50mm Prototype Test Firing 🔥 #military #army #edc #prototype

Published on May 27, 2026
Duration: 2:22

This video documents a test firing of a 50mm prototype mortar round. The test highlights the significant impact of wind on projectile trajectory and stability, causing the round to tumble and land prematurely. The discussion focuses on the round's failure to maintain stability and its reduced range due to adverse wind conditions, suggesting adjustments to firing parameters might be necessary for future tests.

Quick Summary

A 50mm prototype mortar round test firing revealed significant issues with projectile stability due to strong wind. The round tumbled uncontrollably, landing approximately half its expected distance. This highlights the critical impact of environmental factors on ordnance ballistics and the need for trajectory compensation.

Chapters

  1. 00:00Introduction: 50mm Prototype Test Firing
  2. 00:08Round Fails to Detonate, Lands Sideways
  3. 00:30Analysis of Projectile Failure
  4. 00:40Investigating the Tumble and Distance
  5. 00:46The Critical Role of Wind
  6. 00:54Comparing Trajectories: First vs. Second Shot
  7. 01:05Wind's Effect on Arc and Stability
  8. 01:20Conclusion and Next Steps

Frequently Asked Questions

What caused the 50mm prototype mortar round to fail during the test firing?

The 50mm prototype mortar round failed to detonate and landed on its side. This suggests a potential issue with the ignition system or a loss of aerodynamic stability during flight, causing it to tumble.

How did wind affect the trajectory of the 50mm mortar round?

Strong wind conditions significantly impacted the 50mm mortar round's trajectory. It caused the projectile to tumble uncontrollably on its descent, preventing it from righting itself and drastically reducing its effective range.

What was the observed range reduction for the tumbling mortar round?

The tumbling 50mm mortar round landed approximately half the distance from where it was fired compared to the first shot. This highlights the critical need to account for wind in ballistics calculations for such projectiles.

What adjustments might be considered for future 50mm mortar test firings?

Based on the test results, future 50mm mortar test firings should consider adjusting traverse and elevation settings to better compensate for observed wind conditions. This aims to improve projectile stability and achieve a more predictable trajectory.

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