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The RML 9-pounder 8 cwt gun and the RML 9-pounder 6 cwt gun were British Rifled, Muzzle Loading (RML) field, horse and naval artillery guns manufactured in England in the 19th century. They fired a projectile weighing approximately 9 pounds (4.1 kg). "8 cwt " and "6 cwt" refers to the weight of the gun to differentiate it from other 9-pounder guns.
When Britain adopted rifled ordnance in the 1860s it still had large stocks of serviceable but now obsolete smoothbore guns. Gun barrels were expensive to manufacture, so the best and most recent models were selected for conversion to rifled guns, for use as second-line ordnance, using a technique designed by William Palliser.
RML 2.5-inch mountain gun United Kingdom: 1879 73: 2.9-inch Parrott rifle United States: 1860 76: 3-inch ordnance rifle United States: 1862 76: RML 7-pounder mountain gun United Kingdom: 1873 86: Canon de campagne de 4 rayé France: 1858 96: Wiard rifle United States: 1861 121: Canon de 12 La Hitte France: 1859 140: 70-pounder Whitworth naval ...
Then, in 1970, Thompson/Center created the modern black powder industry, introducing Warren Center's Hawken-styled black powder muzzle-loader rifle. [ 2 ] On January 4, 2007, Thompson/Center was purchased by S&W. [ 3 ] On April 30th, 2025 Thompson/Center was purchased back from Smith & Wesson and is now privately held and family owned and once ...
Development began in 1864 to replace the RBL 6-pounder 2.5-inch (64 mm) gun of 3 long hundredweight (340 lb; 150 kg), which had proved too heavy for a mountain gun. Several Mks of 7-pounder RML of 2 long hundredweight (220 lb; 100 kg) were tried in 1865 by boring out and rifling old SBML bronze guns, but were still too heavy.
A rifled muzzle loader in the forecastle of HMS Gannet (1878). A rifled muzzle loader (RML) is a type of large artillery piece invented in the mid-19th century. In contrast to smooth bore cannon which preceded it, the rifling of the gun barrel allowed much greater accuracy and penetration as the spin induced to the shell gave it directional stability.