|
From inadequate firing trials, a mistaken theory was promulgated by the Director of Naval Ordnance (DNO) that held that a high-velocity, low-weight projectile would have superior armor penetration characteristics at large oblique angles of impact, a conclusion which was the opposite of previous findings. This theory was not substantiated by later trials, but these took place too late to affect the decision to use a lightweight APC projectile for new designs. As a result, these guns proved to be only marginally better in terms of armor penetration than the previous 15"/42 (38.1 cm) Mark I and much less satisfactory than those older guns in terms of accuracy and barrel life. Numerous problems with liner wear, interlocks and turret roller-bearings were found and corrected in the late 1920s and early 1930s, but it wasn't until 1934 that Nelson's guns were first fired in a long, sixteen rounds per gun, all-gun sequence. A number of breakdowns occurred during this test, resulting in an energetic effort to correct the deficiencies. By 1939 the majority of the problems found had been rectified. However, these mountings were never trouble-free during the careers of Nelson and Rodney and they cannot be considered to have been a successful design. Nevertheless, it should be noted that these guns on Rodney proved to be more reliable than did the new 14" (35.6 cm) guns on HMS King George V and HMS Prince of Wales during the two battles with the German battleship Bismarck. Constructed of a tapered inner A tube with two rear locating shoulders, A tube, full length taper wound wire, B tube, overlapping jacket and breech ring, and a shrunk collar on the rear of the A tube. A breech bush was used to attach the Welin breech block which was operated by an Asbury hydraulic mechanism. Some 29 guns were made by Elswick, Vickers, Beardmore and the Royal Gun Factory. |
HMS Nelson in 1940
|
Cleaning out the barrels on HMS Nelson
in 1930
|
| Designation | 16"/45 (40.6 cm) Mark I |
| Ship Class Used On | Nelson class |
| Date Of Design | 1922 |
| Date In Service | 1927 |
| Gun Weight | With Breech mechanism: 108 tons
(109.7 mt)
Without Breech mechanism: 106 tons (107.7 mt) |
| Gun Length oa | 742.2 in (18.852 m) |
| Bore Length | 720.0 in (18.288 m) |
| Rifling Length | Mark I rifling: 586.96 in (14.909
m)
Mark II rifling: 588.95 in (14.959 m) |
| Grooves | Mark I rifling: (80) 0.135 in deep
x 0.377 (3.43 x 9.577 mm)
Mark II rifling: (96) 0.124 in deep x 0.349 (3.15 x 8.865 mm) |
| Lands | Mark I rifling: 0.2512 in (6.380
mm)
Mark II rifling: 0.1745 in (4.432 mm) |
| Twist | Uniform RH 1 in 30 |
| Chamber Volume
(see Note 1) |
35,205 in3 (576.9 dm3) |
| Rate Of Fire
(see Notes 2, 3 and 4) |
1.5 rounds per minute |
| Notes:
1) The sources below disagree as to the chamber volume for these guns. One source says that the volume was originally 35,000 in3 (573.5 dm3), but this was decreased to about 30,000 in3 (491.6 dm3) when muzzle velocity was reduced to increase barrel life (see below). Guns Nos. 3, 4 and 24 had chambers of the same volume as the others but the chamber length was less and the rifled length longer as a consequence. These three guns were used in A turret on Nelson until March 1945. 2) The following description is adapted from "British Battleships of World War Two:" The designed loading-cycle for these mounts was 30 seconds, but in practice, it was 35 seconds for one gun. As the shell loading in the handling rooms required 50 seconds, the maximum sustained rate of fire was one round per gun every 50 seconds. However, because of the necessity of firing wing and center guns of turrets in different salvos [in order to reduce dispersion problems], the firing rate was further reduced to one round every 60 to 65 seconds. Even with modifications, the Director of Naval Ordnance considered it extremely doubtful that a greater rate of fire than one round of every 40 seconds for the first four rounds and one round every 45 seconds thereafter would actually be achieved.3) The average of the full salvo per minute rate for single ship practices between 1928 to 1933 showed a yearly average of 1.90 to 1.53 compared with 2.28 to 1.93 for ships with 15 inch (38 cm) guns. 4) During the first hour of the "Final Battle" against Bismarck, Rodney fired the equivalent of 1.5 salvos per minute. During