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First
Ответитьyes. The sequel we have been waiting for.
Ответитьvery cool. love your vids!
ОтветитьAwesome vid! Good idea combining the mechanisms!
ОтветитьTracks are the future...😂 In the future everything will be tracked!!
ОтветитьNext step maybe horizontal suspension on the glass holder?
ОтветитьYes
ОтветитьNext episode: Testing closed containers
ОтветитьI think if you left more space for the pendulum so it can move freely and doesn’t hit the side when moving it would perform better!
But cool video :)
Imagine if your car had a rigid frame and put suspension in your chair.
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ОтветитьI think it would be better if you add a mechanical gyroscope to this mechanism
ОтветитьWhy not try magnets? There is numerous ways how these are used as shock dumpeners.
Ответитьtry the same pendulum car but instead of a rope use a rubber ring i think that would work amazingly canceling all the forces
ОтветитьYou dont need the suspension at the bottom. You need to isolate it from sideways and longitudinal movement. So the stabilizers with soft suspension on the sides would be best.
ОтветитьHey 1 question can you make a video about a tank can turn into a boat because I’m trying to build but I can’t but I can make only a tank not tank can turn into a boat so can you help me with that?
ОтветитьGyro was awesome 👏
ОтветитьThe pendulum would have worked better if you didn’t make it so short.
ОтветитьA lot of water loss looks like it's from vehichle moving uneven speed, like the motor seems underpowered and struggles with the weight. Maybe give it a bigger motor or a worm drive so it moves at an even pace
Ответитьi wana see what happens if you add suspention to the vehicle in adition to the gyro+syspention combo
Ответить👍👍👍
ОтветитьShould try using the gimble design while using a gyro for level stabilization
ОтветитьNow there is a need to do pacing adjustment :) If somehow motor could be (counter)"synced" to liquid sloshing/(suspension/stabilizer swiveling), maybe it would be possible to achieve even better results, at least in some cases. In that tri legged wheel thingie, there is too much unexpected slipping on ground so not much can be done about that I guess.
I wounder if putting some floater connecting it to gears and switches somehow could allow such pacing to happen.
Do you find your springs in pens?
ОтветитьA gimbal would probably work
ОтветитьI like watching your videos the most
ОтветитьIl giroscopio si sposta in ritardo rispetto ai movimenti del veicolo. È per quello che le vibrazioni arrivano al bicchiere
ОтветитьThat is precisely why liquids are stored in spherical containers while transporting.
Less surface area to move around that way.
Nice!
ОтветитьThe pendulum worked way better than I thought it would, honestly.
Between the pendulum and the gimble, I would recommend some kind of acceleration dampening for smoother movements and less rebounding.
The springed gimble handled that well, but some loose-ish rubber bands that tighen when the gimble gets too far off center to slow it down would help, I think.
Overall, very cool!
Raise the stabilization gymbal, put lateral and longitudinal suspenion on the corners to absorb perpendicular forces, and add a "tuned" mass dampener to the bottom of the gymbal. Basically a crude gyroscopic housing for the fluid.
ОтветитьCombine pengulum with stabilisation mechanism
ОтветитьWhere do you take all this piecies?
ОтветитьI think magnetic suspension would also be a cool test. When you have 2 poles of a magnet facing each other, they repel, and you could use it as a suspension!
ОтветитьIf you add a spinning mass on same mount as the container the last design you would have much better results
ОтветитьTry to add suspension to wheels
ОтветитьJust put a lid.
ОтветитьI have a winning idea, put a cap on top of the glass 😂
ОтветитьJust add rotation to the glass in vertical axis using the additional motor. 150 rpm at least, 1500 rpm will be better, but at 1500 your measurement method will not be absolute.
Ответить🤔 how about puttig lid on the container 😂
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