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Electrotyping (also galvanoplasty) is a chemical method for forming metal parts that exactly reproduce a model. The method was invented by
Moritz von Jacobi Moritz Hermann or Boris Semyonovich (von) Jacobi (russian: Борис Семёнович Якоби; 21 September 1801, Potsdam – 10 March 1874, Saint Petersburg) was a Prussian and Russian Imperial engineer and physicist of Jewish descent. Ja ...
in
Russia Russia (, , ), or the Russian Federation, is a transcontinental country spanning Eastern Europe and Northern Asia. It is the largest country in the world, with its internationally recognised territory covering , and encompassing one-ei ...
in 1838, and was immediately adopted for applications in printing and several other fields. As described in an 1890 treatise, electrotyping produces "an exact facsimile of any object having an irregular surface, whether it be an engraved steel- or copper-plate, a wood-cut, or a form of set-up type, to be used for printing; or a medal, medallion, statue, bust, or even a natural object, for art purposes." In art, several important "
bronze Bronze is an alloy consisting primarily of copper, commonly with about 12–12.5% tin and often with the addition of other metals (including aluminium, manganese, nickel, or zinc) and sometimes non-metals, such as phosphorus, or metalloids suc ...
" sculptures created in the 19th century are actually electrotyped copper, and not bronze at all; sculptures were executed using electrotyping at least into the 1930s. In printing, electrotyping had become a standard method for producing plates for letterpress printing by the late 1800s. It complemented the older technology of stereotyping, which involved metal casting. By 1901, stereotypers and electrotypers in several countries had formed labor unions around these crafts. The unions persisted into the 1970s, but by the late 20th century, after more than a century in widespread use for preparing plates, the two technologies had been bypassed by the transitions to offset printing and to new techniques for the preparation of printing plates.


Technical description

As with metal casting and stereotyping, a mold is first formed from the model. Since electrotyping involves wet chemical processes and is done near room temperature, the molding material can be soft. Materials such as wax,
gutta-percha Gutta-percha is a tree of the genus '' Palaquium'' in the family Sapotaceae. The name also refers to the rigid, naturally biologically inert, resilient, electrically nonconductive, thermoplastic latex derived from the tree, particularly fr ...
(natural latex), and ultimately
ozokerite Ozokerite or ozocerite, archaically referred to as earthwax or earth wax, is a naturally occurring odoriferous mineral wax or paraffin found in many localities. Lacking a definite composition and crystalline structure, it is not considered a min ...
were used. The mold's surface is made electrically conducting by coating it very thinly with fine graphite powder or paint. A wire is attached to the conducting surface, and the mold is suspended in an
electrolyte An electrolyte is a medium containing ions that is electrically conducting through the movement of those ions, but not conducting electrons. This includes most soluble salts, acids, and bases dissolved in a polar solvent, such as water. Upon ...
solution. Electrotyping is activated by electric currents that flow between
anode An anode is an electrode of a polarized electrical device through which conventional current enters the device. This contrasts with a cathode, an electrode of the device through which conventional current leaves the device. A common mnemonic is ...
wires that are also immersed in the solution and the wire connected to the coated mold (the
cathode A cathode is the electrode from which a conventional current leaves a polarized electrical device. This definition can be recalled by using the mnemonic ''CCD'' for ''Cathode Current Departs''. A conventional current describes the direction in whi ...
). For copper electrotyping, a typical aqueous electrolyte contains
copper sulfate Copper sulfate may refer to: * Copper(II) sulfate, CuSO4, a common compound used as a fungicide and herbicide * Copper(I) sulfate Copper(I) sulfate, also known as cuprous sulfate, is an inorganic compound with the chemical formula Cu2 SO4. It ...
(CuSO4) and
sulfuric acid Sulfuric acid (American spelling and the preferred IUPAC name) or sulphuric acid ( Commonwealth spelling), known in antiquity as oil of vitriol, is a mineral acid composed of the elements sulfur, oxygen and hydrogen, with the molecular fo ...
(H2SO4), and the anode is also copper; the arrangement is illustrated in the figure. The electric current causes copper atoms to dissolve from the anode's surface and to enter the electrolyte as copper ions (Cu++ in the figure). Copper ions are taken up by the mold's conducting surface at the same rate at which copper dissolves from the anode, thus completing the electrical circuit. When the copper layer on the mold grows to the desired thickness, the electric current is stopped. The mold and its attached electrotype are removed from the solution, and the electrotype and the mold are separated. An animation of the electrotyping process was produced in 2011 by the
Metropolitan Museum of Art The Metropolitan Museum of Art of New York City, colloquially "the Met", is the largest art museum in the Americas. Its permanent collection contains over two million works, divided among 17 curatorial departments. The main building at 1000 ...
. Other metals besides copper can be electrotyped; similar procedures apply, but each different metal needs its own anode and electrolyte chemicals. There is a second type of electrotyping that has been used in which the copper film is deposited onto the outside of a form, and is not separated from it. In this use the form is typically waterproofed plaster, which remains as a core after electrotyping. In German this method is known as ''Kerngalvanoplastik''; the more usual technique described in the previous paragraph is known as ''Hohlgalvanoplastik''. Electrotyping is related to
electroplating Electroplating, also known as electrochemical deposition or electrodeposition, is a process for producing a metal coating on a solid substrate through the reduction of cations of that metal by means of a direct electric current. The part to be ...
, which permanently adds a thin metallic overlayer to a metallic object instead of creating a freestanding metal part. Electrotyping and electroforming both produce metal parts, but differ in technical details. Electroforming involves the production of a metallic part around a metallic mandrel, although the term is sometimes used more broadly to encompass all electrodeposition processes. As noted above, electrotyping forms the part using a non-conducting mold or form whose surface has been made conducting by applying a thin coating of graphite or metal powder.


