# @stem_antics on Instagram

- **Type:** Video
- **Original URL:** https://www.instagram.com/p/DUl7SU0En6w
- **Gondola URL:** https://gondola.cc/posts/61936016-stem-antics-instagram
- **Thumbnail:** https://img.gondola.cc/tr:w-,h-,fo-auto/postThumbnails/ef4b678a52.jpg
- **Posted:** 2026-02-10T21:32:47.000+00:00
- **Account Owner:** Stem Antics (@stem_antics) — https://gondola.cc/stem_antics

## Caption

What you’re seeing is a Tunnel Boring Machine (TBM) at work — one of the most powerful excavation systems ever engineered. These machines are used to drill through solid rock for rail tunnels, road tunnels, hydroelectric systems, and underground utilities.

At the front is a rotating cutterhead, often 10–17 meters in diameter, fitted with dozens of disc cutters made from hardened steel. Each cutter applies extreme force (often 250–300 kN per cutter) to fracture rock via compressive stress, not spinning friction like a drill bit.

Behind the cutterhead:
• Hydraulic thrust cylinders push the TBM forward
• Conveyor belts or slurry systems remove crushed rock (called muck)
• Segment erectors install precast concrete rings to prevent collapse
• Laser guidance systems keep alignment accurate to millimeters

Depending on geology, TBMs advance anywhere from a few centimeters to 10+ meters per hour. Hard granite? Slow and brutal. Softer sedimentary rock? Much faster.

This process blends mechanical engineering, geology, materials science, and automation — and once the machine starts, it often can’t stop until the tunnel is finished.

💬 Would you trust a machine the size of a building to drill a mountain above your head?

#STEMengineering #CivilEngineering #GeotechnicalEngineering #Megastructures #EngineeringExplained

## Stats

- **Views:** 12,397
- **Likes:** 416
- **Shares:** 0
- **Comments:** 18

## Tags

stemengineering, engineeringexplained, civilengineering, megastructures, geotechnicalengineering

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