In order to investigate the effect of hot isostatic pressing (HIP) process parameters on the properties and fracture behavior of tungsten alloy, HIP experiments with different process parameters were carried out, and the relative density, Rockwell hardness, tensile properties, and tensile fracture behavior were analyzed. The results show that after HIP, the tungsten alloy samples obtained further densification, higher relative density and hardness, and lower dispersity. At 1300 °C and 140 MPa, the sintered bar achieved excellent mechanical properties: yield strength increased by 16.5%, tensile strength increased by 16.1%, and fracture strength increased by 85.3%. Comparing the two processes, the mechanical properties of tungsten alloy powde...
Tungsten heavy alloys (WHAs) belong to a group of two-phase composites, based on W-Ni-Cu and W-Ni-Fe...
In this work, we investigate the effect of hot isostatic pressing on the intermediate temperature te...
Hot isostatic pressing (HIP) is of interest to the aerospace industry due to the ability to produce ...
In order to support the development of the 5 MW spallation target for the European Spallation Source...
Tungsten heavy alloy (WHA) is manufactured using liquid phase sintering for use in electrical, radia...
In order to understand the underlying material evolution during liquid phase sintering (LPS) process...
93W-5.6Ni-1.4Fe tungsten heavy alloy was fabricated by mechanical alloying process using elemental p...
Since the introduction of hot isostatic pressing (HIP) technology, it has been widely used in powder...
Powder metallurgy (PM) permits to obtain titanium alloys with properties and microstructures close t...
Good thermal conductivity, high-temperature strength and low tritium retention favour the use of tun...
It has been demonstrated that mechanical alloying and subsequent consolidation by hot isostatic pre...
The effects of the size and shape of tungsten particles on dynamic torsional properties in tungsten ...
MasterThe mechanical properties and microstructural characteristics (grain sizes, dislocation densit...
The results of structure and mechanical properties investigations of tungsten heavy alloy (THA) afte...
Dynamic torsional tests were conducted using a torsional Kolsky bar for five alloys, one of which wa...
Tungsten heavy alloys (WHAs) belong to a group of two-phase composites, based on W-Ni-Cu and W-Ni-Fe...
In this work, we investigate the effect of hot isostatic pressing on the intermediate temperature te...
Hot isostatic pressing (HIP) is of interest to the aerospace industry due to the ability to produce ...
In order to support the development of the 5 MW spallation target for the European Spallation Source...
Tungsten heavy alloy (WHA) is manufactured using liquid phase sintering for use in electrical, radia...
In order to understand the underlying material evolution during liquid phase sintering (LPS) process...
93W-5.6Ni-1.4Fe tungsten heavy alloy was fabricated by mechanical alloying process using elemental p...
Since the introduction of hot isostatic pressing (HIP) technology, it has been widely used in powder...
Powder metallurgy (PM) permits to obtain titanium alloys with properties and microstructures close t...
Good thermal conductivity, high-temperature strength and low tritium retention favour the use of tun...
It has been demonstrated that mechanical alloying and subsequent consolidation by hot isostatic pre...
The effects of the size and shape of tungsten particles on dynamic torsional properties in tungsten ...
MasterThe mechanical properties and microstructural characteristics (grain sizes, dislocation densit...
The results of structure and mechanical properties investigations of tungsten heavy alloy (THA) afte...
Dynamic torsional tests were conducted using a torsional Kolsky bar for five alloys, one of which wa...
Tungsten heavy alloys (WHAs) belong to a group of two-phase composites, based on W-Ni-Cu and W-Ni-Fe...
In this work, we investigate the effect of hot isostatic pressing on the intermediate temperature te...
Hot isostatic pressing (HIP) is of interest to the aerospace industry due to the ability to produce ...