The present invention pertains generally to the measuring process and apparatus of optimum contact pressure among components. More specifically, the present invention pertains to the measuring process and apparatus for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process.
As the solid oxide fuel cell, hereinafter referred as SOFC, has advantages of high conversion efficiency, low acoustic noise, low environment pollution, high reliability and fuel diversity, potential of challenging the internal combustion engine. Especially, at the time of petroleum reserve is getting lower and lower, hydrogen energy is uprising, for the future problem of energy shortage, SOFC becomes a key focus for new energy source.
The main components of solid oxide fuel cell stack class, SOFC-Stack class, that used in plate type solid oxide fuel cell, SOFC, includes: a electrolyte membrane, a cathode layer, a cathode current collector, an anode layer and a anode current collector, wherein, said electrolyte membrane is set between sides of cathode layer and anode layer, so that, said electrolyte membrane, said cathode layer and said anode layer constitute a unit of membrane electrode assembly, MEA, said cathode current collector is set on the other side of said cathode layer, and said anode current collector is set on the other side of said anode layer
Presently, the key objectives of making MEA are high performance, high durability, high stability and low degradation rate. The key conditions for reaching the above objectives are the materials and structure of MEA. When the materials and structure of MEA are changed the characteristics of MEA will be changed accordingly
As to the materials, the most commonly used electrolyte is ytteria-stabilized zirconium oxide, YSZ. Commonly used anode material is NiO-doped ytteria-stabilized zirconium oxide, NiO/YSZ, commonly used cathode material is strontium-doped LaMnO3, LSM, or strontium- and ferrous-doped LaCoO3, LSCF.
The cathode current collector usually comprised of net or mesh made from Pt or Ni, the cathode current collector mainly comprised of mesh made from Pt or Ag.
All research institutes in the world are endeavoring in the improving of materials development and technology in material treatment, to reduce impedance, increase ionic conductivity, electrical conductivity, power density, improving the performance efficiency of SOFC.
However, even said components constituted with good materials, still not enough to improve the efficiency of SOFC, and have to package the said components into SOFC-Stack class with superb efficiency, so that a plurality of SOFC-Stack class can be effectively connected by series connection or parallel connection, thereinafter, fabricate a suitable SOFC power generation system, to satisfy the requirement for different voltage or current. Since the level of technology in packaging SOFC-Stack is high, not only tight sealing MEA into SOFC-Stack forming separated anode chamber and cathode chamber, and tight sealing to become an independent closed system, to perform effective electro-chemical reaction, ensuring an open circuit voltage higher than 1.0V, increasing the MEA life, on the other hand, let the cathode current collector and the anode current collector closely and completely contact to cathode and anode of MEA, effectively conduct the current produced by electro-chemical reaction in MEA to improve electrical power efficiency. With this two basic requirements, on the one hand preventing power consumption that caused by bad contact, on the other hand, avoiding damage to MEA components caused by too much contact pressure.
Therefore, a measurement process and measurement apparatus for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process is highly desirable, so that, the damage of components in packaging SOFC-Stack class can be reduced and the optimum electrical contact among components can be reached.
The present invention provides a measurement process for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process, the measuring process comprises the following steps:
The present invention provides a measurement apparatus for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process, comprising the followings:
a supporting platform, for placing under measurement component;
an impedance measurement unit, for measuring impedance between two points, said impedance measurement unit at least includes:
a pressure generating and measurement displaying unit, which at least includes:
Through the measurement process of the present invention, the optimum contact pressure among components of a solid oxide fuel cell stack can be measured. When the contact pressure exceeds the optimum contact pressure among components, not only that impedance stops lowering down but also cause minus effect of damaging SOFC-stack components due to too much contact pressure. Therefore, by applying the measurement process of the present invention will not only reduce the loss of damaging SOFC-stack components due to too much contact pressure, but also obtain the optimum electrical contact among components, so that the highest electrical conduction efficiency can be reached after the whole SOFC-Stack packaging process completed, and the electrical power produced by MEA operation can be transmitted to SOFC-Stack as much as possible.
a supporting platform 11, for placing under measurement component 12;
an impedance measurement unit 13, for measuring impedance between two points, said impedance measurement unit 13 at least includes:
a pressure generating and measurement displaying unit 14, which at least includes:
Referring to
In this example, the electrolyte of said SOFC is YSZ, anode material is NiO/YSZ, cathode material is LSM and said SOFC is anode support type.
Firstly, proceed with measurement step 1, put a MEA in the temperature of 650˜800° C. to perform NiO reduction reaction on it, then, maintain the reduction status while the temperature of MEA bring down to room temperature.
