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The present paper describes a study of the influence of cold spraying on the microstructure, heat treatment response and mechanical behavior of a high temperature 2618 aluminum alloy (Al Cu Mg Fe Ni) modified with 0.16 wt.% Sc.
In this contribution we describe the results of a study into the thermal and thermo-mechanical behavior of a high temperature micro gas reactor for investigation of the intrinsic reaction kinetics of rhodium-catalyzed direct catalytic partial oxidation (CPO) of methane into synthesis gas.
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While a rigorous discussion on the origins of the Aso gap requires further investigation of the volcanic structure and resultant fault behaviors, a high temperature due to the geotherm of Mt. Aso must play an important role.
In a separate analysis, we have studied fracture behavior of TBCs subjected to thermal loading in a high temperature environment.
An interesting finding was hydrophilic behavior of the high temperature thin films without UV irradiation.
In the frame of the European Integrated Project RAPHAEL (ReActor for Process heat, Hydrogen And ELectricity generation) a benchmark exercise on the experimental transients conducted in the HE-FUS3 helium facility (Brasimone, Italy) was organized to assess the codes capability in simulating the thermal hydraulic and dynamic behavior of Very High Temperature Reactors (VHTR).
Past a critical concentration around 100 g/m3, the flame speed stops decreasing and remains constant with increasing aluminum concentration, a behavior which is attributed to the formation of a high-temperature aluminum flame front that thermally couples to the methane flame.
The influence of viscoplastic phenomena on the transformation behavior of a Ti50Pd40Ni10 high-temperature shape memory alloy (HTSMA) is investigated by thermomechanical testing followed by transmission electron microscopy (TEM).
A mathematical model is presented to describe the steady state behavior of high temperature solid electrolyte fuel cells.
Some curious behavior of high temperature graphene etching by oxygen is described that allows convenient visualization of interdomain boundaries and internal stresses.
The thermodynamic behavior of silver in high temperature aqueous systems is examined by calculating potential-pH diagrams at temperatures of 298,373,473 and 573 K.
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