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Oxidation caused degradation of MoS2 at higher temperatures, which is consistent with the frictional behavior at elevated temperatures.
The FEM modeling approach was used to conduct parametric studies to evaluate the effects of different heating configurations on steel column strength, and failure behavior at elevated temperatures.
However, shear connections are only designed for gravity loads that produce shear, and there is a lack of knowledge in their behavior at elevated temperatures.
Based on the results obtained with advanced calculation models of column behavior at elevated temperatures an analytical model has been proposed and verified.
Nanocomposite Ti B N based coatings have high hardness, while their behavior at elevated temperatures can be enhanced through the addition of other elements.
The viscoelastic viscoplastic formulation accounts for the creep/relaxation behavior at elevated temperatures within the coupled processes of oxygen transport and deformation.
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were modeled in detail using appropriate finite elements, contact interaction models, and material and component behavior at elevated temperature.
Compared with the Arrhenius-type model, the optimized BP neural network model has more accuracy and capability in describing the compressive deformation behavior at elevated temperature for as-cast 904L austenitic stainless steel.
Despite the evident advantages of FRPs over traditional materials, the greatest impediment to worldwide utilization is represented by the limited knowledge of composites behavior at elevated temperature and/or freeze thaw cycling exposure.
These devices exhibit resistive behavior under small bias voltage at room temperature and memristive behavior at elevated temperature or under large bias sweep range.
An improved behavior at elevated temperature was observed with the addition of steel fibers in UHPC specimens (Tai et al. 2011; Li and Liu 2016; Zheng et al. 2012).
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