Put said MEA on the supporting platform 11 of the measurement apparatus for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process of the present invention, said MEA becomes under measurement component 12 then.
Next, proceed with measurement step 2, apply contact pressure (the pressure can be changed through pressure generating unit 141) to the cathode surface (the first electrode surface in this example) of said MEA with detecting probe 131a and 131b of impedance measurement unit 13 and record the value of the contact pressure applied with pressure measurement displaying unit 142, in the mean time, measure the impedance value (can be read from impedance displaying unit 132) between said 2 detecting probes as the following table 1 (there are two types of measurements, one is the measurement of distance between two detecting probes D=2 cm and the other one is distance between two probes D=4 cm), and make the first relation diagram of contact pressure to impedance on a rectangular coordinate system (there are two first relation diagram, one is the first relation diagram wherein distance between two detecting probes D=2 cm and the first relation diagram wherein distance between two probes D=4 cm), then, obtain the first optimum contact pressure from the first relation diagram
As shown in
Then proceed with measurement step 3, apply contact pressure (the pressure can be changed through pressure generating unit 141) to the anode surface (the second electrode surface in this example) of said MEA with detecting probe 131a and 131b of impedance measurement unit 13 and record the value (can be read from impedance displaying unit 132) of the contact pressure applied, in the mean time, measure the impedance value between said 2 detecting probes as the following table 2 (there are two types of measurements, one is the measurement of distance between two detecting probes D=2 cm and the other one is distance between two probes D=4 cm), and make the second relation diagram of contact pressure to impedance on a rectangular coordinate system (there are two second relation diagram, one is the second relation diagram wherein distance between two detecting probes D=2 cm and the second relation diagram wherein distance between two probes D=4 cm), then, obtain the second optimum contact pressure from the second relation diagram.
As shown in
Take said MEA off from supporting platform 11, then proceed with measurement step 4, set a cathode current collector on the cathode surface of said MEA, and set a anode electrode current collector on the anode surface of said MEA, made into a SOFC-Stack class.
Put said SOFC-Stack class on the supporting platform 11 of the measurement apparatus for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process of the present invention, said SOFC-Stack class becomes under measurement component 12 then.
Next, proceed with measurement step 5, apply contact pressure (the pressure can be changed through pressure generating unit 141) to the cathode surface of said SOFC-Stack class with 2 detecting probes and record the value of the contact pressure applied with pressure measurement displaying unit 142, in the mean time, measure the impedance value (can be read from impedance displaying unit 132) between said 2 detecting probes as the following table 3 (there are two types of measurements, the first one is the measurement by using nickel twine as material for cathode current collector, the other one is the measurement by using nickel twine and nickel mesh as materials for cathode current collector), and make the third relation diagram of contact pressure with impedance on a rectangular coordinate system (there are two curves, as shown in
As shown in
Then, finally, proceed with measurement step 6, apply contact pressure (the pressure can be changed through pressure generating unit 141) to the surface of the anode current collector on the anode surface of said SOFC-Stack class with 2 detecting probes 131a and 131b of measurement apparatus and record the value of the contact pressure applied with pressure measurement displaying unit 142, in the mean time, measure the impedance value (can be read from impedance displaying unit 132) between said 2 detecting probes as the following table 4, (there are two types of measurements in table 4, one is the measurement by using nickel twine as material for anode current collector, the other one is the measurement by using nickel twine and nickel mesh as materials for anode current collector), and make the fourth relation diagram of contact pressure with impedance on a rectangular coordinate system (there are two curves, as shown in
As shown in
In addition, said impedance measurement unit 13 may be a multi-meters with rotary measurement switch for voltage/resistance (impedance)/current of the electrical properties.
Above mentioned materials applied to SOFC are for examples in describing the embodiments of the present invention, the application of the present invention is not limited to above mentioned materials.
Therefore, by applying the measurement process for determination of the optimum contact pressure among components of a solid oxide fuel cell stack in the packaging process and its measurement apparatus of the present invention, the optimum contact pressure among components in the packaging process for SOFC-Stack class can be obtained, so that the loss caused by packaging SOFC-Stack class can be reduced, in the mean time, optimum electrical contact among components can be reached.
Although the preferred embodiments has been described as above, but the application of the present invention is not limited to that, any artisan familiar with the pertaining art may make some change or amend to it within the scope of the present invention, therefore, the scope of protection shall be based on the claims of the present invention.
Number | Date | Country | Kind |
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099107308 | Mar 2010 | TW | national |