Equivalent Carbon Content
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The equivalent carbon content concept is used on ferrous materials, typically
steel Steel is an alloy made up of iron with added carbon to improve its strength and fracture resistance compared to other forms of iron. Many other elements may be present or added. Stainless steels that are corrosion- and oxidation-resistant ty ...
and
cast iron Cast iron is a class of iron–carbon alloys with a carbon content more than 2%. Its usefulness derives from its relatively low melting temperature. The alloy constituents affect its color when fractured: white cast iron has carbide impuriti ...
, to determine various properties of the alloy when more than just
carbon Carbon () is a chemical element with the symbol C and atomic number 6. It is nonmetallic and tetravalent In chemistry, the valence (US spelling) or valency (British spelling) of an element is the measure of its combining capacity with o ...
is used as an alloyant, which is typical. The idea is to convert the percentage of alloying elements other than carbon to the equivalent carbon percentage, because the iron-carbon phases are better understood than other iron-alloy phases. Most commonly this concept is used in
welding Welding is a fabrication (metal), fabrication process that joins materials, usually metals or thermoplastics, by using high heat to melt the parts together and allowing them to cool, causing Fusion welding, fusion. Welding is distinct from lower ...
, but it is also used when
heat treating Heat treating (or heat treatment) is a group of industrial, thermal and metalworking processes used to alter the physical, and sometimes chemical, properties of a material. The most common application is metallurgical. Heat treatments are also ...
and
casting Casting is a manufacturing process in which a liquid material is usually poured into a mold, which contains a hollow cavity of the desired shape, and then allowed to solidify. The solidified part is also known as a ''casting'', which is ejected ...
cast iron.


Steel

In welding, equivalent carbon content (C.E) is used to understand how the different alloying elements affect hardness of the steel being welded. This is then directly related to hydrogen-induced
cold cracking In metalworking, a welding defect is any flaw that compromises the usefulness of a weldment. There is a great variety of welding defects. Welding imperfections are classified according to ISO 6520, while their acceptable limits are specified in I ...
, which is the most common weld defect for steel, thus it is most commonly used to determine
weldability The weldability, also known as joinability,. of a material refers to its ability to be welded. Many metals and thermoplastics can be welded, but some are easier to weld than others (see Rheological weldability). A material's weldability is used to ...
. Higher concentrations of carbon and other alloying elements such as
manganese Manganese is a chemical element with the symbol Mn and atomic number 25. It is a hard, brittle, silvery metal, often found in minerals in combination with iron. Manganese is a transition metal with a multifaceted array of industrial alloy use ...
,
chromium Chromium is a chemical element with the symbol Cr and atomic number 24. It is the first element in group 6. It is a steely-grey, lustrous, hard, and brittle transition metal. Chromium metal is valued for its high corrosion resistance and hardne ...
,
silicon Silicon is a chemical element with the symbol Si and atomic number 14. It is a hard, brittle crystalline solid with a blue-grey metallic luster, and is a tetravalent metalloid and semiconductor. It is a member of group 14 in the periodic tab ...
,
molybdenum Molybdenum is a chemical element with the symbol Mo and atomic number 42 which is located in period 5 and group 6. The name is from Neo-Latin ''molybdaenum'', which is based on Ancient Greek ', meaning lead, since its ores were confused with lea ...
,
vanadium Vanadium is a chemical element with the symbol V and atomic number 23. It is a hard, silvery-grey, malleable transition metal. The elemental metal is rarely found in nature, but once isolated artificially, the formation of an oxide layer ( pas ...
,
copper Copper is a chemical element with the symbol Cu (from la, cuprum) and atomic number 29. It is a soft, malleable, and ductile metal with very high thermal and electrical conductivity. A freshly exposed surface of pure copper has a pinkis ...
, and
nickel Nickel is a chemical element with symbol Ni and atomic number 28. It is a silvery-white lustrous metal with a slight golden tinge. Nickel is a hard and ductile transition metal. Pure nickel is chemically reactive but large pieces are slow to ...
tend to increase hardness and decrease weldability. Each of these elements tends to influence the hardness and weldability of the steel to different magnitudes, however, making a method of comparison necessary to judge the difference in hardness between two alloys made of different alloying elements. There are two commonly used formulas for calculating the equivalent carbon content. One is from the
American Welding Society The American Welding Society (AWS) was founded in 1919 as a non-profit organization to advance the science, technology and application of welding and allied joining and cutting processes, including brazing, soldering and thermal spraying. Headqu ...
(AWS) and recommended for structural steels and the other is the formula based on the
International Institute of Welding International is an adjective (also used as a noun) meaning "between nations". International may also refer to: Music Albums * ''International'' (Kevin Michael album), 2011 * ''International'' (New Order album), 2002 * ''International'' (The T ...
(IIW).. The AWS states that for an equivalent carbon content above 0.40% there is a potential for cracking in the
heat-affected zone In fusion welding, the heat-affected zone (HAZ) is the area of base material, either a metal or a thermoplastic, which is not melted but has had its microstructure and properties altered by welding or heat intensive cutting operations. The heat ...
(HAZ) on flame cut edges and welds. However, structural engineering standards rarely use CE, but rather limit the maximum percentage of certain alloying elements. This practice started before the CE concept existed, so just continues to be used. This has led to issues because certain high strength steels are now being used that have a CE higher than 0.50% that have brittle failures. :CE = \%\text + \frac + \frac + \frac The other and most popular formula is the Dearden and O'Neill formula, which was adopted by IIW in 1967. This formula has been found suitable for predicting hardenability in a large range of commonly used plain carbon and carbon-manganese steels, but not to microalloyed high-strength low-alloy steels or low-alloy Cr-Mo steels. The formula is defined as follows: :CE = \%\text + \frac + \frac + \frac For this equation the weldability based on a range of CE values can be defined as follows: The Japanese Welding Engineering Society adopted the critical metal parameter (Pcm) for weld cracking, which was based on the work from Ito and Bessyo, is: :Pcm = \%\text + \frac + \frac + \frac + \frac + \frac + 5B If some of the values are not available, the following formula is sometimes used: :CE = \%\text + \frac + \frac The carbon equivalent is a measure of the tendency of the weld to form
martensite Martensite is a very hard form of steel crystalline structure. It is named after German metallurgist Adolf Martens. By analogy the term can also refer to any crystal structure that is formed by diffusionless transformation. Properties Mart ...
on cooling and to suffer brittle fracture. When the carbon equivalent is between 0.40 and 0.60 weld preheat may be necessary. When the carbon equivalent is above 0.60, preheat is necessary, postheat may be necessary. The following carbon equivalent formula is used to determine if a
spot weld A spot welder Spot welding (or resistance spot welding) is a type of electric resistance welding used to weld various sheet metal products, through a process in which contacting metal surface points are joined by the heat obtained from resistance ...
will fail in
high-strength low-alloy steel High-strength low-alloy steel (HSLA) is a type of alloy steel that provides better mechanical properties or greater resistance to corrosion than carbon steel. HSLA steels vary from other steels in that they are not made to meet a specific chemica ...
due to excessive hardenability: :CE = \%\text + \frac + \frac + \frac + \frac + \frac + \frac + \frac Where UTS is the
ultimate tensile strength Ultimate tensile strength (UTS), often shortened to tensile strength (TS), ultimate strength, or F_\text within equations, is the maximum stress that a material can withstand while being stretched or pulled before breaking. In brittle materials t ...
in
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and h is the strip thickness in inches. A CE value of 0.3 or less is considered safe. A special carbon equivalent was developed by Yurioka, which could determine the critical time in seconds ''Δt8-5'' for the formation of martensitic in the Heat Affected Zone (HAZ) in low-carbon alloy steels. The equation is given as: : CE* = \%\text* + \frac + \frac + \frac + \frac + \frac where: ::\%\text* = \begin 5\%\text &\mbox \%\text \le 0.30\% \\ \frac\%\text &\mbox \%\text \ge 0.30\% \end Then the critical time length in seconds ''Δt8-5'' can be determined as follows: :: \log_ \Delta t_ = 2.69 CE*