The invention and subsequent developments

At present, most sources credit Moritz Hermann Jacobi with the invention of "galvanoplasty" or electrotyping in 1838; Jacobi was a Prussian scientist who was working in St. Petersburg, Russia. Nineteenth-century accounts often credited Thomas Spencer or C. J. Jordan with the invention in England, or Joseph Alexander Adams in the United States; Heinrich in particular gave a thorough account of the controversies surrounding the crediting of the invention, along with a short biography of Jacobi, in an article honoring the centennial of electrotyping in 1938. The electrotyping industry was limited for some decades by the sources of the electric currents needed to activate the deposition of metal films into the mold; the rate of film growth is proportional to the magnitude of this current. In the initial work, the Daniell cell was used to provide these currents. The Daniell cell was largely replaced by the Smee cell (amalgamated zinc and platinized silver in sulfuric acid) after the latter's invention by
Alfred Smee Alfred Smee FRS, FRCS (18 June 1818, Camberwell – 11 January 1877, Finsbury Circus) was an English surgeon, chemist, metallurgist, electrical researcher and inventor. He was also an orchid enthusiast. Born the second son of William Smee, acco ...
in 1840. Both of these cells are forerunners of contemporary electrical batteries. By the 1870s, mechanical generators were being used; the larger currents that could be sustained by generators enabled substantial increases in the rate of metal deposition during electrotyping.


