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Ionic resistivity is more complicated and is not constant over operating temperature, because the resistance of the electrolyte to the conduction of ions depends on many factors which include materials characteristics of the membrane, water content and its distribution in the membrane, fuel cell temperature, and drawn current from the fuel cell [24].
Compared to prior dielectric testing, the strength, toughness, and stiffness increased as the ionic resistivity increased.
In [24, 26], it is developed an empirical model of ionic resistivity of membrane R ions as a function to the membrane specific resistivity R m, membrane active area A and thickness of membrane l.
The parameters such as interfacial polarization resistance, three-phase boundary (TPB) length, and effective electrode thickness are formulated as a function of effective TPB resistivity, ionic resistivity, and cathode structure characteristics including electrode composition, porosity, particle size of electrocatalyst and electrolyte, and thickness.
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In relation to the film itself, it is possible to study, during the transient, the dependence of its ionic specific resistivity on the potential, growth rate, and thickness.
{{V_{text{ohm}} = - Ileft( {R_{text{ions}},+,R_{text{electrons}} } right)}} (3)where R ions and R electrons are the ionic and electronic resistivity.
Yttria stabilized zirconia (YSZ) is the most widespread electrolyte material for solid oxide fuel cell (SOFC) due to its high ionic conductivity and electronic resistivity over a wide range of oxygen partial pressures.
At 15% replacement level, compressive strength increased by 20%, while the water penetration, gas permeability, water absorption, electrical resistivity and ionic diffusion had improvements of up to 50%, 37%, 28%, 450%, and 47%, respectively and the 28-day ASR expansion for this mix was reduced as much as 82%.
It possesses good thermal conductivity, heat and shock resistance, and high electrical resistivity at elevated temperatures.
A higher value of resistivity index represents greater resistance of vasculature, indicating deleterious significance.
A strain changes the resistance because the length, area, and resistivity of the conductor change.
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