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The deteriorated bonding strength between the basalt fiber and epoxy resin matrix at elevated temperatures is ascribed to the pronounced degradation of the BFRPs.
The specimens that were heat treated at 1100 1350 °C showed the best corrosion properties, because the Cu-rich phase was dissolved into the FCC matrix at elevated temperatures.
This paper develops a series of expressions to predict the apparent strength and stiffness of composite rebars and the concrete matrix at elevated temperatures typical of those experienced in a standard fire test.
However, the rapid deterioration of the mechanical properties of epoxy-based polymer matrix at elevated temperature, and the hazardous effects of toxic fumes during the application made the need of replacing this polymer with a new cementitious bonding agent to enhance the performance of concrete structures in high-temperature environments and reduce the environmental and health hazards.
The crack opening displacement at 550 °C was smaller than that at room temperature when the crack length exceeded a definite value, though the interface friction stress between the fiber and matrix at elevated temperature was much smaller than that at room temperature.
Electric field imprinting of GMN is based on electric-field-assisted dissolution [12 15] (EFAD) of nanoparticles in glass matrix at elevated temperature.
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A noteworthy point is that magnetization in the APB remains pronounced (compared with the matrix region) at elevated temperatures, as shown in Fig. 4h,i.
The degradation of polymer matrix composites at elevated temperature, thermal softening, is discussed.
Solid-state 23Na NMR showed the ionic functionalities aggregate during membrane casting, yet small angle X-ray scattering showed that nano-phase separation between the ionic domains and matrix occurs only at elevated sulfonate content.
Fatigue tests were conducted to characterize the effects of loading ratio (i.e. stress and strain ratios) on the fatigue life and damage mechanisms of a unidirectional, ceramic fiber reinforced titanium matrix composite SCS-6/Ti-15-3 SCS-6/Ti-15-3 SCS-6/Ti-15-3 SCS-6/Ti-15-3
In order to improve the matrix acidizing techniques at elevated temperatures, new acid combinations are being developed.
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