Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Atomic Ordering Behavior of CoTi Alloy with Addition of Transition Metals

View through CrossRef
The statistical-thermodynamic theory of ordering and electronic theory of ordering in the pseudo-potential approximation was used to study the influence of ternary addition of some transition metals on the atomic ordering behavior of Co0.5(Ti1–xMx)0.5 alloys with M = Fe, Pt, Re, V, Cr, Mn, Ni, Cu, Zn, Zr, Ag, Hf or Au up to a concentration of 1 at.%. The partial ordering energies, order-disorder phase transformation temperatures and partial short range order parameters have been calculated for these alloys. The analysis shows that the impurity elements in Co0.5(Ti1–xMx)0.5 alloys can be divided into two main groups on the basis of lattice site occupancy i.e. M = V, Cr, Mn, Cu, Zn, Zr, Ag, Hf and Au mainly substitute for Co sublattice sites whereas M = Fe, Ni, Pt or Re mainly substitute for Ti sublattice sites. Further, the order-disorder transformation temperatures were found to either increase or remain nearly unchanged by the addition of ternary impurities in the CoTi alloy depending on the absolute value of the partial ordering energies. Alloys of Ti with V, Cr, Mn, Cu, Zn, Zr, Ag, Hf or Au in place of Co and alloys of Co with Fe, Ni, Pt or Re in place of Ti can be predicted for future. The results of the present analysis are in good agreement with the available experimental data on these alloys.
Title: Atomic Ordering Behavior of CoTi Alloy with Addition of Transition Metals
Description:
The statistical-thermodynamic theory of ordering and electronic theory of ordering in the pseudo-potential approximation was used to study the influence of ternary addition of some transition metals on the atomic ordering behavior of Co0.
5(Ti1–xMx)0.
5 alloys with M = Fe, Pt, Re, V, Cr, Mn, Ni, Cu, Zn, Zr, Ag, Hf or Au up to a concentration of 1 at.
%.
The partial ordering energies, order-disorder phase transformation temperatures and partial short range order parameters have been calculated for these alloys.
The analysis shows that the impurity elements in Co0.
5(Ti1–xMx)0.
5 alloys can be divided into two main groups on the basis of lattice site occupancy i.
e.
M = V, Cr, Mn, Cu, Zn, Zr, Ag, Hf and Au mainly substitute for Co sublattice sites whereas M = Fe, Ni, Pt or Re mainly substitute for Ti sublattice sites.
Further, the order-disorder transformation temperatures were found to either increase or remain nearly unchanged by the addition of ternary impurities in the CoTi alloy depending on the absolute value of the partial ordering energies.
Alloys of Ti with V, Cr, Mn, Cu, Zn, Zr, Ag, Hf or Au in place of Co and alloys of Co with Fe, Ni, Pt or Re in place of Ti can be predicted for future.
The results of the present analysis are in good agreement with the available experimental data on these alloys.

Related Results

Usability Evaluation of Self-Ordering Kiosks in Fast Food Restaurants
Usability Evaluation of Self-Ordering Kiosks in Fast Food Restaurants
In recent years, the introduction of technology and digital management into the service industry has gradually changed consumers' lifestyles. With the popularization of equipment s...
Private Ordering
Private Ordering
The sharing of regulatory authority with private actors ("private ordering") has lengthy historical precedent and, in recent years, has been rapidly expanding in scope, domesticall...
A Review on the Synergistic Approaches for Heavy Metals Bioremediation: Harnessing the Power of Plant-Microbe Interactions
A Review on the Synergistic Approaches for Heavy Metals Bioremediation: Harnessing the Power of Plant-Microbe Interactions
Heavy metals contamination is a serious threat to all life forms. Long term exposure of heavy metals can lead to different life-threatening medical conditions including cancers of ...
Atomic electron tomography: 3D structures without crystals
Atomic electron tomography: 3D structures without crystals
BACKGROUND To understand material properties and functionality at the most fundamental level, one must know the three-dimensional (3D) positions of atoms with h...
Atomic‐Scale Compositional Fluctuations in Ternary III‐Nitride Nanowires
Atomic‐Scale Compositional Fluctuations in Ternary III‐Nitride Nanowires
Ternary InGaN and AlGaN alloys have been sought after for the application of various optoelectronic devices spanning a large spectral range between the deep ultraviolet (DUV) and i...
In Vitro Comparative Study of Fretting-Corrosion Resistance of Ti6Al4V and Co28Cr6Mo in a Taper Joint Subjected to High Bending Moment
In Vitro Comparative Study of Fretting-Corrosion Resistance of Ti6Al4V and Co28Cr6Mo in a Taper Joint Subjected to High Bending Moment
Co alloy modular necks have been introduced in orthopaedics to address mechanical failure of the neck-stem junction (NSJ) observed in Ti alloy dual-modular hip stem. However, follo...
Fertility Transition Across Major Sub-Saharan African Cities: The Role of Proximate Determinants
Fertility Transition Across Major Sub-Saharan African Cities: The Role of Proximate Determinants
Abstract Background Sub-Saharan Africa’s fertility transition has lagged behind other regions despite rapid urbanization, resulting in persistently high fertility rates. S...
Cafeteria Food Ordering System using QR Code
Cafeteria Food Ordering System using QR Code
Cafeteria Food Ordering System Using QR Code Technology is a real time ordering system to manage the order process for cafeteria. This system helps customer to order without having...

Back to Top