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Published: 01 October 2014
Fig. 1 Iron-carbon equilibrium diagram from Metal Progress Materials and Process Engineering Databook , American Society for Metals, 1968, p39
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Published: 01 October 2014
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Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-F...
Available to Purchase
in Microstructures, Processing, and Properties of Steels[1]
> Properties and Selection: Irons, Steels, and High-Performance Alloys
Published: 01 January 1990
Fig. 1 Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-Fe 3 C diagram; dashed lines indicate iron-graphite diagram. Source: Ref 1
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Iron-carbon equilibrium diagram up to 7 wt% C. Solid lines indicate Fe-Fe 3...
Available to PurchasePublished: 09 June 2014
Fig. 1 Iron-carbon equilibrium diagram up to 7 wt% C. Solid lines indicate Fe-Fe 3 C diagram; dashed lines indicate iron-graphite diagram. Source: Ref 5
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Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-F...
Available to PurchasePublished: 01 December 1998
Fig. 1 Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-Fe 3 C diagram; dashed lines indicate iron-graphite diagram. Source: Ref 1
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Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-F...
Available to PurchasePublished: 01 June 2012
Fig. 1 Iron-carbon equilibrium diagram up to 6.67 wt% C. Solid lines indicate Fe-Fe 3 C diagram; dashed lines indicate iron-graphite diagram. Source: Ref 9
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High-temperature portion of the iron-carbon equilibrium phase diagram. Sour...
Available to PurchasePublished: 01 December 2008
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Iron-chromium equilibrium phase diagram (a) binary without carbon (b) effec...
Available to PurchasePublished: 01 October 2014
Fig. 3 Iron-chromium equilibrium phase diagram (a) binary without carbon (b) effect of 0.10% carbon on phase formation
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in Computational Models for Prediction of Solidification Microstructure
> Cast Iron Science and Technology
Published: 31 August 2017
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Published: 01 February 2024
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Portion of the iron-carbon equilibrium phase diagram corresponding to steel...
Available to PurchasePublished: 01 February 2024
Fig. 5 Portion of the iron-carbon equilibrium phase diagram corresponding to steels from 0 to 2 wt% C
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Book Chapter
Iron-Carbon Phase Diagrams
Available to PurchaseSeries: ASM Handbook
Volume: 4D
Publisher: ASM International
Published: 01 October 2014
DOI: 10.31399/asm.hb.v04d.a0005995
EISBN: 978-1-62708-168-9
... Abstract This article is a collection of two iron-carbon phase diagrams. iron-carbon phase diagram weight percent Iron-Carbon Equilibrium Diagrams Fig. 1 Iron-carbon equilibrium diagram from Metal Progress Materials and Process Engineering Databook , American Society...
Abstract
This article is a collection of two iron-carbon phase diagrams.
Book Chapter
Introduction to Ternary Phase Diagrams
Available to PurchaseBook: Alloy Phase Diagrams
Series: ASM Handbook
Volume: 3
Publisher: ASM International
Published: 27 April 2016
DOI: 10.31399/asm.hb.v03.a0006231
EISBN: 978-1-62708-163-4
... stabilization (iron-chromium) and austenite stabilization (iron-nickel). austenite stabilization binary iron phase diagrams carbon-chromium-iron isopleth eutectic system ferrite stabilization Gibbs triangle isopleth plots isothermal plots liquidus plots peritectic system phase equilibrium...
Abstract
This article describes the liquidus plots, isothermal plots, and isopleth plots used for a hypothetical ternary phase space diagram. It discusses the single-phase boundary (SPB) line and zero-phase fraction (ZPF) line for carbon-chromium-iron isopleth. The article illustrates the Gibbs triangle for plotting ternary composition and discusses the ternary three-phase phase diagrams by using tie triangles. It describes the peritectic system with three-phase equilibrium and ternary four-phase equilibrium. The article presents representative binary iron phase diagrams, showing ferrite stabilization (iron-chromium) and austenite stabilization (iron-nickel).