the entire battle, she fired 1.6 salvos per minute during salvo firing and 1.1 broadsides per minute during broadside firing with outputs of 77% and 62% respectively (salvos were of four and five guns while broadsides were of all nine guns). The following description of the problems encountered by Rodney is taken from "The Final Action: The Sinking of Bismarck, 27 May 1941" by John Roberts: "She experienced various minor problems with mechanical failures and drill errors, the worst being with the right gun of A turret. This gun missed 11 salvos due to problems with the slide locking gear and then, at salvo 65, a complete jam occurred in the right shell pusher hoist. As a result of drill errors the top shell was rammed up the hoist and jammed in the gunhouse with its nose against the rangefinder supports. It was not cleared until 12 hours after the action. In addition the centre gun of A missed 2 salvos due to slow drill and all the salvos from 64 to 88 due to mechanical failures, the left gun of A missed 10 salvos and did not fire after salvo 97 due to mechanical failures. B turret's centre gun misfired at salvo 4 and missed 5 or 6 over a period of 7 minutes towards the end of the action due to drill errors. The left gun of B had several delays as a result of drill errors but X turret suffered only two jams which caused only minor delays." |
|
| Type | Bag |
| Projectile Types and Weights | AP Mark IB - 2,048 lbs. (929 kg)
HE - 2,048 lbs. (929 kg) |
| Bursting Charge
(see Note 8) |
AP - 51.2 lbs. (23.2 kg) TNT
HE: N/A |
| Projectile Length | AP - 66.23 in (168.2 cm)
HE - 75.94 in (192.9 cm) |
| Propellant Charge | Initial: 498 lbs. (225.9 kg) MD45
After 1930: 495 lbs. (224.5 kg) SC280 |
| Muzzle Velocity | New gun Mark I rifling: 2,586 fps
(788 mps)
New gun Mark II rifling: 2,614 fps (797 mps) |
| Working Pressure | Mark I rifling: 20.0 tons/in2
(3,150 kg/cm2)
Mark II rifling: 21.3 tons/in2 (3,355 kg/cm2) |
| Approximate Barrel Life | 200 - 250 rounds (see Note 1) |
| Ammunitions stowage per gun
(see Notes 5 and 6) |
95 APC and 10 practice rounds |
| Notes:
1) "British Battleships of World War Two" credits these guns as being originally designed with a muzzle velocity of 2,700 fps (823 mps) and a maximum range of 41,983 yards (38,389 m). The very first test firings of these guns found that they had a serious wear problem, with a barrel life of only 180 rounds. It was also found that there was a considerable loss of accuracy during continuous firing, as there was a tendency for the projectiles to strip the rifling out of the guns ". . . due to the hammering action of the short bodied, long headed projectile on its way down the bore . . ." As a result, the rifling in the liners was changed (known as Mark II rifling) for newer guns, the powder charge and chamber size were reduced to the figures shown in the tables above and the diameter of the projectile driving band was increased. Even with these changes, the barrel life and accuracy still compared poorly with the previous 15"/42 (38.1 cm) Mark I. 2) The different riflings were mixed on each ship and even in each turret. According to "Naval Weapons of World War Two," this was unique as "such differences were totally at variance with the usual British policy for heavy guns in important ships" whereby every effort was made to ensure that each ship had guns of uniform characteristics. As completed, both ships had all Mark I rifling. Nelson in May 1944 received guns with Mark II rifling for "B" and "X" turrets, but "A" turret was not changed until March 1945. For Rodney, in December 1937 "B" turret was changed to two guns with Mark II rifling and one gun with Mark I rifling. In 1938, her "X" turret was fitted with three new guns with Mark I rifling and "A" turret received three new guns with Mark II rifling in February 1942. This mixing on Nelson and Rodney caused initial dispersion problems due to the differing muzzle velocities, but these reportedly became less pronounced as the guns wore. 3) According to "Naval Weapons of World War Two," a 2,250 lbs. (1,021 kg) APC shell was proposed to correct some of the problems encountered by the too-light shell, but "financial stringencies in the early 1930s prevented any change." It was estimated that a 506 lbs. (229.5 kg) charge of SC381 would give this heavier projectile a new-gun muzzle velocity of 2,575 fps (785 mps) and a range of 40,500 yards (37,030 m) at an elevation of 40 degrees. 