• @FiniteBanjo@lemmy.today
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      238 months ago

      And even then, the filament needed at this scale will take another several years, and a few days for shipping.

      Also, it doesn’t do well in sunlight or high humidity for prolonged periods of time, so we’ll need maybe 20 to 30 years to work out a solution for that problem.

      • @IrritableOcelot@beehaw.org
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        148 months ago

        I can only assume they’re trying to talk about concrete 3D printing, but oh boy is that not ready for anything which needs strength.

            • @CanadaPlus@lemmy.sdf.org
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              18 months ago

              Yeah, but how much worse than normal unreinforced concrete? (Which is actually fine if you aren’t worried about tension)

                • @CanadaPlus@lemmy.sdf.org
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                  18 months ago

                  Certain arches or domes, maybe a lining for a tunnel. A tower if it’s not very windy. Really just all the stuff the Romans built, since that’s what they were working with, and their volcanic ash-based cement was somewhat weaker than modern cement.

                  It would be pretty hard to print between rebar. You’d need a crazy multi-axis head, and at that point it’s probably cheaper to just build a form. If they can achieve some significant strength with long fibers, which seems likely, you could spool that into the stream of concrete, but just concrete is already an actively researched problem. Printing one big form in foam or plastic and then filling it could be considered. The manual equivalent certainly makes a great building, especially in harsh climates where insulation is a concern.

                  • @IrritableOcelot@beehaw.org
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                    17 months ago

                    Do you really think you could build a tower without tensile reinforcement? The hoop stress on the base of a cylindrical tower is no joke, especially when made from something as dense as concrete…