HOME

TheInfoList



OR:

The South African Railways Class 3 of 1909 was a steam locomotive from the pre-
Union Union commonly refers to: * Trade union, an organization of workers * Union (set theory), in mathematics, a fundamental operation on sets Union may also refer to: Arts and entertainment Music * Union (band), an American rock group ** ''Un ...
era in the
Colony of Natal The Colony of Natal was a British colony in south-eastern Africa. It was proclaimed a British colony on 4 May 1843 after the British government had annexed the Boer Republic of Natalia, and on 31 May 1910 combined with three other colonies to ...
. In 1909, the
Natal Government Railways The Natal Government Railways (NGR) was formed in January 1877 in the Colony of Natal. In 1877, the Natal Government Railways acquired the Natal Railway Company for the sum of £40,000, gaining the line from the Point to Durban and from Durban ...
placed the world’s first true Mountain type locomotive in service when five Class B tender locomotives were commissioned. Another 25 were placed in service in 1911. In 1912, when they were assimilated into the South African Railways, they were renumbered and designated Class 3. The Mountain wheel arrangement went on to become the most numerous steam locomotive wheel configuration in use in South Africa.Classification of S.A.R. Engines with Renumbering Lists, issued by the Chief Mechanical Engineer’s Office, Pretoria, January 1912, pp. 7, 12, 15, 45-46 (Reprinted in April 1987 by SATS Museum, R.3125-6/9/11-1000)Espitalier, T.J.; Day, W.A.J. (1944). ''The Locomotive in South Africa - A Brief History of Railway Development. Chapter III - Natal Government Railways'' (Continued). South African Railways and Harbours Magazine, August 1944. pp. 591-592.


Manufacturer

With increasing coal traffic in Natal, the demand arose for more powerful locomotives. The Class B of 1909, also known as the ''Hendrie D'', was a heavy locomotive, designed by
Natal Government Railways The Natal Government Railways (NGR) was formed in January 1877 in the Colony of Natal. In 1877, the Natal Government Railways acquired the Natal Railway Company for the sum of £40,000, gaining the line from the Point to Durban and from Durban ...
(NGR) Locomotive Superintendent D.A. Hendrie. They entered service in October 1909 and were put to work to handle coal traffic on the upper Natal mainline. The locomotive design was based on Hendrie's Class B in its modified form of 1906 as the ''Altered Hendrie B'' . This time, however, Hendrie made full use of the potential of the pony truck under the cab to carry additional weight by positioning the firebox to the rear of the driving wheels, which made an improved grate and ashpan possible. To accomplish this, the
plate frame Plate may refer to: Cooking * Plate (dishware), a broad, mainly flat vessel commonly used to serve food * Plates, tableware, dishes or dishware used for setting a table, serving food and dining * Plate, the content of such a plate (for example: ...
was equipped with a bridle casting at the rear to accommodate the larger firebox. Five locomotives were built by the
North British Locomotive Company The North British Locomotive Company (NBL, NB Loco or North British) was created in 1903 through the merger of three Glasgow locomotive manufacturing companies; Sharp, Stewart and Company (Atlas Works), Neilson, Reid and Company (Hyde Park Wor ...
(NBL) and delivered in 1909, numbered in the range from 330 to 334.North British Locomotive Company works list, compiled by Austrian locomotive historian Bernhard SchmeiserSouth African Railways and Harbours Locomotive Diagram Book, 2'0" & 3'6" Gauge Steam Locomotives, 15 August 1941, as amended The first five locomotives were delivered with the first Type TJ tenders, which had a coal and water capacity. They were put to work between Estcourt and Charlestown on the Transvaal border, where they regularly hauled loads of , as well as fast perishable goods traffic. They proved to be highly successful in use, which led to an order for another 25 locomotives from NBL in 1910. These were delivered in 1911 and numbered in the range from 345 to 369 on the NGR roster. They were identical to the first batch of engines in all respects, except that they had Type TM tenders, which had an coal and water capacity.