4) The propellant charge was in six bags. 5) The original outfit was entirely APC. HE rounds were added later, apparently sometime in the 1930s. The original HE projectile had its fuze in the nose of the shell body itself, behind the ballistic cap. This poorly conceived arrangement caused many to fail to detonate. These shells were withdrawn from service in 1943 after Rodney's bombardment at Oran during the North Africa landings highlighted the problems. The later HE projectile had a true nose fuze and was of better ballistic shape. 6) The cancelled "G3" battlecruiser design had a planned ammunition stowage per gun of 80 APC, 20 CPC, 6 shrapnel and 10 practice. This was the wartime outfit, the peace or "legend" outfit was 80 rounds per gun. Stowage was provided for a total of 116 projectiles and 100 powder charges per gun. 7) Between late 1942 and early 1943, "K" shell was introduced which contained dyes for coloring the shell splashes. These shells also had a small fuze and burster to disperse the dye. These additions increased the APC weight to 2,059.3 lbs. (934.1 kg). The following colors are listed in a 20 June 1946 Fleet Order: Rodney: Red
8) APC was 6/[infinity]crh (conical head) and was unusual for British APC projectiles in that it used block TNT rather than Shellite as a burster. |
|
| Elevation |
MV = 2,525 fps (770 mps) |
|
|
| 2.3 degrees |
|
|
|
| 5.1 degrees |
|
|
|
| 8.5 degrees |
|
|
|
| 12.5 degrees |
|
|
|
| 17.5 degrees |
|
|
|
| 23.7 degrees |
|
|
|
| 32.4 degrees |
|
|
|
| 39.2 degrees |
|
|
|
| 40.0 degrees |
|
|
|
| Note: Time of flight
for APC Shell with MV = 2,525 fps (770 mps)
10,000 yards (9,140 m): 13.4 seconds 20,000 yards (18,290 m): 31.1 seconds 30,000 yards (27,430 m): 54.7 seconds 37,500 yards (34,290 m): 82.8 seconds |
|||
| Elevation | With 2,048 lbs. (929 kg) AP Shell |
| 40 degrees
With Mark I rifling New gun MV of 2,586 fps (788 mps) |
39,090 yards (35,745 m) |
| 40 degrees
With Mark II rifling New gun MV of 2,614 fps (797 mps) |
39,780 yards (36,375 m) |
| Elevation | With later 2,048 lbs. (929 kg) HE Shell |
| 40 degrees
With Mark I rifling |
40,890 yards (37,390 m) |
| 40 degrees
With Mark II rifling |
41,690 yards (38,120 m) |
| Note: These last two tables show the difficulties with dispersion that must have been created by the unusual practice of mixing guns with different riflings within the same turret and ship. | |
| Range |
|
|
| 15,000 yards (13,716 m) |
|
|
| 20,000 yards (18,288 m) |
|
|
| 25,000 yards (22,860 m) |
|
|
| 30,000 yards (27,432 m) |
|
|
| 35,000 yards (32,004 m) |
|
|
| Note: This data is from "Battleships: Allied Battleships in World War II" for a muzzle velocity of 2,525 fps (770 mps) and is based upon the USN Empirical Formula for Armor Penetration. | ||
| Designation | Three-gun Turrets
Nelson (3): Mark I |
| Weight | 1,480 tons (1,503.7 mt) |
| Elevation | -3 / +40 degrees |
| Rate of Elevation | 10 degrees per second |
| Train
(see Note 5) |
"A" Turret: about +/- 150 degrees
"B" Turret: about +/- 160 degrees "X" Turret: About from 60 to 120 degrees on either side |
| Rate of Train | 4 degrees per second |
| Gun Recoil | 44.6 in (113 cm) |
| Loading Angle | +3 degrees |
| Notes:
1) These triple mountings proved to be quite troublesome during their early careers due to their complex design. This complexity was partially due to the nature of mounting three independently sleeved guns, but it was also because of the British excessive use of interlocks in the ammunition loading and supply systems and by the use of a large number of swash-plate engines. 