Electrotyping in printing

One of the first applications of electrotyping was in printing. Initially, electrotyping was used to make copper reproductions of engraved metal plates or wooden carvings, which were used to print artwork. The electrotypes could be incorporated along with movable type to compose the formes for printing. Jacobi published his first account of electrotyping in October 1838. In 1839, electrotyping was used by Russian printers for government documents; the Russian Czar Nicholas I had immediately become an enthusiastic supporter and patron of the technology. In England, the first use of electrotyping for printing appeared in the ''London Journal'' of April 1840, and other English examples are known from later in that year. The image to the right shows one of the earliest uses of electrotyping in the United States; it is a comparison done by Joseph Alexander Adams in 1841 of the printed image prepared directly from a wood carving and of the image printed from a copper electrotype copy. Electrotyped copper plates could be formed into cylinders, which was valuable for use in magazine and newspaper printing. Electrotyping was also used to produce entire printing plates directly from the formes composed from movable type and illustrations. In this application, electrotyping was a higher quality but more costly alternative to stereotyping, which involved casting of type metal into a mold prepared from the forme. Stereotyping had been invented around 1725, and was already well-established when electrotyping was invented in 1838. Both methods yielded plates that could be preserved in case of future needs, for example in the printing of novels and other books of unpredictable popularity. The movable type used to compose the original forme could then be re-used. Both methods could be used to prepared curved plates for rotary presses, which were used for the longest print runs. The widespread adoption of electrotyping for this use occurred after mechanical electrical generators ( dynamos) became commonly available around 1872. These generators supplanted the whole rooms of chemical batteries (Smee cells) that were previously used to provide electricity for electrotyping. Batteries did not have the electrical capacity needed to rapidly deposit the electrotype (or "electro"). The advent of plating dynamos sped up electrotyping twenty times or more, so that an electrotype printing plate could be deposited in less than two hours. In addition, the chemical batteries gave off toxic fumes that had required their isolation in separate rooms. Electrotype was also used to manufacture matrices that could be used as moulds for individual pieces of metal type. This had several advantages over traditional punchcutting in hard steel: the type master only needed to be carved out of soft metal, and was also useful for large sizes of type, since it was hard to drive large punches into a matrix effectively. It cut the cost of decorative types that would not be used so often as body text typefaces. On the other hand, it gave no steel punch that could be used to create multiple matrices quickly, and was reported to not always give such good results as steel punchcutting. Electrotyping was used for general purpose type manufacture in the nineteenth century, but was a somewhat disreputable process, leading to some typefounders disdaining it (or at least claiming to). This was because it could just as easily be used to pirate another company's type as an original design. (It was also used to revive older typefaces in cases where original punches had not survived but matrices or type had, and so sometimes for licensed copying of typefaces in order to send matrices to other countries.) By the 1900s printing plants often incorporated electrotyping and stereotyping departments, and electrotyping and stereotyping had become trades with associated apprenticeships. In the United Kingdom, the National Society of Electrotypers and Stereotypers (NSES) formed in 1893, and continued to 1967 when it amalgamated with the National Graphic Association. In the US and Canada, the
International Stereotypers and Electrotypers Union The International Stereotypers' and Electrotypers' Union (ISEU) was a labor union representing workers in two related trades in the United States and Canada. The union was founded in August 1902, as a split from the International Typographical Unio ...
(ISEU) was formed in 1902; previously, electrotypers had belonged to the International Typographer's Union (ITU). In 1925 there were 6800 members, and in 1955 10,500. In 1973 the ISEU was absorbed into the International Printing and Graphic Communications Union. In 1978, an ''Occupational Outlook Handbook'' reported that 2000 electrotypers and stereotypers were employed in the US. However, job prospects were reported as poor. Offset printing has supplanted letterpress printing in most printing plants; the last letterpress facility for a newspaper was installed in the 1980s. For offset printing, the printing plates are typically prepared by coating them with light-sensitive materials, and creating the image on the plate by direct optical exposure (the
photo-offset Offset printing is a common printing technique in which the inked image is transferred (or "offset") from a plate to a rubber blanket and then to the printing surface. When used in combination with the lithographic process, which is based on t ...
process); stereotyping and electrotyping are not used. A slight problem with electrotyping of type is that the new form is slightly smaller than the original, and this deviance could accumulate if a letterform was repeatedly regenerated. Stephenson Blake's solution was to squash type slightly in a press or file it down to broaden it before putting it into the electrotype bath.


