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A high-temperature, high-pressure (HTHP) rheometer is designed and developed to measure viscosity of pitch material at elevated temperatures.
Incomplete utilization of active material at elevated current density was identified as the root for poor rate performance.
Design equations for complete stress-strain curves of tested steel material at elevated temperatures were summarized, which could be used in fire resistant design.
In the calculation of the joint strengths, the reduced material property of 0.2% proof stress was used due to the deterioration of material at elevated temperatures.
In calculating the nominal strengths of the connections, the reduced material properties were used due to the deterioration of material at elevated temperatures.
Accompanying mechanical tests of short specimens (30 mm) were also carried out to obtain compressive strengths of the GRP material at elevated temperatures.
Similar(46)
The ductility of materials at elevated temperature is closely related to dynamic recrystallization (DRX).
Mechanical properties of materials at elevated temperatures are the key factors of structural fire resistance design.
Grain coarsening is a phenomenon common to all polycrystalline materials at elevated temperatures.
A novel anti-adhesive NC/WC C surface processing is presented enabling green machining of ductile materials at elevated temperatures.
In addition, stress strain curve model for high strength steel and mild steel materials at elevated temperatures is also proposed.
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