Book Chapter
Ternary Alloy Phase Diagrams
Available to PurchaseBook: Alloy Phase Diagrams
Series: ASM Handbook
Volume: 3
Publisher: ASM International
Published: 27 April 2016
DOI: 10.31399/asm.hb.v03.a0006246
EISBN: 978-1-62708-163-4
... Abstract This article presents ternary alloy phase diagrams to be used primarily by engineers to solve industrial problems. The diagrams presented are for stable equilibrium conditions, with the exception of metastable conditions for some diagrams involving carbon and iron. In some ternary...
Abstract
This article presents ternary alloy phase diagrams to be used primarily by engineers to solve industrial problems. The diagrams presented are for stable equilibrium conditions, with the exception of metastable conditions for some diagrams involving carbon and iron. In some ternary diagrams involving carbon and iron, the symbol M is used to represent both iron and the other metallic element when the two metals substitute for each other in a carbide phase.
Book Chapter
Fe (Iron) Ternary Alloy Phase Diagrams
Available to PurchaseBook: Alloy Phase Diagrams
Series: ASM Handbook
Volume: 3
Publisher: ASM International
Published: 27 April 2016
DOI: 10.31399/asm.hb.v03.a0006241
EISBN: 978-1-62708-163-4
...-Fe (Boron - Carbon - Iron)” in the article “B (Boron) Ternary Phase Diagrams.” “C-Cr-Fe (Carbon - Chromium - Iron)” , “C-Cu-Fe (Carbon - Copper - Iron)” , “C-Fe-Mn (Carbon - Iron - Manganese)” , “C-Fe-Mo (Carbon - Iron - Molybdenum)” , “C-Fe-N (Carbon - Iron - Nitrogen)” , “C-Fe-Ni...
Abstract
This article is a compilation of ternary alloy phase diagrams for which iron (Fe) is the first-named element in the ternary system. The diagrams are presented with element compositions in weight percent. The article includes 16 phase diagrams: Fe-Mn-Ni liquidus projection; Fe-Mn-Ni isothermal section at 750 °C; Fe-Mn-Ni isothermal section at 850 °C; Fe-Mn-Ni isothermal section at 650 °C; Fe-Mn-Ni isothermal section at 550 °C; Fe-Mo-Nb isothermal section at 1050 °C; Fe-Mo-Nb isothermal section at 1150 °C; Fe-Mo-Nb isothermal section at 900 °C; Fe-Mo-Ni liquidus projection; Fe-Mo-Ni isothermal section at 1100 °C; Fe-Mo-Ni isothermal section at 1200 °C; Fe-Ni-W liquidus and solidus projections; Fe-Ni-W isothermal section at 1500 °C; Fe-Ni-W isothermal section at 1455 °C; Fe-Ni-W isothermal section at 1465 °C; and Fe-Ni-W isothermal section at 1400 °C.
Book Chapter
Introduction to Phase Diagrams
Available to PurchaseBook: Alloy Phase Diagrams
Series: ASM Handbook
Volume: 3
Publisher: ASM International
Published: 27 April 2016
DOI: 10.31399/asm.hb.v03.a0006221
EISBN: 978-1-62708-163-4
... casting. Another industrially significant eutectic is in the lead-tin system for solders. Fig. 5 Iron-carbon phase diagram with constituents in the form of cementite (Fe 3 C) and graphite (as the equilibrium form of carbon). Although cementite is strictly a metastable phase that eventually...
Abstract
The application of phase diagrams is instrumental in solid-state transformations for the processing and heat treatment of alloys. A unary phase diagram plots the phase changes of one element as a function of temperature and pressure. This article discusses the unary system that can exist as a solid, liquid, and/or gas, depending on the specific combination of temperature and pressure. It describes the accomplishment of conversion between weight percentage and atomic percentage in a binary system by the use of formulas. The article analyzes the effects of alloying on melting/solidification and on solid-state transformations. It explains the construction of phase diagrams by the Gibbs phase rule and the Lever rule. The article also reviews the various types of alloy systems that involve solid-state transformations. It concludes with information on the sources of phase diagram.
