SZTUKA
Piękno i dobre samopoczucie
RZEMIOSŁO
KULTURA I HISTORIA
ROZRYWKA
ŚRODOWISKO
JEDZENIE I NAPOJE
INŻYNIERIA ODWROTNA
NAUKI
LEKKOATLETYKA
TECHNOLOGIA
URZĄDZENIA DO NOSZENIA
The Atmospheric Diving Suit
Martin

Autor

Martin

27. sierpień 2026NO
37
0
0
0
0

The Atmospheric Diving Suit

Every problem in this batch traces to one decision: whether the human inside is at sea pressure or at surface pressure. A helmet diver, an aqualung diver and a saturation diver are all pressurised, which is why they absorb nitrogen, need decompression, suffer narcosis and are limited to a few hundred metres. The atmospheric diving suit refuses that entirely — it is a one-atmosphere armoured shell with the operator inside at surface pressure, so there is no gas uptake, no decompression, no narcosis and no depth-related physiology whatsoever. The operator can come straight up after eight hours at 600 metres. What the design pays instead is a purely mechanical price, and it is a steep one: every joint must rotate freely while carrying tonnes of pressure trying to squeeze it shut.
Zaawansowany
6 hours

Instrukcje

1

Compare the two philosophies on one chart

Wczytywanie notatnika Jupyter…

Potrzebne narzędzia:

Komputer stacjonarnyKomputer stacjonarny
2

Why an ordinary joint seizes under pressure

Build the naive version and watch the sea defeat it.

  1. Make a simple rotating joint: two tubes with an O-ring seal between them, free to turn.
  2. Turn it in air and note the torque needed.
  3. Now pressurise the outside of the joint in a test vessel and try to turn it again.
  4. Increase the pressure in steps, measuring the torque each time.

Torque rises steeply with pressure, because the pressure is squeezing the seal harder against its running surface AND pressing the joint faces together. By a few tens of bar an ordinary joint cannot be turned by a human at all.

Now compute the force involved: at 600 m the pressure is about 61 bar, and on a joint 100 mm across that is roughly 4.8 tonnes trying to close it. The operator has to move an elbow against that, using human muscle, all day.

This is the entire engineering problem of the atmospheric diving suit, and it is why early rigid suits from the 1920s were nearly useless — the operator could reach the bottom in perfect physiological safety and then could not bend an arm to do anything once there.

Materiały do tego kroku:

Pręt aluminiowy okrągłyPręt aluminiowy okrągły1 sztuka
Zestaw pierścieni uszczelniającychZestaw pierścieni uszczelniających1 zestaw
Przezroczysty zbiornik ciśnieniowy (z atestem)Przezroczysty zbiornik ciśnieniowy (z atestem)1 sztuka

Potrzebne narzędzia:

Tokarka do metaluTokarka do metalu
Klucz dynamometrycznyKlucz dynamometryczny
ManometrManometr
Sprężarka powietrza 30 galonówSprężarka powietrza 30 galonów
Przyłbica ochronnaPrzyłbica ochronna
3

The fluid-supported rotary joint

The fix is to stop the pressure from ever bearing on the sliding surface.

  1. Rebuild the joint with an oil-filled annular chamber between the two halves, sealed from the sea by a flexible diaphragm.
  2. The diaphragm lets sea pressure act on the OIL rather than on the bearing.
  3. Because the oil is at sea pressure on both sides of the bearing, the net force across the bearing is near zero.
  4. Pressurise and measure torque again.

Torque now stays nearly constant as pressure rises, because the joint is pressure-BALANCED — the load is carried by the oil, not by the sliding faces.

This is the same reasoning as the SF6 breaker shaft seal and the rocket turbopump's purged interspace: put a fluid between the two things that must not meet, and keep it at a pressure that cancels the load. The catalogue has now met that pattern three times in three unrelated domains.