2) A number of changes were made to these turrets during construction. Notable among these was the changing of the pressure medium from water to light mineral oil, which allowed the use of steel pipes in the hydraulic system rather than brass pipes as used in earlier designs. This change saved both weight and cost. The change to mineral oil as the hydraulic fluid may also have been to reduce corrosion in the pusher hoists. The shell and powder bag handling was considerably changed during construction as the problems with these systems became more apparent. Independent shell-bogies were replaced by three fixed shell-bogies mounted 90 degrees apart on a shell-bogie ring. This meant that all three guns had to be loaded almost simultaneously with the loading cycle in the shell handling room. The cordite-bogies were replaced by cordite-hoppers in the revolving structure, which greatly increased the manual handling of the bags and thus the number of crew needed in the handling room. Finally, all components of the handling system had to be modified when the diameter of the projectile driving bands were increased as part of the effort to reduce barrel wear. 3) Each gun was served by a pusher shell hoist and a cordite hoist. The shell hoist delivered the shells in a bucket vertically to the rear of the gun. The cordite hoists were a dual canister design, powered by hydraulic rams with wire lift and pulleys, with each canister holding three bags of propellant. These came up to the side and rear of the gun. During loading, the bucket tilted horizontally and the rammer went through the bucket to push the shell into the breech. The bucket and cordite canisters then traversed and the first cordite canister was rammed, the arrangement traversed again and then the second cordite canister was rammed. All three then traversed back and tilted vertical before traveling back down for the next load. There were about four ready rounds stored in the wings of the turret. A radial crane moved the ready rounds to the loading trays for the outside guns. 4) An inspection of Rodney's turret roller-paths in 1927 showed that the inner edge of the lower roller path was cutting into the flanges of the turret-rollers. A quickly-ordered inspection of Nelson found much the same problem. The damage was determined to be caused by the lateral thrust created when the heavy turrets were trained, especially when in a seaway. Restrictions were made to the speed in which the turrets could be trained while a solution was sought. After some alterations to the existing design failed to solve the problem, a satisfactory solution was found by the fitting of a new set of vertical rollers to the rotating structure. These were designed to take the lateral thrust away from the horizontal rollers and could maintain the necessary degree of concentricity between the upper and lower roller paths. Some of these vertical rollers were spring-loaded to help even out the forces as the turrets trained. The vertical rollers were also spaced such that no two fixed rollers were exactly opposite one another. Addition of these vertical rollers to both battleships was completed by October 1929 and the restriction in maximum training speeds was eliminated. Similar off-set rollers were later used on the King George V class mountings. 5) The third turret from the bow was designated as "X" turret, not "C" turret. This was apparently done in order to keep a commonality with previous ships. The all forward design of these ships proved to have disadvantages during their firing trials. Firing "A" and "B" turrets on forward bearings damaged many weather deck fittings and made conditions in the mess deck areas directly below very uncomfortable. Considerable damage was inflicted to the superstructure and bridge whenever "X" turret was fired abaft the beam, with the bridge becoming almost uninhabitable when the guns were fired at high elevations. Baffles and other additions eased the problems to the bridge area, but they by no means solved them nor dealt with the weather deck problems. Restrictions on arcs of fire were instituted as a result and retained throughout their peacetime careers. The training arcs shown in the table above are an estimate of the maximum possible arcs based upon a study of diagrams and photographs, but the actual arcs as restricted were probably significantly less. 6) Each turret had its own 750 hp steam engine located in the fixed structure, but any turret could draw on any of the pumps if necessary. Elevation was by hydraulic cylinder and piston connected to the slide. Each turret was driven by two 400 hp swashplate engines, only one in use at a time, which drove a worm gear. Runout was via compressed air. 7) Turret crew was 1 officer and 98 men including those in the handling room, shell room, cordite handling room and magazine. 8) The gun axes were 98 in (249 cm) apart. |
|
19 July 2007 - Benchmark
07 January 2009 - Corrected typographical
error