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bronze

 
Dictionary: bronze   (brŏnz) pronunciation
n.
    1. Any of various alloys of copper and tin in various proportions, sometimes with traces of other metals.
    2. Any of various alloys of copper, with or without tin, and antimony, phosphorus, or other components.
  1. A work of art made of one of these alloys.
  2. A medal made of bronze awarded to one placing third in a competition, as in the Olympics.
    1. A moderate yellowish to olive brown.
    2. A pigment of this color.
adj.
  1. Made of or consisting of bronze.
  2. Of a moderate yellowish to olive brown.
tr.v., bronzed, bronz·ing, bronz·es.
  1. To give the color or appearance of bronze to.
  2. To make brown by exposure to the sun; tan.

[French, from Italian bronzo.]

bronzer bronz'er n.
bronzy bronz'y adj.

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Usually an alloy of copper and tin. Bronze is used in bearings, bushings, gears, valves, and other fittings both for water and steam.

The properties of bronze depend on its composition and working. Lead, zinc, silver, and other metals are added for special-purpose bronzes. Tin bronze, including statuary bronze, contains 2–20% tin; bell metal 15–25%; and speculum metal up to 33%. Gun metal contains 8–10% tin plus 2–4% zinc. Phosphor bronze is tin bronze hardened and strengthened with traces of phosphorus; it is used for fine tubing, wire springs, and machine parts. Lead bronze may contain up to 30% lead; it is used for cast parts such as low-pressure valves and fittings. Manganese bronze with 0.5–5% manganese plus other metals, but often no tin, has high strength. Aluminum bronze also contains no tin; its mechanical properties are superior to those of tin bronze, but it is difficult to cast. Silicon bronze, with up to 3% silicon, casts well and can be worked hot or cold by rolling, forging, and similar methods. Beryllium bronze (also called beryllium copper) has about 2% beryllium and no tin. The alloy is hard and strong and can be further hardened and strengthened by precipitation hardening; it is one of the few copper alloys that responds to heat treatment, approaching three times the strength of structural steel. See also Alloy; Copper; Tin.



Alloy traditionally composed of copper and tin. Bronze was first made before 3000 BC (see Bronze Age) and is still widely used, though iron often replaced bronze in tools and weapons after about 1000 BC because of iron's abundance compared to copper and tin. Bronze is harder than copper, more readily melted, and easier to cast. It is also harder than iron and far more resistant to corrosion. Bell metal (which produces pleasing sounds when struck) is bronze with 20 – 25% tin content. Statuary bronze, with less than 10% tin and an admixture of zinc and lead, is technically a brass. The addition of less than 1% phosphorus improves the hardness and strength of bronze; that formulation is used for pump plungers, valves, and bushings. Also useful in mechanical engineering are manganese bronzes, with little or no tin but considerable amounts of zinc and up to 4.5% manganese. Aluminum bronzes, containing up to 16% aluminum and small amounts of other metals such as iron or nickel, are especially strong and corrosion-resistant; they are cast or wrought into pipe fittings, pumps, gears, ship propellers, and turbine blades. Most "copper" coins are actually bronze, typically with about 4% tin and 1% zinc, or copper plating over base metal.

For more information on bronze, visit Britannica.com.

Architecture: bronze
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1. An alloy of copper and tin.
2. Any alloy, bronze in color, having a substantial admixture of copper to modify the properties of the principal element, as aluminum bronze, magnesium bronze, etc.



[Ma]

An alloy of copper (typically about 90 per cent) and tin (typically about 10 per cent). It has many advantages over pure copper, notably a lower melting point, better casting properties, and a greater hardness when cold. The big disadvantage was that tin is relatively scarce compared to copper and thus long-distance trading links were necessary in order to secure supplies. The earliest use of bronze in Europe was probably in the lower Danube or Carpathian region during the second half of the 3rd millennium bc, influenced by metalworking traditions still further to the east in the Caucasus.

 
bronze, in metallurgy, alloy of copper, tin, zinc, phosphorus, and sometimes small amounts of other elements. Bronzes are harder than brasses. Most are produced by melting the copper and adding the desired amounts of tin, zinc, and other substances. The properties of the alloy depend on the proportions of its components. Aluminum bronze has high strength and resists corrosion; it is used for bearings, valve seats, and machine parts. Leaded bronze, containing from 10% to 29% lead, is cast into heavy-duty bushings and bearings. Silicon bronze is used for telegraph wires and chemical containers. Phosphor bronze is used for springs. Bronze is used for coins, medals, steam fittings, and gunmetal and was formerly employed for cannon. Because of its particularly sonorous quality, bell metal, containing from 20% to 24% tin, is used for casting bells. Bronze has long been used in art, e.g., for castings, engravings, and forgings.


