Uppers
AR 10MM 16" Complete Upper Assembly with BCG / Side Charger / LRBHO
AR 10MM 16" Pistol Caliber Side Charging Complete Upper – 10mm IS BUILD ON A NON RECIPROCATING SIDE CHARGING BILLET UPPER RECEIVER WITH LRBHO
(LAST ROUND BOLT HOLD OPEN). WEIGHT: 4.2 LB. Uppers are on a monthly manufacturing schedule. Anticipate an approximate 8 week lead time for shipping.
This 10 MM carbine lightweight fully assembled upper receiver assembly is specifically designed for a 10MM caliber round. A 10MM round is larger and more powerful than a 9MM but smaller than a .45 ACP. Features 16 inch barrel - a perfect length that can affect the velocity, accuracy and the handling of the firearm. Side Charging Upper Receiver with LRBHO - This is a feature in some firearms that holds the bolt open after the last round is fired, indicating to the shooter that the magazine is empty.
16" 10MM LRBHO UPPER SPECS:
BARREL - 16" 10MM MATCH GRADE AR BARREL.
4150 CROMOLY STEEL. BLACK NITRIDE FINISH. CHAMBERED IN 10MM. TWIST:
1:16. 5/8-24 MUZZLE BRAKE THREADS. BARREL IS FINISHED OFF
WITH A2 FLASH HIDER.
PISTOL CALIBER SIDE CHARGING UPPER RECEIVER -
- Machined from 6061 billet aluminum
- Matte black hard-coat anodized per Mil 8625 Type 3 Class 2
- Compatible with all Glock Mag AR-9/40/45 components and most aftermarket parts
- Adjustable tension slide lock on charging handle
- Rear dust cover trap door that seals shut when mated with lower
- Manufactured to MILSPEC on state of the art CNC equipment for consistent quality parts and exacting tolerances
- Designed to match lines with AR-9 and AR-45 Billet Lower and most forged lowers
GAS SYSTEM - BLOWBACK
HANDGUARDS - LIGHT WEIGHT FREE FLOATING RIFLE LENGTH SLIM
M-LOK RAIL. MADE FROM AIRCRAFT QUALITY ALUMINUM AND BLACK HARDCOAT ANODIZED.
AR-40 .40 S&W/10mm RAMPED BCG (Glock & Colt compatible) -
· US
Made 8620 steel with mag phosphate finish
· Precision
milled for use with Glock style AR-45 lower receivers
UPPER ASSEMBLY COMES COMPLETELY ASSEMBLED AND TESTED. MADE IN USA BY MORIARTI ARMAMENTS. Images may not be an exact representation of the product.