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#1
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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#2
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Re: Team 1658 flying inverse differential swerve Video+CAD files
Ye it was the first time that driver picked up the controls. It can go both faster and slower in a more controller manor but he wasn't familiar enough with it yet to properly show what it's capable of doing. I had a bit more practice with it and could have showed off the various aspects a bit better for comparison but I had to do the recording so can't do both xD we attempted to have someone else record while I drove prior to this but i'm pretty sure that video would make a lot of people puke.... so I ended up having to take the video myself. Certainly not a shining achievement from what can be seen in this video but I kind of like that too so others don't get a full proper demonstration and while it can be seen working the finer details are left to their own imaginations =p Until competition that is then this system will shine in all it's glory xD (if we end up deciding to use it anyway) or they can attempt making one themselves to find out.
Last edited by sanelss : 17-12-2015 at 22:45. |
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#3
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Re: Team 1658 flying inverse differential swerve Video+CAD files
Can you guys tested pushing stuff with it yet?
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#4
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Re: Team 1658 flying inverse differential swerve Video+CAD files
Why are motors making so much noise even when it's not moving? Feels like a car on neutral
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#5
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Re: Team 1658 flying inverse differential swerve Video+CAD files
when it's not moving it doesn't make any noise. However when we go at low speeds in Differential mode then indeed it is a noisy machine. That's because the top motors are going full speed and the bottom motors are going nearly full speed the opposite direction. So there are a few parts spinning at very high speeds. That's kind of the whole point of the differential system, we can have high power at very low speeds.
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#6
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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#7
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Re: Team 1658 flying inverse differential swerve Video+CAD files
it all depends how you want to run the cims. There are various modes of operation which is one of the nice things about the design. We can certainly chose what reference speed the cims run at for varied effects such as most efficiency, or most available power(all out) or anything in between. We will certainly be playing with various methods but as far as which ones we end up using,who knows.
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#8
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Re: Team 1658 flying inverse differential swerve Video+CAD files
Is it a correct statement that it is impossible to stall the top motor? If so it seems like it'd be a good candidate for a lighter and more efficient open-air motor (new 775, e.g.) so long it's geared correctly.
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#9
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Re: Team 1658 flying inverse differential swerve Video+CAD files
you can still stall out the motors and while it would work to a degree the total capable speed and power is still reliant on both of the motors so if you used a 775 you will lose in both regards compared to a cim.
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#10
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Re: Team 1658 flying inverse differential swerve Video+CAD files
I'm curious about that worm gear that you've got. It looks 3D printed - is that right? Can you give us some specs and tell us how you made it? Does it seem like it will be sturdy enough to hold up well?
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#11
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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As far as specs/how it was made take a look at the CAD files. |
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#12
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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#15
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Re: Team 1658 flying inverse differential swerve Video+CAD files
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Or at least that's what we think, could be wrong. The whole point of building the prototype was/is to find out if we're just kind of wrong or completely wrong XD |
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