Computational Hydrographic Printing [video]
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Computational Hydrographic Printing [video]
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Re: Computational Hydrographic Printing [video]
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#5Very cool. Anyone know how a sphere (the globe at the end) was printed in a single immersion? Based on what I saw in the video, it seems like it would have to be a different process involving rotating the sphere as it was dipped, rather than the linear motion used for the other objects.
Re: Computational Hydrographic Printing [video]
#6Very cool. Anyone know how a sphere (the globe at the end) was printed in a single immersion? Based on what I saw in the video, it seems like it would have to be a different process involving rotating the sphere as it was dipped, rather than the linear motion used for the other objects.
> The sphere is dipped with
> its north pole pointing downward. The maximum error on the
> northern hemisphere is within 2mm. However, near its south pole
> the error is much larger (about 5mm). This is because after the
> water surface passes the sphere’s equator, the film gets stretched
> largely, and near the south pole the relative angle between the
> water surface and the object surface approaches to 180◦, leading
> to an ill-posed boundary condition for our simulation (recall
> Equation (1), when θ ≈ 180◦).
You can see the potential for a similar wraparound even on e.g. the mask dips.Re: Computational Hydrographic Printing [video]
#7Very cool. Anyone know how a sphere (the globe at the end) was printed in a single immersion? Based on what I saw in the video, it seems like it would have to be a different process involving rotating the sphere as it was dipped, rather than the linear motion used for the other objects.
Re: Computational Hydrographic Printing [video]
#8I am always jealous of how cool and flashy the work at SIGGRAPH is.