Javascript must be enabled to continue!
Elevated temperature mechanical behavior of CoSi and particulate reinforced CoSi produced by spray atomization and co-deposition
View through CrossRef
Monolithic CoSi and TiB2reinforced CoSi materials were produced by spray atomization and co-deposition. The creep behavior of both materials at elevated temperature was investigated. The unreinforced material of grain size ≍25 μm exhibited a stress exponent of three, activation energy for creep of 320 kJ/mole, dislocation substructure of homogeneously distributed dislocations, and inverse creep transients upon stress increases. These results suggest that the creep behavior of CoSi is controlled by a dislocation glide mechanism. In contrast, the reinforced material of a finer grain size (≍10 μm) exhibited a stress exponent of unity, activation energy for creep of 240 kJ/mole, and negligible creep transients upon stress increases, suggesting that the creep behavior of the reinforced material is controlled by a diffusional creep mechanism. The creep resistance of the reinforced material was lower than that for the unreinforced material. This is a result of the finer grain size and higher porosity in the reinforced material.
Springer Science and Business Media LLC
Title: Elevated temperature mechanical behavior of CoSi and particulate reinforced CoSi produced by spray atomization and co-deposition
Description:
Monolithic CoSi and TiB2reinforced CoSi materials were produced by spray atomization and co-deposition.
The creep behavior of both materials at elevated temperature was investigated.
The unreinforced material of grain size ≍25 μm exhibited a stress exponent of three, activation energy for creep of 320 kJ/mole, dislocation substructure of homogeneously distributed dislocations, and inverse creep transients upon stress increases.
These results suggest that the creep behavior of CoSi is controlled by a dislocation glide mechanism.
In contrast, the reinforced material of a finer grain size (≍10 μm) exhibited a stress exponent of unity, activation energy for creep of 240 kJ/mole, and negligible creep transients upon stress increases, suggesting that the creep behavior of the reinforced material is controlled by a diffusional creep mechanism.
The creep resistance of the reinforced material was lower than that for the unreinforced material.
This is a result of the finer grain size and higher porosity in the reinforced material.
Related Results
Acoustothermal Atomization of a Refrigerant Liquid
Nanofilm: Significantly High Heat Flux and Superheating
Acoustothermal Atomization of a Refrigerant Liquid
Nanofilm: Significantly High Heat Flux and Superheating
Abstract
We carry out all-atom molecular dynamics (MD) simulations for capturing the acoustothermal atomization of a refrigerant (Novec 7000) liquid nanofilm plac...
Optimisation of Spraying Parameters for Boom Sprayers
Optimisation of Spraying Parameters for Boom Sprayers
In order to investigate the influence of factors on the spray deposition of the spray bar sprayer, using the designed mobile spray bar spray device, the spray height, spray bar tra...
Study on atomization particle size characteristics of two-phase flow nozzle
Study on atomization particle size characteristics of two-phase flow nozzle
Nozzle spray atomization is widely used in industrial and agricultural production processes and is a very complicated physical change. The spray atomization of the nozzle is a proc...
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Abstract
Introduction
Immunoglobulin G4-related disease (IgG4-RD) is a recently identified immune-mediated condition that is debilitating and often overlooked. While IgG4-RD has be...
An Experimental Investigation on the Spray Characteristics of Dimethyl Ether(DME)
An Experimental Investigation on the Spray Characteristics of Dimethyl Ether(DME)
<div class="htmlview paragraph">A series of tests were conducted using scattered laser light photography to study the spray characteristics of DME and diesel fuel. The photog...
Exploration of Turbulent Atomization Mechanisms for Diesel Spray Simulations
Exploration of Turbulent Atomization Mechanisms for Diesel Spray Simulations
<div class="section abstract"><div class="htmlview paragraph">The atomization and initial spray formation processes in direct injection engines are not well understood ...
Così tanto…
Così tanto…
Paolo V. (Grosseto) definisce un “obbrobrio” l’espressione così tanto circolante “ormai sulla bocca di tutti, sui giornali, alla TV, su internet, ecc. […] senza che nessuno cerchi ...
Ballistic and Optical Imaging of Transient Fuel Sprays for Dual-Fuel Combustion
Ballistic and Optical Imaging of Transient Fuel Sprays for Dual-Fuel Combustion
Pilot sprays play a vital role in dual-fuel (DF) combustion applications, where a small quantity of liquid fuel is used to ignite the primary gaseous fuel. The quantity and distrib...