Wikipedia: Bronze
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Bronze is a metal alloy consisting primarily of copper, usually with tin as the main additive, but sometimes with other elements such as phosphorus, manganese, aluminium, or silicon. It was particularly significant in antiquity, giving its name to the Bronze Age. Bronze derives from the Italian: bronzo and, in turn, is perhaps ultimately taken from the Persian word birinj ("copper"), it is even believed that the word may have come from the Nordic word Brongru (brown).[1]

Contents

History

Chinese pu vessel with interlaced dragon design, Spring and Autumn Period (722 BC-481 BC)

Bronze was significant to any culture that encountered it. It was one of the most innovative alloys of humankind. Tools, weapons, armor, and various building materials like decorative tiles made of bronze were harder and more durable than their stone and copper ("Chalcolithic") predecessors. Initially bronze was made out of copper and arsenic to form arsenic bronze. It was only later that tin was used, becoming the sole type of bronze in the late 3rd millennium BC. Tin bronze was superior over arsenic bronze in that the alloying process itself could more easily be controlled (as tin was available as a metal) and the alloy was stronger and easier to cast. Also, unlike arsenic, tin is not toxic.

The earliest tin-alloy bronzes date to the late 4th millennium BC in Susa (Iran) and some ancient sites in Luristan (Iran) and Mesopotamia (Iraq).

Copper and tin ores are rarely found together (exceptions include one ancient site in Thailand and one in Iran), so serious bronze work has always involved trade. In Europe, the major source for tin was Great Britain's deposits of ore in Cornwall, which were traded as far as Phoenicia in the Eastern Mediterranean.

Though bronze is generally harder than wrought iron, with Vickers hardnesses of 60-258[2] vs 30-80[3], the Bronze Age gave way to the Iron Age; this happened because iron was easier to find. Bronze was still used during the Iron Age, but for many purposes the weaker wrought iron was found to be sufficiently strong. Archaeologists suspect that a serious disruption of the tin trade precipitated the transition. The population migrations around 1200 – 1100 BC reduced the shipping of tin around the Mediterranean (and from Great Britain), limiting supplies and raising prices.[4] As ironworking improved, iron became cheaper; and as cultures advanced from wrought iron to forged iron, they learned how to make steel, which is stronger than bronze and holds a sharper edge longer.[5]

Properties

Assorted ancient Bronze castings

Bronze can be superior to iron in many applications. It is considerably less brittle than iron. Typically bronze only oxidizes superficially; once a copper oxide (eventually becoming copper carbonate) layer is formed, the underlying metal is protected from further corrosion. However, if copper chlorides are formed, a corrosion-mode called "bronze disease" will eventually completely destroy it.[6] Copper-based alloys have lower melting points than steel or iron, and are more readily produced from their constituent metals. They are generally about 10 percent heavier than steel, although alloys using aluminium or silicon may be slightly less dense. Bronzes are softer and weaker than steel, e.g. bronze springs are less stiff (and so store less energy) for the same bulk. Bronze resists corrosion (especially seawater corrosion) and metal fatigue better than steel and also conducts heat and electricity better than most steels. The cost of copper-base alloys is generally higher than that of steels but lower than that of nickel-base alloys such as stainless steel.

Copper and its alloys have a huge variety of uses that reflect their versatile physical, mechanical, and chemical properties. Some common examples are the high electrical conductivity of pure copper, the excellent deep drawing qualities of cartridge case brass, the low-friction properties of bearing bronze, the resonant qualities of bell bronze, and the resistance to corrosion by sea water of several bronze alloys.

Uses

Ewer from 7th century Iran. Cast, chased, and inlaid bronze. New York Metropolitan Museum of Art

Bronze was especially suitable for use in boat and ship fittings prior to the wide employment of stainless steel owing to its combination of toughness and resistance to salt water corrosion. Bronze is still commonly used in ship propellers and submerged bearings.

In the twentieth century, silicon was introduced as the primary alloying element, creating an alloy with wide application in industry and the major form used in contemporary statuary. Aluminium is also used for the structural metal aluminium bronze.

It is also widely used for cast bronze sculpture. Many common bronze alloys have the unusual and very desirable property of expanding slightly just before they set, thus filling in the finest details of a mould. Bronze parts are tough and typically used for bearings, clips, electrical connectors and springs.

