Immiscible Alloy Solidification 2D: Earth vs Microgravity
A 2D cross-section view of Stokes settling in a two-phase immiscible metal melt: watch dense and light droplets separate on Earth while the same melt stays finely dispersed in orbital microgravity. Drag to pan, scroll to zoom, and tune density contrast, viscosity and droplet size live.
Two-phase metal alloys that never fully dissolve into each other — like aluminum-indium or copper-cobalt — behave completely differently depending on where you melt them. This 2D cross-section simulator pours the same immiscible melt into twin crucibles, one on Earth and one in orbital microgravity, and lets Stokes' law drive each droplet's motion in real time. On Earth, density-driven settling coalesces the dense phase into a bottom layer and the light phase into a top layer before the melt can freeze. In microgravity, with the settling term reduced to nearly zero, the same droplets stay finely and uniformly dispersed all the way to solidification. Drag to pan and scroll to zoom the crucible view, tune density contrast, melt viscosity and droplet size, and watch the live stratification-index readouts diverge between the two crucibles.
A 2D cross-section view of Stokes settling in a two-phase immiscible metal melt: watch dense and light droplets separate on Earth while the same melt stays finely dispersed in orbital microgravity. Drag to pan, scroll to zoom, and tune density contrast, viscosity and droplet size live.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install