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The hysteresis heating behavior of the particulate films is found to be volumetric in nature and proportional to the cubic of applied magnetic field.
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Using parameters determined from particulate composites, the behaviors of the particulate laminate composites are accurately predicted using a constrained isostrain model without additional fitting parameters.
In order to enhance behaviors of the diesel particulate filter (DPF) in equilibrium state, a mathematic model of pressure drop in the DPF in equilibrium state is developed to investigate effects of key parameters on its behavior in equilibrium state.
The superplastic behavior of some particulate reinforced aluminum alloy based composites and the corresponding monolithic aluminum alloys was compared in view of strain rate, optimum testing temperature and the relationship between flow stress and strain rate.
The main aim of this work is to study the behavior of particulate flows taking into account the interfacial heat transfer on the particle surface including the phase change phenomena.
Combinational sphere element method is introduced to simulate the mechanical behavior of cemented particulate composite.
The correlation between single particle breakage parameters and the behavior of particulate beds under compression is a subject that has attracted much interest in the field of particulate solids.
We here present laboratory based experimental and theoretical methods to characterize the filtration efficiency (FE) behavior of diesel particulate filters (DPFs) exposed to soot laden gas streams.
In this paper, a detailed analysis of the hydrocarbon adsorption-desorption and oxidation behavior of diesel particulate emitted by a modern diesel engine and collected on a SiC diesel filter is performed by use of thermogravimetric and differential scanning calorimetry analysis (TGA-DSC).
Herein, we report an effective strategy, by which the dispersion, structure and networking behavior of a particulate filler like N-220 carbon black can be controlled in a polymer matrix.
Sedimentation along with consolidation processes dictate the in situ engineering and hydraulic behavior of a particulate system such as soil.
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