Spring bronze weatherstripping comes in rolls of thin sheets and is nailed or stapled to wood windows and doors. There are two types, flat and v-strip. It has been used for hundreds of years because it has low friction, seals well and is long lasting. It is used in building restoration and custom construction.

Bronze also has very little metal-on-metal friction, which made it invaluable for the building of cannon where iron cannonballs would otherwise stick in the barrel.[citation needed] It is still widely used today for springs, bearings, bushings, automobile transmission pilot bearings, and similar fittings, and is particularly common in the bearings of small electric motors. Phosphor bronze is particularly suited to precision-grade bearings and springs. It is also used in guitar and piano strings.

Bronze is typically 88% copper and 12% tin.[7] Alpha bronze consists of the alpha solid solution of tin in copper. Alpha bronze alloys of 4–5% tin are used to make coins, springs, turbines and blades.

Commercial bronze (90% copper and 10% zinc) and Architectural bronze (57% Copper, 3% Lead, 40% Zinc) are actually brass alloys because they contain zinc as the main alloying ingredient. They are commonly used in architectural applications. [8][9]

Unlike steel, bronze struck against a hard surface will not generate sparks, so it (along with beryllium copper) is used to make hammers, mallets, wrenches and other durable tools to be used in explosive atmospheres or in the presence of flammable vapours.

Bronze statues

Indian Hindu artisans from the period of the Chola empire in Tamil Nadu, used bronze to create intricate statues via the lost wax casting method with ornate detailing depicting the Gods of Hinduism mostly, but also the lifestyle of the period. The art form survives to this day, with many silpis, craftsmen, working in the areas of Swamimalai and Chennai.

In antiquity other cultures also produced works of high art using bronze. For example: in Africa the bronze heads of the Kingdom of Benin, in Europe; Grecian bronzes typically of figures from Greek mythology, in east Asia; Chinese bronzes of the Shang and Zhou dynasty — more often ceremonial vessels but including some figurine examples.

Bronze continues into modern times as one of the materials of choice for monumental statuery.

Musical instruments

Bronze is the most popular metal for top-quality bells, particularly bell metal, which is about 23% tin.

Nearly all professional cymbals are made from a bronze alloy. The alloy used in drum kit cymbal bronze is unique in the desired balance of durability and timbre.

According to a legend (on the Zildjian cymbals website), in 1623, an Armenian man in Turkey named Avedis Zildjian, an alchemist, was attempting to form base metals into gold. Upon dropping an ingot on the ground, he was amazed at how well it rang. He was given the title Zildjian ("son of cymbal maker") by the Turkish Sultan. Today, the Avedis Zildjian Corporation is the largest maker of cymbals in the world.[10]

Modern cymbals consist of several types of bronze, the most common being B20 bronze, which is roughly 20% tin, 80% copper, with traces of silver. Zildjian and Sabian use this alloy for their professional lines. A Swiss company, Paiste, uses a softer B8 bronze which is made from 8% tin and 92% copper in nearly all of their cymbals. Zildjian and Sabian use this metal too, in their budget priced cymbals.

As the tin content in a bell or cymbal rises, the timbre drops.[11] As well as B8 and B20, Meinl Percussion uses B10 (10% tin) and B12 (12% tin) alloys for cymbals, which have timbres roughly between B8 and B20.[12]

Bronze is also used for the windings of steel strings of various stringed instruments such as the double bass, piano, harpsichord, and the guitar, replacing former gut and nylon strings. Bronze strings are commonly reserved on pianoforte for the lower pitch tones, as they possess a superior sustain quality to that of high-tensile steel[13]

Bronzes of various metallurgical properties are widely used in struck idiophones around the world, notably in South East Asia, and most famously for the Javanese gamelan and other glockenspiel-like musical instruments. The earliest bronze archeological finds in Indonesia date from 1-2 BCE, including flat plates probably suspended and struck by a wooden or bone mallet.[13][14]

Some companies are now making saxophones from phosphor bronze (3.5 to 10% tin and up to 1% phosphor content).

