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Making a Stainless Steel Rubik's Cube

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61–69 of 69 posts

Re: Making a Stainless Steel Rubik's Cube

#61
post #19

I was kind of hoping the faces would be heat-colored but I imagine that would have been a bit more complex.

just need an oven with good temp control. there is this lovely bronze color you can get on stainless.its strangely alot more stable than color you get from heat treating mild steel...but i bet it would rub off if you used it a nontrivial amount

Yep, we annealed a bar of 304 once (in a good kiln oven with electronic temp control) and it came out looking like brass.

Re: Making a Stainless Steel Rubik's Cube

#62
post #7

My first thought was: how the heck could you assemble a metal cube? Putting a plastic one together relies on the springiness of the material in order to place the final piece, but metal won't give in the same way. The solution: > The face centers each receive a hollow stem that screws into the 5/16-24 thread. This assembly holds a captive spring-loaded screw, which screws into the core. The spring provides some give…

I had the same thought but just tested with a fairly standard "premium" plastic cube (not Rubick's brand) and I think it works in the same way. There are springs and that allows assembly/disassembly and I think it would work with a less flexible material. Not sure if the Rubick's brand ones are the same or if they really do rely on flexible plastic.

Rubik's

Re: Making a Stainless Steel Rubik's Cube

#63
post #20

This is so cool, stuff like this makes me wish I had studied mechanical engineering instead of computer science. Does anyone know of a good route for learning the software stack associated with this stuff? I keep up with some maker YT channels like Stuff Made Here and they usually do an okay job of showing which machines were used and how each piece was made. But what they usually never show is which programs they us…

So I'm a software engineer too, but also a cyclist. A weightweenie. At certain point, you begin to mix and match totally incompatible parts, solvable with a modest manufacturing capability. For me, the learning path was basically the same as with programming - lots of motivation, access to internet and tools (a machinist). Back in school, we were taught part sketching and machining basics, which helped a bit. I picke…

I'm like your acquaintance. Did mechanical engineering, worked for a few years and realized the jobs around here doing mech eng kinda suck and the pays bad. In software now and sure, it's not hands on as much as I'd like but I earn enough money now to live comfortably and work on my own projects at home in my free time. For me it was a priority shift. Earn more so I can provide for my family better and then use the rest to work on modest projects as hobbies. Or earn less so I can work on mechanical projects but not be able to provide the quality of life for my family I'd like.

Re: Making a Stainless Steel Rubik's Cube

#64

Earlier quoted context omitted.

I had the same thought but just tested with a fairly standard "premium" plastic cube (not Rubick's brand) and I think it works in the same way. There are springs and that allows assembly/disassembly and I think it would work with a less flexible material. Not sure if the Rubick's brand ones are the same or if they really do rely on flexible plastic.

Rubik's

Cube

Re: Making a Stainless Steel Rubik's Cube

#65
post #7

My first thought was: how the heck could you assemble a metal cube? Putting a plastic one together relies on the springiness of the material in order to place the final piece, but metal won't give in the same way. The solution: > The face centers each receive a hollow stem that screws into the 5/16-24 thread. This assembly holds a captive spring-loaded screw, which screws into the core. The spring provides some give…

Conversely this is a cube that can't be cheated by smashing it into pieges like those plastic ones.

Re: Making a Stainless Steel Rubik's Cube

#66
post #18

Earlier quoted context omitted.

I wonder if one can hollow out the individual cubes to decrease the weight.

Or you could increase the weight by using tungsten or depleted uranium.

With the same dimensions as the one in the article, tungsten would be around 7.3lb, and DU is only slightly lighter. If it was osmium, the densest known element, it would be around 8.5lb.

Re: Making a Stainless Steel Rubik's Cube

#67
post #9

> Although it may be neat to look at, it weighs a massive three pounds (~1.4 kg) and is very tiring to manipulate. Solving this is more a test of the wrists than of the mind! This was the punchline I was looking for. The aluminum version seem like a more desirable version at 500g.

Now make one out of tungsten.

Tungsten is famously hard to machine, but ultra-pure tungsten is supposed to be OK.

Re: Making a Stainless Steel Rubik's Cube

#68

Earlier quoted context omitted.

Or you could increase the weight by using tungsten or depleted uranium.

With the same dimensions as the one in the article, tungsten would be around 7.3lb, and DU is only slightly lighter. If it was osmium, the densest known element, it would be around 8.5lb.

Osmium would evaporate, slowly, and poison you while it did.

Strangely, osmium oxide is a gas.

Iridium might be the better choice.

Re: Making a Stainless Steel Rubik's Cube

#69
post #7

My first thought was: how the heck could you assemble a metal cube? Putting a plastic one together relies on the springiness of the material in order to place the final piece, but metal won't give in the same way. The solution: > The face centers each receive a hollow stem that screws into the 5/16-24 thread. This assembly holds a captive spring-loaded screw, which screws into the core. The spring provides some give…

I had the same thought but just tested with a fairly standard "premium" plastic cube (not Rubick's brand) and I think it works in the same way. There are springs and that allows assembly/disassembly and I think it would work with a less flexible material. Not sure if the Rubick's brand ones are the same or if they really do rely on flexible plastic.

The original Rubiks brand cubes would rely on the springiness in the plastic. These tended to be rather hard to turn with even the slightest misalignment. Copy cats invented the improved mechanism. These will turn with a misalignment up to something silly like 40 degrees. Rubiks copied this mechanism for their own cubes eventually.

Long story short, a random chinese Rubiks cube knockoff is quite likely to be higher quality than an actual Rubiks brand cube these days.

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