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A Drucker-Prager/cap constitutive model was used to describe the mechanical behavior of the powder.
It is found that the electrical resistivity of the oxide overlayer strongly influences the charging behavior of the powder bed and that a high resistivity promotes charge accumulation and consequent smoking.
It was based on the values of steady-state pressure drop, turbulent kinetic energy produced by the nozzle, as well the aerodynamic behavior of the powder particles as characterized by their modes of the size distributions.
The yield and fracture surfaces obtained from the DEM simulations provide valuable information on the behavior of the powder for stress states that are difficult or impossible to attain in complex triaxial tests.
In this paper, low-cycle fatigue (LCF) experiments were conducted to analyze the influence of low-temperature hot corrosion on the LCF behavior of the powder metallurgy Ni-based superalloy FGH96 at 700 °C.
In the case of the TPU material investigated, the treatment effects are satisfactory, because the treatments modify the powder material sufficiently in order to improve peel resistance and maintain a non-blocking behavior of the powder particles.
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The study is completed by physicochemical characterizations and the thermal behavior of the powders.
The mechanical behavior of the powders and the coatings was studied using the nanoindentation technique, while the microstructure was analyzed using scanning and transmission electron microscopy.
The powder compact was considered as a continuum, and a linear elasticity law as a function of relative density was then used to express the elastic behavior of the powders.
When the powder temperature reached 130 °C and the burst disk ruptured at 9 bar hydrogen overpressure the behavior of the expelled powder was monitored using a high speed camera, an IR camera as well as sound level meters.
The thermal behavior of the irradiated powder of DBDPE for 2 h 30 min differs substantially compared with that of no irradiated DBDPE.
More suggestions(16)
behavior of the blow
behavior of the wheel
behavior of the dry
behavior of the region
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behavior of the error
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behavior of the entity
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