See also

Fragment of the grave of Cyprian Kamil Norwid in the Bards' crypt in Wawel Cathedral, Kraków, Poland by sculptor Czesław Dźwigaj

References

  1. ^ Bronze at the Online Etymological Dictionary
  2. ^ http://www.allaboutgemstones.com/metal_jewelry_bronze.html
  3. ^ Smithells Metals Reference Book, 8th Edition, ch. 22
  4. ^ http://www.claytoncramer.com/Iron2.pdf
  5. ^ Ancient Blacksmiths, the Iron Age, Damascus Steels, and Modern Metallurgy
  6. ^ http://proteus.brown.edu/greekpast/4867
  7. ^ Knapp, Brian. (1996) Copper, Silver and Gold. Reed Library, Australia.
  8. ^ http://www.copper.org/applications/architecture/arch_dhb/copper_alloys/intro.html
  9. ^ http://www.copper.org/resources/properties/standard-designations/introduction.html
  10. ^ Background of Zildjian
  11. ^ Von Falkenhausen, Lothar (1993). Suspended Music: Chime-Bells in the Culture of Bronze Age China. Berkeley and Los Angeles: University of California Press. pp. 106. http://books.google.com/books?id=ve1h53NTNW0C&pg=PA106&lpg=PA106. 
  12. ^ MEINL CYMBALS... INSPIRE: 4 IS MORE
  13. ^ a b McCreight, Tim. Metals technic: a collection of techniques for metalsmiths. Brynmorgen Press, 1992. ISBN 0961598433
  14. ^ LaPlantz, David. Jewelry - Metalwork 1991 Survey: Visions - Concepts - Communication: S. LaPlantz: 1991. ISBN 0942002059

External links


Translations: Bronze
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Dansk (Danish)
n. - bronze, bronzefarvet
v. tr. - bronzere
adj. - bronzefarvet

idioms:

  • Bronze Age    bronzealderen

Nederlands (Dutch)
brons, bronzen voorwerp, bronskleurig, bronzen, bruinen

Français (French)
n. - bronze
v. tr. - bronzer (le métal), brunir, faire bronzer
adj. - de bronze

idioms:

  • Bronze Age    l'âge du Bronze

Deutsch (German)
n. - Bronze
v. - bronzieren, (sich) bräunen
adj. - bronzen, aus Bronze

idioms:

  • Bronze Age    Bronzezeit

Ελληνική (Greek)
n. - μπρούντζος, ορείχαλκος
adj. - μπρούντζινος, ορειχάλκινος
v. - επιμεταλλώνω με ορείχαλκο, επιορειχαλκώνω

idioms:

  • Bronze Age    Εποχή του Χαλκού

Italiano (Italian)
bronzo, medaglia di bronzo, bronzeo

idioms:

  • Bronze Age    età del bronzo

Português (Portuguese)
n. - bronze (m), cor (f) de bronze, estátua (f) ou placa (f) de bronze
adj. - da cor de bronze
v. - dar aparência ou cor de bronze a

idioms:

  • Bronze Age    idade (f) do bronze

Русский (Russian)
бронза, бронзовая медаль, бронзовый

idioms:

  • Bronze Age    бронзовый век

Español (Spanish)
n. - bronce, medalla de bronce
v. tr. - broncear
adj. - bronceado

idioms:

  • Bronze Age    edad del bronce

Svenska (Swedish)
n. - brons, bronsfärg
adj. - bronsfärgad, i brons
v. - bronsera, göra brun

中文(简体)(Chinese (Simplified))
青铜, 铜像, 镀青铜于, 上青铜色于, 青铜制的, 青铜色的

idioms:

  • Bronze Age    青铜器时代

中文(繁體)(Chinese (Traditional))
n. - 青銅, 銅像
v. tr. - 鍍青銅於, 上青銅色於
adj. - 青銅製的, 青銅色的

idioms:

  • Bronze Age    青銅器時代

한국어 (Korean)
n. - 청동[색, 제품]
v. tr. - ~을 청동색으로 하다, ~을 단단하게 하다
adj. - 청동제[청동색]의

日本語 (Japanese)
n. - ブロンズ, ブロンズ製品, ブロンズ製の美術品, ブロンズ色, 青銅色
adj. - ブロンズ製の, ブロンズ色の, 青銅色になる
v. - ブロンズ色にする, 日に焼く

idioms:

  • Bronze Age    青銅器時代

العربيه (Arabic)
‏(الاسم) معن من النحاس, و القصدير, اللون البرونزي, تحفه فنيه من البرونز (صفه) ذو لون برونزي, مصنوع من البرونز (فعل) طلى بالبرونز, لفحته الشمس‏

עברית (Hebrew)
n. - ‮ארד, ברונזה, צבע בגון הארד, כלי-ברונזה, צבע החום הבהיר של הארד‬
v. tr. - ‮שיזף, צבע בגון הארד‬
adj. - ‮בצבע הברונזה‬


 
 
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