Characteristics

The locomotives were equipped with Pyle National Electric headlights. They were the world's first true Mountain type tender locomotives, having been designed and built with a wheel arrangement with the firebox positioned to the rear of the driving wheels. Earlier Natal locomotives were modified from a different original wheel arrangement. The boilers which were used on these locomotives were, at the time, the largest in South Africa. Like the altered NGR Class B of 1906 on which it was based, these loco­motives used saturated steam and had plate frames. They used
Walschaerts valve gear The Walschaerts valve gear is a type of valve gear used to regulate the flow of steam to the pistons in steam locomotives, invented by Belgium, Belgian railway mechanical engineering, engineer Egide Walschaerts in 1844. The gear is sometimes name ...
with flat "D" gunmetal type valves, which were arranged above the cylinders and controlled by the Hendrie-designed steam reversing gear. Since they were built without superheaters, the bore of their slide valves were larger than those on the altered Class B of 1906 to compensate for the additional weight of the locomotive. The boiler, of which the barrel was thick, was fitted with four Ramsbottom safety valves, in diameter. It was fed by two injectors, arranged on the underside of the footplate at the sides, with the combination valves placed on the back of the firebox. The
Belpaire firebox The Belpaire firebox is a type of firebox used on steam locomotives. It was invented by Alfred Belpaire of Belgium in 1864. Today it generally refers to the shape of the outer shell of the firebox which is approximately flat at the top and squa ...
was constructed with a forward "rake" of the throat and back plates to keep the distance between the boiler's tube plates reasonably short at . It had a finger bar firegrate which was operated by hand lever from the cab.


South African Railways

When the
Union of South Africa The Union of South Africa ( nl, Unie van Zuid-Afrika; af, Unie van Suid-Afrika; ) was the historical predecessor to the present-day Republic of South Africa. It came into existence on 31 May 1910 with the unification of the Cape, Natal, Trans ...
was established on 31 May 1910, the three Colonial government railways (
Cape Government Railways The Cape Government Railways (CGR) was the government-owned railway operator in the Cape Colony from 1874 until the creation of the South African Railways (SAR) in 1910. History Private railways The first railways at the Cape were privately own ...
, NGR and
Central South African Railways The Central South African Railways (CSAR) was from 1902 to 1910 the operator of public railways in the Transvaal Colony and Orange River Colony in what is now South Africa. During the Anglo-Boer War, as British forces moved into the territory of ...
) were united under a single administration to control and administer the railways, ports and harbours of the Union. Although the South African Railways and Harbours came into existence in 1910 with Sir William Hoy appointed as its first General Manager, the actual classification and renumbering of all the rolling stock of the three constituent railways were only implemented with effect from 1 January 1912.Espitalier, T.J.; Day, W.A.J. (1945). ''The Locomotive in South Africa - A Brief History of Railway Development. Chapter VII - South African Railways.'' South African Railways and Harbours Magazine, April 1945. pp. 271-276.''The South African Railways - Historical Survey''. Editor George Hart, Publisher Bill Hart, Sponsored by Dorbyl Ltd., Published c. 1978, p. 25. Obsolete locomotives included, altogether 1,460 engines of 70 different types had to be classified and renumbered. Prior to Union, locomotive designs for the constituent railways primarily had to meet local requirements since there had been no through running of engines between them. Union required a more general policy, even though local characteristics such as severity of gradients and curvature and permissible axle loads would never make it possible to produce a standard type of locomotive which would be capable of meeting all requirements. Nevertheless, standardisation was necessary on the new South African Railways (SAR) and Hoy estimated that fifteen standard locomotive types would be sufficient to cover all the varying conditions. In March 1911, one of these new NGR locomotives, no. 368 of the 1911 batch, was used during comparative testing between locomotives of the constituent railways. It was brought up from Natal for testing against the Class 11 on the Witbank-Germiston coal line. The maximum load worked by the Class 11 was , while the Natal locomotive was able to manage at practically the same coal consumption. In 1912, these thirty Class B locomotives were renumbered in the range from 1446 to 1475 and designated on the SAR.


