Is three dimensional maneuver gear possible?

Is three dimensional maneuver gear possible?

It’s not how fast you accelerate or travel tht would be a problem, it’s how and how fast you would stop movement, other than the the obvious powering the gear and using the right material for the hooks and wire. It actually is possible to build these complex, and fantastic machines.

How does the ODM gear work?

Usage. Soldiers using ODM gear The simplest move possible with the ODM gear is simply aiming and firing the grapple hooks at an object and then activating the gas mechanism to reel oneself toward the said object. The gas mechanism is so powerful that it can stop a person from falling without using the hooks.

What is 3D maneuvering gear?

The Three Dimensional Maneuver Gear (立体機動装置, Rittai kidō sōchi?), also called Vertical Maneuvering Equipment or Omni-Directional Maneuvering Gear, is a set of gear developed by humans that allows great mobility when facing the Titans in combat. The gear allows the user to fight in a 3D space as opposed to a 2D one.

Would ODM gear be possible?

ODM gear would require a Scout to be insanely accurate when firing their grapnels. A Scout would also need to propel themself towards targets with great accuracy. This wouldn’t be possible in the case of firing grapnels, which is a big problem.

Can ODM gear be made in real life?

HeroTech’s YouTube channel released a video showing a working ODM/3D Maneuver Gear, described as “modeled from scratch and solid works in Autodesk Fusion 360.” The gear parts were created using an Ultimaker PLA-style 3D Printer and combined for a show-accurate design, complete with offensive and defensive tools …

How far can ODM shoot?

That’s a range of just over three meters (or 10.29 feet), clearly wrong considering what we’ve seen in the show. Our estimates for internal diameter and wire thickness were already very generous though, and we “rounded up” the external diameter to 20cm.

How do 3D maneuver gear work?

Propulsion. The user’s grapple hooks fire from a coil{1} which is located in the device itself. When the user wishes to move forward, their gear must quickly pull the cable back into the device. This is done via a fan mechanism{3} that is also gas-powered.

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