Modern ADS joints such as the JIM and Newtsuit families use exactly this, with the joint segments cut at compound angles so a chain of simple rotations produces a natural-looking bend. The arm does not have an elbow; it has a stack of rotating rings that together behave like one.

Materiały do tego kroku:

Pręt aluminiowy okrągłyPręt aluminiowy okrągły1 sztuka
Olej parafinowy spożywczyOlej parafinowy spożywczy1 litr
Zestaw pierścieni uszczelniającychZestaw pierścieni uszczelniających1 zestaw
Płyta gumowaPłyta gumowa1 arkusz

Potrzebne narzędzia:

Tokarka do metaluTokarka do metalu
Imadło frezarskie 4 caleImadło frezarskie 4 cale
Klucz dynamometrycznyKlucz dynamometryczny
ManometrManometr
Przyłbica ochronnaPrzyłbica ochronna
4

Life support, and the CO2 that matters more than oxygen

Follow the loop, and note which sensor is primary. The operator is not going to run out of oxygen — a small cylinder lasts many hours. What runs out is the scrubber's ability to absorb carbon dioxide, and rising CO2 is far more dangerous because the body's alarm for it is unreliable at depth.

Breathlessness is triggered by CO2 in normal circumstances, but in a closed loop with adequate oxygen the warning is muted — the classic pattern is a headache, then poor judgement, then nothing.

Reverse-engineering note: an ADS carries 48 hours or more of reserve for a dive of a few hours, because the failure mode is being stuck rather than being flooded. The suit is designed so a trapped operator survives long enough to be recovered — and like the bathyscaphe, releasing ballast makes it float, so the default failure is upward.

Flow

Loading...

Materiały do tego kroku:

Wapno sodowane (pochłaniacz CO2)Wapno sodowane (pochłaniacz CO2)1 kg
Moduł czujnika CO2 (NDIR)Moduł czujnika CO2 (NDIR)1 sztuka
Ogniwo czujnika tlenuOgniwo czujnika tlenu1 sztuka

Potrzebne narzędzia:

Komputer stacjonarnyKomputer stacjonarny
Multimetr cyfrowy klasy laboratoryjnejMultimetr cyfrowy klasy laboratoryjnej
Stacja lutowniczaStacja lutownicza
5

Where the ADS wins, and where it does not

Close the batch by placing every method on one axis.

  1. Tabulate: helmet diving, scuba, saturation diving, ADS, and a remotely operated vehicle.
  2. For each, record depth limit, decompression obligation, dexterity, endurance and cost.
  3. Mark which task each one wins.

The ADS gives depth and zero decompression and takes away dexterity. Manipulators are clumsy compared with a gloved hand, so delicate work still goes to a saturation diver who can feel what they are doing — at the cost of weeks of their life per job.

And the honest end of the story: for most deep work, the winning answer removed the human entirely. An ROV has no decompression, no life support, no fatigue and no limit but its tether, and modern ones have manipulators approaching a diver's usefulness.

That is the same move this session keeps finding. The turbojet deleted the propeller, staging deleted the exponential, nuclear power deleted the need to breathe, and the ROV deleted the diver. Optimising within a constraint has a ceiling; removing the constraint does not. The ADS is the last and cleverest answer to the question of how to put a person very deep — and the question itself turned out to be optional.

Potrzebne narzędzia:

Komputer stacjonarnyKomputer stacjonarny

Materiały

8

Wymagane narzędzia

9

CC0 Domena publiczna

Ten plan jest udostępniany na licencji CC0. Możesz go swobodnie kopiować, modyfikować, rozpowszechniać i wykorzystywać do dowolnych celów, bez konieczności uzyskiwania zgody.

Wesprzyj Makera kupując produkty przez jego plan, za co zarabia Prowizja Makera ustalony przez sprzedawców, lub stwórz nową iterację tego planu i dołącz go jako połączenie w swoim własnym planie, aby dzielić się przychodami.

Dyskusja

(0)

Zaloguj się aby dołączyć do dyskusji

Ładowanie komentarzy...