Electrotyping in art

Electrotyping has been used for the production of metal sculptures, where it is an alternative to the casting of molten metal. These sculptures are sometimes called "galvanoplastic bronzes", although the actual metal is usually copper. It was possible to apply essentially any patina to these sculptures; gilding was also readily accomplished in the same facilities as electrotyping by using electroplating. Electrotyping has been used to reproduce valuable objects such as ancient coins, and in some cases electrotype copies have proven more durable than fragile originals. One of the earliest documented large-scale () electrotype sculptures was John Evan Thomas's ''Death of Tewdric Mawr, King of Gwent'' (1849). The electrotype was done by Elkington, Mason, & Co. for the Great Exhibition of 1851. Among the most spectacular early examples are Josef Hermann's twelve angels (1858) at the base of the cupola of
Saint Isaac's Cathedral Saint Isaac's Cathedral or Isaakievskiy Sobor (russian: Исаа́киевский Собо́р) is a large architectural landmark cathedral that currently functions as a museum with occasional church services in Saint Petersburg, Russia. It is ...
in St. Petersburg, Russia (see photograph A below). As described by Théophile Gautier in 1867, "They are twenty-one feet high, and were made by the galvanoplastic process in four pieces, whose welding together is invisible. They could in this manner be made so light that, in spite of their dimensions, they would not be too heavy for the cupola. This crown of gilt angels, poised amid a flood of light, and shining with rich reflections, produces an extremely rich effect." Other important sculptures followed; David A. Scott has written, "Some extremely important commissions were made in electrotypes, such as the "bronzes" that adorn the Opera, Paris, and the 320 cm high statue of Prince Albert and four accompanying figures, erected behind the Albert Hall in London as a memorial to the Great Exhibition of 1851." The statue of Prince Albert was unveiled in 1861 (see photograph B below); the electrotyping process "was one in which the Prince Consort had had great faith." The
Palais Garnier The Palais Garnier (, Garnier Palace), also known as Opéra Garnier (, Garnier Opera), is a 1,979-seatBeauvert 1996, p. 102. opera house at the Place de l'Opéra in the 9th arrondissement of Paris, France. It was built for the Paris Opera fro ...
in Paris (the Opera) has two 7.5 meter tall sculptures above the main facade; the building was completed in 1869 (see photograph C below). In the 19th century, museums often displayed electrotypes of ancient coins instead of the originals (see photograph D below), and individuals purchased electrotypes for their private collections. By 1920, the
Victoria and Albert Museum The Victoria and Albert Museum (often abbreviated as the V&A) in London is the world's largest museum of applied arts, decorative arts and design, housing a permanent collection of over 2.27 million objects. It was founded in 1852 and nam ...
in England had acquired nearly 1000 electrotyped copies of important objects from the collections of other European museums. The most celebrated may be their copy of the Jerningham wine cooler, which is a spectacular silverwork made in England in 1735 that has long been in the collection of the
Hermitage Museum The State Hermitage Museum ( rus, Государственный Эрмитаж, r=Gosudarstvennyj Ermitaž, p=ɡəsʊˈdarstvʲɪn(ː)ɨj ɪrmʲɪˈtaʂ, links=no) is a museum of art and culture in Saint Petersburg, Russia. It is the larges ...
in Russia. Many of these objects were made by Elkington & Co., which had an extensive business in electrotyped silver. An important example of electrotyping's use for preservation is the electrotype of the plaster life-mask of the poet
John Keats John Keats (31 October 1795 – 23 February 1821) was an English poet of the second generation of Romantic poets, with Lord Byron and Percy Bysshe Shelley. His poems had been in publication for less than four years when he died of tuberculos ...
(see photograph E below). The original life mask was made by Haydon in 1816. The plaster mask was electrotyped in 1884 by Elkington & Co., and this copper copy is now apparently in better condition than the plaster original. From 1890 through at least 1930, the ''Abteilung für Galvanoplastic'' of the WMF Company in Germany produced many statues and other items using electrotyping. The statues in particular were significantly less expensive than bronze castings. Memorials in German cemeteries from this era often incorporated electroptyped statues from models that had been commissioned by WMF from well-known sculptors (see photograph F below). WMF also undertook larger commissions. One example is the full-sized copper electrotype (1911) of
Ernst Rietschel Ernst Friedrich August Rietschel (15 December 180421 January 1861) was a German sculptor. Life Rietschel was born in Pulsnitz in Saxony the third child of Friedrich Ehrgott Rietschel and his wife Caroline. From the age of 20 he became an art ...
's 1857 bronze for the
Goethe–Schiller Monument The original ''Goethe–Schiller Monument'' (German: ''Goethe-Schiller-Denkmal'') is in Weimar, Germany. It incorporates Ernst Friedrich August Rietschel, Ernst Rietschel's 1857 bronze double statue of Johann Wolfgang von Goethe, Johann Wolfgang ...
