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Investigation on the preparation and mechanical properties of porous Cu35Ni15Cr alloy for a molten carbonate fuel cell

机译:熔融碳酸盐燃料电池用Cu35Ni15Cr多孔合金的制备及力学性能研究

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The preparation process of porous Cu35Ni15Cr alloy was studied in this paper. The effect of ball milling time and sintering temperature on the porosity of Cu35Ni15Cr alloy was identified. It was found that 18 h ball milling and 950 °C sintering are the most promising parameters for the preparation of porous Cu35Ni15Cr alloy. The products have a ~62 % porosity. The alloy consists of an α phase and β phase. The influence of deformation temperature and loading rate on the mechanical properties of Cu35Ni15Cr alloys was investigated. The results show that with decreasing deformation temperature, the yield strength and elastic modulus of the porous alloy increase. With the increase of loading rate, the yield strength of these alloys shows an increasing trend, but the elastic modulus is on a steady level.
机译:研究了多孔Cu35Ni15Cr合金的制备工艺。确定了球磨时间和烧结温度对Cu35Ni15Cr合金孔隙率的影响。发现18 h球磨和950°C烧结是制备多孔Cu35Ni15Cr合金最有希望的参数。产品的孔隙率约为62%。合金由α相和β相组成。研究了变形温度和加载速率对Cu35Ni15Cr合金力学性能的影响。结果表明,随着变形温度的降低,多孔合金的屈服强度和弹性模量增加。随着加载速率的增加,这些合金的屈服强度呈增加趋势,但弹性模量处于稳定水平。

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