Turning Water into Rock with Hydraulic Press

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welcome to the hydraulic Press channnel today we are going to crush water into rock using hydraulic press yeah sounds pretty stupid but I have a solid plan because it's going to be a solid the water yeah here is the like water past diagram and you'll see all the regular stuff here's the like water steam ice and up here this is the rock it calls like it says like i7 but it's warm it's like room temperature so it can't be ice so it h so it has to be a rock all the water scientists have messed up the diagram it's going to be a rock and uh it's not easy to get into the Rock part of this chart uh at minimum we need about I just realized that we don't need even that much we need only about like uh bit over 6,000 bars to reach water six and then for water 7 we we need like 21,000 bars and last week we managed to reach 2,000 bars so that's bit more and then I had this 5,000 bar seal kit ready that's not enough so we are going to skip the seals all all the way I have made this tool it has two it has hardened steel cylinder which is actually roller bearing roller so those are really really strong I think this can take like 100 tons then we have this hole the start of the hole is bit over 20 mm so we can nicely like put it in but then it shrinks down to 19.95 mm so it's 0.5 mm too small and we're going to just push it in anyways so there is going to be zero gap between the roller and the hole so if there's no Gap there's no leak That's My Hope and I even bought this like research book thing about researching water eyes and different faces and it says that you should start with regular ey not water because the ice doesn't leak so easily as water but I want to crush water into rock so we have to start with water so it's going to be a bit harder and also this is much much smaller than last week because this is going to get quite dangerous if you have large volume of water there so now we have so little amount of water that if like everything goes to and the tools explode the mess is going to be inside of the safety box so nobody's going to die today that's always good goal yeah but that's about the plan and we are not going to need much of force I think it was like 30 tons and first I want to test how much force it's going to take to force that in to tighter section because we have to like take that Force away from the total Force I want to be sure that when we have the power on I can 100% confidence L say that there is a water Rock inside of the tool so let's push this in as an test okay safety box is now close it so if it explodes before going in we're going to be okay and I think it's going to take only like one t it might also explode I have never tried anything like this before okay I think now it's going yeah definitely going like two tons yeah from like two to three tons okay I'm meing the new tools they're exactly the same size and dimensions so the force needed for the like uh bearing roll to be pushed into the steel that's exactly the same that's three tons maximum so we can that in and with 23 tons the water inside here when it doesn't leak it turns into I6 and then if we keep going on our like water face diagram thing around 70 tons of force it's going to turn into water seven and I just read from the Wikipedia that some International mineral Association they declared that the i7 is a mineral which same thing as a rock it turns out that you can find diamonds that have water inside and because they have been created in a such a high pressure the water inside of the diamonds is i7 so it's a it's a officially Rock so this is going to work so well okay first stop 23 tons let's hope that it doesn't leave hey it works it really works oh no oh it stopped working what the [Music] hell that was so close e why is it that color there's the oil I think we great like water cutting machine I think it's got the steel yeah because it's like yeah it looks like there is clearly some stuff on that water it I think it's it got damn it cut the steel hey no that was like all hey I'm going to go all in like really fast down yeah it leaks so little that I think we can beat it with the speed so I'm going to go full speed and I think we have short period of time when it's eyes so here we go full speed oh no I'm not satisfied with this I'm going to make new one I'm going to make like three times as tight M and then we're going to go with the full speed and we are going to see that I6 I think this what i7 might be out of our reach yeah but the I6 is going to definitely happen okay now we have 1500s of a MM squeeze there so three times Tighter and I tested again I had like small amount of distance left on the first test piece and it tooks around five tons now so we can still easily reach i7 and I also made this change that I leave little bit air on top of the water so now the bear ring can like start the like really tight part of the like stroke before the prets really high so there is like longer PA of the hole that is really tight so it should if it if it starts to act as a water cutter it has to cut now through much thicker distance of Steel so I think this is going to now work much better or at least little bit better and we w't far away from the I6 on the first go so I'm going to pump my cameras to run at 100 frames per second so we can slow this down and I'm going to go full speed in so if it leaks like slightly we are going to go in faster than it leaks out so I'm pretty confident that we are going to turn water into rock with this try here we go and here we go [Music] go okay I have no idea what happened it started to leak on some point but was that before I6 I don't know right now I have to go go to my editing computer and look the both cameras synchronized together to know that but I think we made I6 I I I hope really much so I think we didn't make I i7 but here is your answer I don't I don't make it any longer okay it has been really really close but I think we made it let me explain here it is it goes in and it starts to leak around 5,000 bars and then it still keeps going down and the force increases until it hits the like large piece of Steel and here is the upper part zoomed in and we want to hit the 24 tons to like get I6 and here we can see that when it hits 26 tons it still goes down like fractions of like millimeter or maybe like one or two millimet before it stops on the Big Tool so if we assume that the force sensor doesn't have any delay then it was just on the border but check this out when it hits the roller bearing it takes like at least five frames to start to increase the force on the actual display so there has to be like five frames delay on the for sensor so if we take that into account then this definitely hit the 26 stons like before hitting the base plate and with 26 stons it's two tons over the like limit of I six so there was like 1 fth of a second conditions where water should be I6 so that's not much but with my best knowledge today I can declare that we crushed water into rock but I'm not satisfied with this I want to see no leaks and I want to see also the i7 that has the status of mineral so that's coming I have to I have to read through the research paper there's like all fancy stuff about how they research this stuff as I said they like to start from Ice I want to start from water to make the title come through but I'm going to read through the whole paper and come up with some fancy seals and I think there is even stuff to improve in this I could make it like very shinier surfaces and stuff like that maybe add some oil on top of the water because it leaks less yeah but I'm going to think about that and also give ideas on the comments how we can make this happen and that is all for today thank you for watching and have a nice day
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Channel: Hydraulic Press Channel
Views: 549,698
Rating: undefined out of 5
Keywords: Hydraulic press channel, hydraulicpresschannel, hydraulic press, hydraulicpress, crush, willitcrush, destroy, press, hydraulicpress channel, hydraulic, hydraulic press man, will it crush
Id: rJQCSzq-c3w
Channel Id: undefined
Length: 13min 14sec (794 seconds)
Published: Sat Sep 16 2023
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