in Weimar, Germany, which is about tall (see photograph at right). Many sculptors have experimented with the technique of electrotyping a plaster form that remains as the core of the finished sculpture (''Kerngalvanoplastik''). As one example, the sculptor
Elie Nadelman Elie Nadelman (born Eliasz Nadelman; February 20, 1882 – December 28, 1946) was a Polish-American sculptor, draughtsman and collector of folk art. Early years Nadelman was born and studied briefly in Warsaw and then visited Munich in 1902 ...
did several significant sculptures in the 1920s and 1930s using this technique. The advantage was that Nadelman could have these "galvanoplastique" metal sculptures made quickly and inexpensively. Such sculptures can degrade quickly, and have presented significant preservation and restoration problems. File:Свод Исаакиевского собора.JPG, A. Among the earliest and most spectacular large sculptures produced by copper electrotyping were twelve gilt angels (ca. 1858) by Josef Hermann that stand in the cupola of
Saint Isaac's Cathedral Saint Isaac's Cathedral or Isaakievskiy Sobor (russian: Исаа́киевский Собо́р) is a large architectural landmark cathedral that currently functions as a museum with occasional church services in Saint Petersburg, Russia. It is ...
in St. Petersburg, Russia. These sculptures are tall; the metal needed to be thin enough so that the weight of the sculptures could be supported high above the cathedral's floor. File:Royal Albert Hall Londres.jpg, B. Memorial (1863) to The Great Exhibition of 1851 by Joseph Durham. The uppermost statue is of
Prince Consort Albert Prince Albert of Saxe-Coburg and Gotha (Franz August Karl Albert Emanuel; 26 August 1819 – 14 December 1861) was the consort of Queen Victoria from their marriage on 10 February 1840 until his death in 1861. Albert was born in the Saxon duch ...
; all five statues are electrotypes. The memorial stands before
Royal Albert Hall The Royal Albert Hall is a concert hall on the northern edge of South Kensington, London. One of the UK's most treasured and distinctive buildings, it is held in trust for the nation and managed by a registered charity which receives no govern ...
in London, England. File:Harmony Gumery Palais Garnier.jpg, C. ''L'Harmonie'' (1869) by Charles Guméry is a tall sculpture that crowns the
Palais Garnier The Palais Garnier (, Garnier Palace), also known as Opéra Garnier (, Garnier Opera), is a 1,979-seatBeauvert 1996, p. 102. opera house at the Place de l'Opéra in the 9th arrondissement of Paris, France. It was built for the Paris Opera fro ...
(the Opera) in Paris, France. The statue is a gilded copper electrotype, sometimes called a galvanoplastic bronze. File:Canterburystmartinhoardreplicas.jpg, D. Electrotypes of 5th-century coins from the
Canterbury-St Martin's hoard The Canterbury-St Martin's hoard is a coin-hoard found in the 19th century at Canterbury, Kent dating from the 6th century. The group, in the World Museum, Liverpool, consists of eight items, including three gold coins mounted with suspension ...
in England. Electrotype copies of coins and antiquities were produced for museum display and for private collectors. File:Poland Half Taler 1771 Silver electrotype copy.jpg, Stanislaus August on a Polish Half Taler, a very rare pattern coin of 1771. Electrotype. File:Keatslifemask.jpg, E. Reproduction of the electrotype of the poet
John Keats John Keats (31 October 1795 – 23 February 1821) was an English poet of the second generation of Romantic poets, with Lord Byron and Percy Bysshe Shelley. His poems had been in publication for less than four years when he died of tuberculos ...
' 1816 life-mask. The electrotype was made in 1884 by Elkington & Co. for the British National Portrait Gallery. File:Engel-R Liebhaber-Mutter Erde fec.jpg, F. Copper electrotype (ca. 1903) of Raimund Liebhaber's sculpture of an angel. In the early 20th century, the ''Abteilung für Galvanoplastik'' (Galvanoplastic Division) of the WMF company produced many electrotype sculptures for German cemeteries.


See also

*
Luigi Galvani Luigi Galvani (, also ; ; la, Aloysius Galvanus; 9 September 1737 – 4 December 1798) was an Italian physician, physicist, biologist and philosopher, who studied animal electricity. In 1780, he discovered that the muscles of dead frogs' legs ...
* Electroforming


References


Further reading

* A3 format poster explaining these aspects of printing. This poster is part of a series of 34 by Easson; see . * Based on Langbein's ''Handbuch der Galvanischen Metall-Metallniederschläge''. Langbein published six editions of this handbook in German, as well as cooperating with versions in English such as this one; see Georg Langbein (in German). This "American edition" has numerous figures illustrating technical procedures for electrodeposition. * * * Based on ''Manipulations Hydroplastique''. Chapter LIX has a very complete description of the steps in electrotyping for printing, with figures. * Commercial website traces the history of one manufacturer of electrotyped art metal in the US from the 1880s through the 1930s. The firm was created by P. Mori and Sons, who manufactured objects with the brand name Galvano Bronze. Subsequent names included: Pompeian Bronze, Armor Bronze, Marion Bronze, Kathodion Bronze Works and LaFrance Bronze Arts. {{Letterpress Russian inventions Chemical processes Typography Printing Sculpture techniques 1838 introductions