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Rotary to linear. So simple. I love it
Connecting rods and crank arms: Am I a joke to you?
Why did you design the sliding slot inclined like that while the vertical one will do the same thing?
Provides smoother linear output
@@muffinconsumer4431 OK, this is a supposition or there are a vetorial answer who confirm?
好像真的有比較順!!!假設轉的方向固定~則改斜向另一個方向!會卡卡的耶!!!😲😲😲
Simple i like it
This be making women drooling
Quick return!😌
crank with pin joint way better
Is there much difference in the angles?
Is there a point in which there is 0 movement or is the movement is continuos?I hope I could make myself uderstood.English is not my first language but I'm really interested in this contraption.
Which software
I’m sick of this bgm
I love this...❤
Should it not rotate the opposite direction for less friction?
how so? wouldnt it just, be putting the same friction on the other side of the stroke?
Very inefficient.
Scotch yoke
Sewing machine principles
😏
Rotary to linear. So simple. I love it
Connecting rods and crank arms: Am I a joke to you?
Why did you design the sliding slot inclined like that while the vertical one will do the same thing?
Provides smoother linear output
@@muffinconsumer4431 OK, this is a supposition or there are a vetorial answer who confirm?
好像真的有比較順!!!
假設轉的方向固定~
則改斜向另一個方向!
會卡卡的耶!!!
😲😲😲
Simple i like it
This be making women drooling
Quick return!😌
crank with pin joint way better
Is there much difference in the angles?
Is there a point in which there is 0 movement or is the movement is continuos?
I hope I could make myself uderstood.
English is not my first language but I'm really interested in this contraption.
Which software
I’m sick of this bgm
I love this...❤
Should it not rotate the opposite direction for less friction?
how so? wouldnt it just, be putting the same friction on the other side of the stroke?
Very inefficient.
Scotch yoke
Sewing machine principles
😏