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Mechanical Properties of SOFC Anode Support Materials at Operating Conditions

机译:SOFC阳极支撑材料在操作条件下的机械性能

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The mechanical properties of solid-oxide fuel cell (SOFC) materials play an important role in manufacturability, durability and lifetime of the devices. Environmental conditions can affect the mechanical properties of materials. It has been shown during testing of quenched samples that point defect concentration and temperature change the elastic modulus and strength of fluorite-structured oxides. In this work, the flexural modulus and strength of pressed Ce_(0.90)Gd_(0.10)O_(2-x) (GDC) bars are investigated under varying oxygen partial pressures at 675°C, under the same conditions SOFCs experience during operation. This is achieved by using a three-point bend fixture on a universal testing machine, with a chamber and furnace to control the environmental conditions. At operating conditions, the strength and modulus of polycrystalline bars do not follow the expected trends of quenched single grains tested by other methods.
机译:固体氧化物燃料电池(SOFC)材料的机械性能在装置的可制造性,耐久性和寿命中起重要作用。环境条件会影响材料的机械性能。在测试点缺陷浓度和温度的测试期间已经显示出在淬火样品中,改变萤石结构氧化物的弹性模量和强度。在这项工作中,在675℃的不同氧气部分压力下,在675℃的不同条件下,在675℃的不同条件下,在675℃的不同条件下,在675℃的不同条件下进行弯曲模量和强度进行弯曲模量和强度。这是通过在通用试验机上使用三点弯曲夹具来实现的,其中腔室和炉子控制环境条件。在操作条件下,多晶棒的强度和模量不遵循其他方法测试的淬火单晶的预期趋势。

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