Book Chapter
Thermodynamic Properties of Iron-Base Alloys
Available to PurchaseBook: Casting
Series: ASM Handbook
Volume: 15
Publisher: ASM International
Published: 01 December 2008
DOI: 10.31399/asm.hb.v15.a0005190
EISBN: 978-1-62708-187-0
.... 11 . The solubility of carbon in iron is described in Eq 15 , 16 , 17 , 18 , 19 , 20 , 21 . ( Ref 20 , 21 ). Fig. 11 Phase diagram for the binary iron-carbon system. Source: Ref 19 For the stable system, that is, with graphite as the equilibrium high-carbon phase, Eq 15 , 16...
Abstract
This article addresses two issues on thermodynamics, namely, the calculation of solubility lines and the calculation of the activity of various components. It discusses alloying elements in terms of their influence on the activity of carbon. The article describes the desulfurization and deoxidation of cast iron and steel. It illustrates the thermodynamics of the iron-carbon system and the iron-silicon system. The article examines solubility and saturation degrees of carbon in multicomponent iron-carbon systems. One of the main applications of the thermodynamics of the iron-carbon system is the calculation of structure-composition correlations. The article concludes with information on the structural diagrams for cast iron: the Maurer diagram and the Laplanche diagram.
Book Chapter
C (Carbon) Ternary Alloy Phase Diagrams
Available to PurchaseBook: Alloy Phase Diagrams
Series: ASM Handbook
Volume: 3
Publisher: ASM International
Published: 27 April 2016
DOI: 10.31399/asm.hb.v03.a0006236
EISBN: 978-1-62708-163-4
... Liquidus Projection (Stable Equilibrium) Source: V. Raghavan, The Carbon-Iron-Silicon System, J. Alloy Phase Diagrams, India , Vol 2, 1986, p 97–107 ( Ref 12 ) C-Fe-Si Liquidus Projection (Metastable Equilibrium) Source: V. Raghavan, The Carbon-Iron-Silicon System, J. Alloy Phase...
Abstract
This article is a compilation of ternary alloy phase diagrams for which carbon (C) is the first-named element in the ternary system. The other elements are Co, Cr, Cu, Fe, Mn, Mo, N, Ni, S, Si, Ti, V, and W. The diagrams are presented with element compositions in weight percent. The article includes 136 phase diagrams (solidus projection, liquidus projection, isothermal section and vertical section).
Book Chapter
Introduction to Steel Heat Treatment
Available to PurchaseSeries: ASM Handbook
Volume: 4A
Publisher: ASM International
Published: 01 August 2013
DOI: 10.31399/asm.hb.v04a.a0005819
EISBN: 978-1-62708-165-8
..., so much so that the distorted bcc lattice rapidly transforms into a new metastable phase called martensite. Martensite does not appear as a phase on the iron-carbon equilibrium phase diagram because it is a metastable (nonequilibrium) phase that occurs from rapid cooling. The unit cell...
Abstract
The heat treatment of steel is based on the physical metallurgical principles that relate to its processing, properties, and structure. The microstructures that result from the heat treatment of steel are composed of one or more phases in which the atoms of iron, carbon, and other elements in steel are associated. This article describes the phases of heat treated steel, and provides information on effect of temperature change and the size of carbon atoms relative to that of iron atoms during the heat treatment.
Series: ASM Handbook
Volume: 4C
Publisher: ASM International
Published: 09 June 2014
DOI: 10.31399/asm.hb.v04c.a0005859
EISBN: 978-1-62708-167-2
... at the hardening temperature (i.e., the temperature from which a specific component and alloy would be quenched), and thus, analyses of phases present in the final heat treated part are based on the iron-carbon equilibrium phase diagram and the effects of alloying elements on critical phase transformation...
Abstract
This article focuses on induction hardening process for heat treating operations specifically designed to result in proper microstructure/property combinations in either localized or in the final parts. It briefly reviews the heat treating basics for conventional heat treating operations of steels with iron-carbon phase and transformation diagrams. The article provides a summary of the important temperatures, definitions, and microstructural constituents associated with heat-treated steels. Basic transformation characteristics of heat-treated steels are reviewed. The article also discusses the various aspects of steel heat treatment by induction processing, and concludes with a description of steel alloys for induction processing.
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