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steel
Sign in to saveSteel is an alloy of iron and carbon that demonstrates improved mechanical properties compared to the pure form of iron. Due to its high elastic modulus, yield strength, fracture strength and low raw material cost, steel is one of the most commonly manufactured materials in the world. Steel is used in structures (as concrete reinforcing rods or steel beams), in bridges, infrastructure, tools, ships, trains, cars, bicycles, machines, electrical appliances, furniture, and weapons.
Steel is an alloy made by combining iron with carbon, which gives it stronger and more useful properties than pure iron alone. Because it's strong, reliable, and affordable to produce, steel has become one of the most widely manufactured materials in the world and is used in everything from buildings and bridges to cars, tools, and household appliances.
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Research
60,515 papers- Stainless steel in bone surgery.ReviewInjury · 2000Disegi JA, Eschbach LDOI: 10.1016/s0020-1383(00)80015-7
- Vanadium extraction from steel slag: Generation, recycling and management.ReviewEnvironmental pollution (Barking, Essex : 1987) · 2024Yang MQ, Yang JYDOI: 10.1016/j.envpol.2023.123126
- Intelligent Manufacturing Technology in the Steel Industry of China: A Review.ReviewSensors (Basel, Switzerland) · 2022Zhou D, Xu K, Lv Z et al.DOI: 10.3390/s22218194
- Environmental benefit assessment of steel slag utilization and carbonation: A systematic review.The Science of the total environment · 2022Li L, Ling TC, Pan SYDOI: 10.1016/j.scitotenv.2021.150280
- Application of iron and steel slags in mitigating greenhouse gas emissions: A review.ReviewThe Science of the total environment · 2022Chen J, Xing Y, Wang Y et al.DOI: 10.1016/j.scitotenv.2022.157041
- Advancing sustainability in the steel industry: the key role of the triple helix sectors.ReviewEnvironmental science and pollution research international · 2024da Rocha ABT, Espuny M, Kandsamy J et al.DOI: 10.1007/s11356-024-33983-7
- Steel surface defect segmentation with SME-DeeplabV3.PloS one · 2025Zhang H, Zhao Z, Liu Y et al.DOI: 10.1371/journal.pone.0329628
- Activation technology of steel slag for concrete exposed to plateau climate: a state-of-the-art review.ReviewEnvironmental science and pollution research international · 2024Deng W, Xiong R, Zhai X et al.DOI: 10.1007/s11356-024-34923-1
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Wikidata facts
- Image
- Kaltbandcoils.jpg
Show 6 more facts
- Commons category
- Steel
- Commons gallery
- Steel
- time of discovery or invention
- 1865-00-00
- tensile modulus of elasticity
- 210
- recycling code
- 40
- density
- 7850
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Article
30 sectionsContents
- Definitions and related materials
- Material properties
- Origins and production
- Properties
- Heat treatment
- Production
- History
- Ancient
- Wootz and Damascus
- Modern
- Processes starting from bar iron
- Processes starting from pig iron
- Industry
- Recycling
- Contemporary
- Carbon
- Alloy
- Standards
- Uses
- Historical
- Long
- Flat carbon
- Weathering (COR-TEN)
- Stainless
- Low-background
- See also
- References
- Bibliography
- Further reading
- External links
Steel is an alloy of iron and carbon that demonstrates improved mechanical properties compared to the pure form of iron. Due to its high elastic modulus, yield strength, fracture strength and low raw material cost, steel is one of the most commonly manufactured materials in the world. Steel is used in structures (as concrete reinforcing rods or steel beams), in bridges, infrastructure, tools, ships, trains, cars, bicycles, machines, electrical appliances, furniture, and weapons.
Iron is always the main element in steel, but other elements are used to produce various grades of steel, demonstrating altered material, mechanical, and microstructural properties. Stainless steels, for example, typically contain 18% chromium and exhibit improved corrosion and oxidation resistance versus their carbon steel counterpart. Galvanized steel is coated in a layer of zinc to achieve a similar effect. Under atmospheric pressures, steels generally take on two crystalline forms: body-centered cubic and face-centered cubic; however, depending on the thermal history and alloying, the microstructure may contain the distorted martensite phase or the carbon-rich cementite phase, which are tetragonal and orthorhombic, respectively. In the case of alloyed iron, the strengthening is primarily due to the introduction of carbon in the primarily-iron lattice, inhibiting deformation under mechanical stress. Alloying may also induce additional phases that affect the mechanical properties. In most cases, the engineered mechanical properties are at the expense of the ductility and elongation of the pure iron state, which decrease upon the addition of carbon.
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