A 90-degree flip connecting rod mechanism transfers rotational motion from a motor to create linear or swinging motion through a series of interconnected links (one-link, two-link, three-link, and four-link structures), using connection methods such as fish eye joints with spherical bearings, deep groove ball bearings, and clamping screws to ensure smooth operation without slipping.
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Deep Dive
Explain Design Of The 90 Degree Flip Connect Rod MechanismAdded:
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through the connecting rod. Then it will transfer momentum to the so that the the mechanism will be able to rotate.
This side is the same. Uh everyone can see that this rod can also swing back and forth.
Uh it can move forward and backward.
Because it is driven through the connecting rod.
Therefore, when the motor rotates, this connecting rod will also rotate.
As you can see.
In use, it is a one-link treatment, and then a two-link, three-link, and four-link structure. It is well designed. In the follow-up, we say uh when we are doing it.
He pulls this link to the side.
His structure is pulled to the side, right? If this structure is pulled to the side, uh then when he is doing it.
When he is doing it, he also pulls this side of his structure.
Then the same. If we pull this side, he will also pull this side. That is, the four-link mechanism is good. Then, when we are doing it, we will take a look again.
In use, this side is to drive this link.
Then one of his connection methods.
First of all, in the connection method of one of his holes, he used this fish eye joint. Because this fish eye joint is connected, there is a spherical bearing here.
It is very convenient to install. In the follow-up, when we are doing this, we use this clamping method to install it, you know. Uh uh after installing it by this clamping method.
A bearing is made here.
If this bearing is made, we can use this deep groove ball bearing. Add a deep groove ball shaft at both ends. In the middle, it is a shaft. For the shaft, use this four or five cylinders to make a shaft.
Then let's see an installation method on this side. It also belongs to the clamping belt. Okay, but because of this clamping, when doing it, it is to drive this structure. Because on this side, we can see that the material is swung by this arm plate. The belt is swung by this floor.
So, we are using this clamping method.
What else do we use? We also use this method.
This method is directly standard.
We directly take a stop to block it.
Then, through this what? Through this screw to lock everyone.
So, in this way, he will not appear.
There will be no problem of slippery feeling at all. The problem of slipping with him in this is not tight. Okay.
Then, when we are doing it, the words on this side swing up and down when they swing. You can see that this side also has a bearing. What can be achieved?
Let it achieve a swing. Swing. Good.
Follow-up words. This side is also a telescopic ball bearing and a shaft needle is made. Then, here is a shaft.
It is a shaft. Okay. Then, when doing it, if you install it in the same way, you can see it. Use this kind of installation method.
When doing it, it is through one clamping of the screw and it passes through this one. Then, lock from this screw to the shaft. Lock to the shaft.
Okay. If we follow up, you can see inside when we are doing it. What should be going on here? Because he is from Saishadown. So, we are using this side.
Just add a subline bearing. Just add a subline bearing. As a whole, if you draw a round neck diagram in the design, basically, you will get the second link with a little link.
It is the combination of four connecting rods.
Thanks for watching.
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