Cast iron

For cast iron the equivalent carbon content (CE) concept is used to understand how alloying elements will affect the heat treatment and casting behavior. It is used as a predictor of strength in cast irons because it gives an approximate balance of austenite and graphite in final structure. A number of formulas are available to determine the CE in cast irons, where an increasing number of elements are included: :CE = \%\text + 0.33 \left( \%\text \right). :CE = \%\text + 0.33 \left( \%\text + \%\text \right) :CE = \%\text + 0.33 \left( \%\text \right) + 0.33 \left( \%\text \right) - 0.027 \left( \%\text \right) + 0.4 \left( \%\text \right). :CE = \%\text + 0.28 \left( \%\text \right) + 0.303 \left( \%\text \right) - 0.007 \left( \%\text \right) + 0.033 \left( \%\text \right) + 0.092 \left( \%\text \right) + 0.011 \left( \%\text \right) + 0.054 \left( \%\text \right) This CE is then used to determine if the alloy is
hypoeutectic A eutectic system or eutectic mixture ( ) is a homogeneous mixture that has a melting point lower than those of the constituents. The lowest possible melting point over all of the mixing ratios of the constituents is called the ''eutectic tempe ...
, eutectic, or
hypereutectic A eutectic system or eutectic mixture ( ) is a homogeneous mixture that has a melting point lower than those of the constituents. The lowest possible melting point over all of the mixing ratios of the constituents is called the ''eutectic tempe ...
; for cast irons the eutectic is 4.3% carbon. When casting cast iron this is useful for determining the final
grain A grain is a small, hard, dry fruit (caryopsis) – with or without an attached hull layer – harvested for human or animal consumption. A grain crop is a grain-producing plant. The two main types of commercial grain crops are cereals and legum ...
structure; for example, a hypereutectic cast iron usually has a coarse grain structure and large
kish graphite Kish may refer to: Geography * Gishi, Nagorno-Karabakh, Azerbaijan, a village also called Kish * Kiş, Shaki, Azerbaijan, a village and municipality also spelled Kish * Kish Island, an Iranian island and a city in the Persian Gulf * Kish, Iran, ...
flakes are formed. Also, there is less shrinkage as the CE increases. When heat treating cast iron, various CE samples are tested to empirically determine the correlation between CE and hardness. The following is an example for induction hardened gray irons:


References


Bibliography

* *


Further reading

*Lincoln Electric (1994). ''The Procedure Handbook of Arc Welding''.
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: Lincoln Electric. . (Page 3.3-3) *Weman, Klas (2003). ''Welding processes handbook''.
New York City New York, often called New York City or NYC, is the List of United States cities by population, most populous city in the United States. With a 2020 population of 8,804,190 distributed over , New York City is also the L ...
: CRC Press LLC. . *American Welding Society (2004). ''Structural Welding Code, AWS D1.1''. {{ISBN, 0-87171-726-3. Steel Metallurgy Welding Equivalent units