3 ms·
This would sound much less impressive if they just said 500 tons. Also, why the dead weight? 500 tons is easily doable with a (smallish) hydraulic press. The a
by Tim61 10y ago
This would sound much less impressive if they just said 500 tons. Also, why the dead weight? 500 tons is easily doable with a (smallish) hydraulic press.
The actual title of the article is "How Do You Lift A Million Pounds Of Stainless Steel?" I feel like they didn't answer that question either. It turns out that the weights are in fact lifted by hydraulics.
- goldenkey 10y agoI suppose it's a different shear force to apply all the weight at once rather than hydraulically.
- Retric 10y agoIt's a question of accuracy not maximum force. At some point you want to calibrate the things you use to calibrate the hydraulic presses. http://www.nist.gov/calibrations/index.cfm http://www.nist.gov/calibrations/index.cfm
- Animats 10y agoRight. Something the parent article completely fails to mention. This is NIST's force standard for large forces, the place you send load cells to be calibrated.[1] If they have to use the whole million pound stack, the fee is $16,489. [1] http://www.nist.gov/calibrations/force.cfm http://www.nist.gov/calibrations/force.cfm
- cmsmith 10y ago>Also, why the dead weight? 500 tons is easily doable with a (smallish) hydraulic press. Sure, but how do you know the hydraulic press is applying 500 tons? You need to have a universal standard for length (to determine the area of your piston) and for force (which doesn't exist), and consider the friction in your hydraulic system. We can generate a universal standard for the kilogram, then duplicate that log(500) times, and create a very well controlled mass that we can hang from stuff. The level of accuracy that is needed would surprise you.
- pstrateman 10y agoBecause 500 tons of dead weight is going to stay 500 tons. A hydraulic press would need to be calibrated.
- dsfyu404ed 10y agoThat's why it's "stainless" steel. Don't wanna gather up a bunch of oxygen molecules.