the tutorial. I have learned Alot especially thicken and extrude along a path.
I appreciate
❤️❤️
Nice
Download pdf file of this drawing on the Description. AutoCAD practice drawings in 2D, for more AutoCAD, drawing tutorials visit; ua-cam.com/play/PLE81qB43a4HPF_L5eyNse4Qo1oU6E3h4a.html For Complete AutoCAD Drawing commands check here; ua-cam.com/play/PLE81qB43a4HO812SU4DXD1h8Cm6aQWHUe.html
AutoCAD practice drawings in 2D, for more AutoCAD, drawing tutorials visit; ua-cam.com/play/PLE81qB43a4HPF_L5eyNse4Qo1oU6E3h4a.html For Complete AutoCAD Drawing commands check here; ua-cam.com/play/PLE81qB43a4HO812SU4DXD1h8Cm6aQWHUe.html Download pdf file of this drawing on the description
AutoCAD practice drawings in 2D, for more AutoCAD, drawing tutorials visit; ua-cam.com/play/PLE81qB43a4HPF_L5eyNse4Qo1oU6E3h4a.html For Complete AutoCAD Drawing commands check here; ua-cam.com/play/PLE81qB43a4HO812SU4DXD1h8Cm6aQWHUe.html