Watson Standard boilers

In the 1930s, many serving locomotives were reboilered with a standard boiler type, designed by then Chief Mechanical Engineer A.G. Watson, as part of his standardisation policy. Such Watson Standard reboilered locomotives were reclassified by adding an "R" suffix to their classification number. When 29 of the Class 3 locomotives, all except no. 1457, were eventually reboilered with superheated Watson Standard no. 2 boilers, they were therefore reclassified to Class 3R. Their original Belpaire boilers were fitted with Ramsbottom safety valves, while the Watson Standard boilers were fitted with Pop safety valves. The most obvious visual difference between an original and a Watson Standard reboilered locomotive is usually a rectangular regulator cover on the smokebox of the reboilered locomotive just to the rear of the chimney, but this was not always the case, as illustrated below. In the case of the Class 3R locomotive, an even more obvious visual distinction is the absence of the Belpaire firebox hump between the cab and the boiler. Locomotives usually had their slide valves replaced with
piston valves Piston valves are one form of valve used to control the flow of steam within a steam engine or locomotive. They control the admission of steam into the cylinders and its subsequent exhausting, enabling a locomotive to move under its own power ...
upon being fitted with superheated Watson Standard boilers, but the Class 3R retained their slide valves throughout their working lives.Soul of A Railway, System 1, Part 16: Table Bay Harbour © Les Pivnic. Caption 111.
(Accessed on 30 June 2017)
By the late 1960s, towards the end of their service lives, the Class 3 was distributed between the Orange Free State and the Cape Western systems. By this time, they were all used on shunting and pickup service, mainly around Bloemfontein, Beaufort West, Touws River and Cape Town. By 1970, the entire Class was concentrated in the Cape Western region. Despite their small coupled wheels, they could handle with ease and became the preferred power for Bellville haulers until the Class 14CRB took over this service. The Class 3 were finally withdrawn from service in 1974.


Works numbers and renumbering

The Class 3 works numbers, years built, numbering and SAR classification are listed in the table.


Preservation

One Class 3 hasdsurvived into preservation. Sandstone Heritage Trust - 2017016 Locomotive status - January 2017.
(accessed on 5 December 2017)


Illustration

The main picture shows NGR Class B no. 334, later SAR Class 3R no. 1450, as built with a Belpaire firebox and Type TJ tender. Both of the following pictures show Watson Standard reboilered Class 3R locomotives with modified Type TJ tenders. The first has the usual spotting feature of a Watson Standard reboilered locomotive, the rectangular regulator cover just to the rear of the chimney, while the second has a bolted on cover plate instead, flush with the smokebox top. File:SAR Class 3R (4-8-2).jpg, Reboilered Class 3R with the rectangular regulator cover, c. 1970 File:SAR Class 3R 1464 (4-8-2).jpg, Reboilered Class 3R no. 1464 without the rectangular regulator cover, at Paardeneiland on 26 June 1962


References

{{Steam locomotive tenders
1230 Year 1230 ( MCCXXX) was a common year starting on Tuesday (link will display the full calendar) of the Julian calendar. Events By place Byzantine Empire * March 9 – Battle of Klokotnitsa: Byzantine forces under Theodore Komnen ...
1230 Year 1230 ( MCCXXX) was a common year starting on Tuesday (link will display the full calendar) of the Julian calendar. Events By place Byzantine Empire * March 9 – Battle of Klokotnitsa: Byzantine forces under Theodore Komnen ...
1230 Year 1230 ( MCCXXX) was a common year starting on Tuesday (link will display the full calendar) of the Julian calendar. Events By place Byzantine Empire * March 9 – Battle of Klokotnitsa: Byzantine forces under Theodore Komnen ...
4-8-2 locomotives 2D1 locomotives NBL locomotives Cape gauge railway locomotives Railway locomotives introduced in 1909 1909 in South Africa Scrapped locomotives