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  2. High-explosive incendiary/armor-piercing ammunition - Wikipedia

    en.wikipedia.org/wiki/High-explosive_incendiary/...

    The remaining element of the round is the tungsten carbide penetrator. This has a large amount of kinetic energy and will penetrate the armor as a solid-cored armor-piercing shot would. This takes the incendiary material and about 20 steel fragments (created by the explosives), delivering them in a 25–30 degree cone through the armor ...

  3. M982 Excalibur - Wikipedia

    en.wikipedia.org/wiki/M982_Excalibur

    The M982 Excalibur (previously XM982) is a 155 mm extended-range guided artillery shell developed in a collaborative effort between the U.S. Army Research Laboratory (ARL) and the United States Army Armament Research, Development and Engineering Center (ARDEC). [5]

  4. Armour-piercing ammunition - Wikipedia

    en.wikipedia.org/wiki/Armour-piercing_ammunition

    Armour-piercing high-explosive (APHE) shells are armour-piercing shells containing an explosive filling, which were initially termed "shell", distinguishing them from non-explosive "shot". This was largely a matter of British usage, relating to the 1877 invention of the first of the type, the Palliser shell with 1.5% high explosive (HE).

  5. Raufoss Mk 211 - Wikipedia

    en.wikipedia.org/wiki/Raufoss_Mk_211

    The Raufoss Mk.211 projectile. The Raufoss Mk 211 is a .50 BMG (12.7×99mm NATO) multi-purpose anti-material high-explosive incendiary/armor-piercing ammunition projectile produced by Nammo under the model name NM140 MP. [1]

  6. High-explosive incendiary - Wikipedia

    en.wikipedia.org/wiki/High-explosive_incendiary

    Incendiary shells are no longer in use by many countries due to bans on the use of phosphorus weapons. Armour-piercing shot and shell penetrate the target using kinetic energy before the incendiary charge ignites, smothering the crew in flames, detonating ammunition, and destroying the target.

  7. Armour-piercing discarding sabot - Wikipedia

    en.wikipedia.org/wiki/Armour-piercing_discarding...

    Armour piercing discarding sabot munitions were developed to increase penetrating performance of anti-tank projectiles by generating higher impact velocity.A larger projectile would require a completely new weapon system, but increasing velocity faced the limitation that steel armour-piercing (AP) projectiles shattered at velocities above about 850 m/s when uncapped.

  8. Armour-piercing, capped, ballistic capped shell - Wikipedia

    en.wikipedia.org/wiki/Armour-piercing,_capped...

    However, it was found that steel shot tended to shatter on impact at velocities greater than 823 m/s (2700 feet/second). [4] To counter this, a cap of softer metal was attached to the tip of an AP (solid) round. The cap transferred energy from the tip of the shell to the sides of the projectile, thereby helping to reduce shattering.

  9. Armour-piercing fin-stabilized discarding sabot - Wikipedia

    en.wikipedia.org/wiki/Armour-piercing_fin...

    Modern 120 mm tank gun shells. KE penetrators for modern tanks are commonly 2–3 cm (0.787–1.18 in) in diameter, and can approach 80 cm (31.5 in) long. As more structurally efficient penetrator-sabot designs are developed their length tends to increase, in order to defeat even greater line-of-sight armour depth.

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