.357 SIG TUI™ – 95GR HANDGUN AMMO/BULK AMMO
Fort Scott Munitions™ .357 SIG TUI™ ammo is a match grade handgun bullet, designed to be reassuringly effective for self-defense. Engineered to Tumble Upon Impact™ and create a dynamic wound cavity, the unique, patented design of our .357 SIG TUI™ pistol ammunition penetrates targets deeply.
Unrivaled Performance
If you carry a handgun for personal defense, then you know your life may depend upon accurate shot placement. Each of our match grade handgun rounds are precision machined and rigorously tested to guarantee some of the tightest tolerances on the market. Coupled with FSM™’s multi-patented Tumble Upon Impact™ technology, you get the most lethal match grade self defense rounds in the industry.
Hard-Hitting Home Defense
Our .357 SIG TUI™ammo is the ideal choice when you need large caliber effectiveness from a compact and easily concealable handgun. Each round is engineered to Tumble Upon Impact™ once it hits soft tissue, creating extensive damage due to hydro-static shock. The energy released is enough to tear vital organs and disrupt important bodily rhythms while also mitigating the risk of over-penetration.
Law Enforcement Excellence
The precision accuracy and terminal performance of .357 SIG TUI™ ammo makes it suitable for law enforcement and security work as well as for civilian home protection and self-defense. Upon entry into soft tissue, the Tumble Upon Impact™ action greatly reduces the risk of over penetration and subsequent collateral harm by releasing the bullets energy within your target. This is an essential factor when you need to use your weapon in the proximity of innocent bystanders.
.357 SIG TUI™ ammunition is constructed of 100% solid copper using the finest components. In situations where lives are on the line, you can draw your weapon with complete confidence knowing your ammo will not compromise your skills. This is the match grade ammo you need when consistent performance is essential.
WARNING– Do not engage targets on or near hard to clean surfaces.
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