High-temperature resistant material is becoming increasingly significant in numerous industrial applications, including aerospace and automotive use, to increase fuel efficiency and decrease CO2 emissions. Metals with nanoparticles to form metal matrix nanocomposite (MMNCs) are promising to enhance metals for structural/industrial applications at high temperatures. This review provides a comprehensive insight into the nanoparticle effect on the creep behavior of metals and alloys. Firstly, it discusses the different creep mechanisms that are activated in response to the creep strain according to the deformation parameters (temperature, load, and microstructure). The most significant creep mechanisms vary according to the grain shape accommo...
To enhance the creep resistance of eutectic Sn-58Bi solder alloy, low concentration of copper filler...
FeCrAl alloys have been suggested as one of the most promising fuel cladding materials for the devel...
Research over the past decade has provided compelling evidence that nanotwinned structures may be op...
Magnesium (Mg) nanocomposites are created when nano-size particles are embedded into the Mg (or Mg a...
Aluminum alloys, due to appropriate strength to weight ratio, are widely used in various industries,...
A study has been made on the microstructure and high-temperature properties of die-cast Mg-Sn-Al-Si ...
Magnesium (Mg) nanocomposites are created when nano-size particles are embedded into the Mg (or Mg a...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
Trabajo presentado en el TMS Annual Meeting Structural Aluminides for Elevated Temperatures Symposiu...
142 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Indentation creep experiments...
Development of improved equation for better accuracy of calculation of stationary creep rate of cree...
Magnesium (Mg) nanocomposites are promising materials for many lightweight engineering applications....
ABSTRACT: Creep performance of soldered connections is significant to the reliability evaluation and...
Lightweight high-strength metal matrix nano-composites (MMNCs) can be used in a wide variety of appl...
To enhance the creep resistance of eutectic Sn-58Bi solder alloy, low concentration of copper filler...
FeCrAl alloys have been suggested as one of the most promising fuel cladding materials for the devel...
Research over the past decade has provided compelling evidence that nanotwinned structures may be op...
Magnesium (Mg) nanocomposites are created when nano-size particles are embedded into the Mg (or Mg a...
Aluminum alloys, due to appropriate strength to weight ratio, are widely used in various industries,...
A study has been made on the microstructure and high-temperature properties of die-cast Mg-Sn-Al-Si ...
Magnesium (Mg) nanocomposites are created when nano-size particles are embedded into the Mg (or Mg a...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
Trabajo presentado en el TMS Annual Meeting Structural Aluminides for Elevated Temperatures Symposiu...
142 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Indentation creep experiments...
Development of improved equation for better accuracy of calculation of stationary creep rate of cree...
Magnesium (Mg) nanocomposites are promising materials for many lightweight engineering applications....
ABSTRACT: Creep performance of soldered connections is significant to the reliability evaluation and...
Lightweight high-strength metal matrix nano-composites (MMNCs) can be used in a wide variety of appl...
To enhance the creep resistance of eutectic Sn-58Bi solder alloy, low concentration of copper filler...
FeCrAl alloys have been suggested as one of the most promising fuel cladding materials for the devel...
Research over the past decade has provided compelling evidence that nanotwinned structures may be op...