The deformation behavior and fracture characteristics of NiAl intermetallic alloy containing 5~7 at% Cu are investigated at room temperature under strain rates ranging from 1 × 10−3 to 5 × 103 s−1. It is shown that the copper contents and strain rate both have a significant effect on the mechanical behavior of the NiAl alloy. Specifically, the flow stress increases with an increasing copper content and strain rate. Moreover, the ductility also improves as the copper content increases. The change in the mechanical response and fracture behavior of the NiAl alloy given a higher copper content is thought to be the result of the precipitation of β-phase (Ni,Cu)Al and γ\u27-phase (Ni,Cu)3Al in the NiAl matrix
In recent years, the influence of Ni on high-temperature mechanical properties of casting Al alloys ...
Tensile properties, deformation, and fracture behavior of a wrought nickel-base superalloy 720Li hav...
A supplemental study has been carried out on the effect of tensile and compressive stress on martens...
The deformation behavior and fracture characteristics of NiAl intermetallic alloy containing 5~7 at%...
This dissertation represents an investigation of the effect of various metallurgical parameters such...
An investigation of the effect of various metallurgical parameters such as interfaces, allowing addi...
A set of NiAl intermetallic alloys was prepared with several Cu additions, exploring the Ni-rich and...
The objective of this research is to examine the possibility of using nickel aluminide for high temp...
This paper presents the results of Nickel component on the microstructure and mechanical properties ...
The mechanical behavior of nanocrystalline metallic, intermetallic, and multiphase materials was inv...
Although a significant number of studies has been carried out on NW-based intermetallics (B2-type cr...
Abstrart The B2-ordered NiAl has attracted much attention as one of the candidates as a next generat...
Examines the effect of an alloying element such as copper, iron, manganese or boron on the mechanica...
A comparative study of the microstructure, mechanical properties and fractography of Ni3Al macro- an...
TiAl-based intermetallic alloys are prepared with Cu concentrations of 3–5 at.% (atomic ratio). The ...
In recent years, the influence of Ni on high-temperature mechanical properties of casting Al alloys ...
Tensile properties, deformation, and fracture behavior of a wrought nickel-base superalloy 720Li hav...
A supplemental study has been carried out on the effect of tensile and compressive stress on martens...
The deformation behavior and fracture characteristics of NiAl intermetallic alloy containing 5~7 at%...
This dissertation represents an investigation of the effect of various metallurgical parameters such...
An investigation of the effect of various metallurgical parameters such as interfaces, allowing addi...
A set of NiAl intermetallic alloys was prepared with several Cu additions, exploring the Ni-rich and...
The objective of this research is to examine the possibility of using nickel aluminide for high temp...
This paper presents the results of Nickel component on the microstructure and mechanical properties ...
The mechanical behavior of nanocrystalline metallic, intermetallic, and multiphase materials was inv...
Although a significant number of studies has been carried out on NW-based intermetallics (B2-type cr...
Abstrart The B2-ordered NiAl has attracted much attention as one of the candidates as a next generat...
Examines the effect of an alloying element such as copper, iron, manganese or boron on the mechanica...
A comparative study of the microstructure, mechanical properties and fractography of Ni3Al macro- an...
TiAl-based intermetallic alloys are prepared with Cu concentrations of 3–5 at.% (atomic ratio). The ...
In recent years, the influence of Ni on high-temperature mechanical properties of casting Al alloys ...
Tensile properties, deformation, and fracture behavior of a wrought nickel-base superalloy 720Li hav...
A supplemental study has been carried out on the effect of tensile and compressive stress on martens...