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Influence of thermomechanical processing regime on the mechanical properties and electrical conductivity of PdNi5 alloy

机译:热机械加工方式对PdNi5合金力学性能和电导率的影响

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This paper deals with experimental and analytical investigations of the influence of thermomechanical processing conditions on the mechanical properties and electrical conductivity of PdNi5 alloy, in the form of wire ? 0.15 mm, for making catalysts-catchers. Obtained results showed that mechanical properties and electrical conductivity depend on the applied regime of thermomechanical processing. Knowing the dependence of influence of parameters of thermomechanical processing regime on these properties enables the production of PdNi5 alloy with required characteristics for use in the process of catalytic oxidation of ammonia, that is solving problems of loss of platinum metals, especially platinum. The results of analytical investigations of influence of thermomechanical processing regime, by software package SPSS, on tensile strength, elongation and electrical conductivity of PdNi5 alloy in the form of wire ? 0.15 mm showed that using a linear regression model the mutual influences of selected parameters of thermomechanical treatment on mechanical properties and electrical conductivity of PdNi5 alloy, can be adequately described and analyzed. The results showed that tensile strength and electrical conductivity were only slightly affected with a change of temperature and time of annealing while annealing time has significant influence on the elongation value. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. TR34029: Razvoj tehnologije proizvodnje Pd katalizatora-hvata?a za smanjenje gubitaka platine u visokotemperaturnim procesima katalize]
机译:本文对热机械加工条件对PdNi5合金的力学性能和导电性的影响进行了实验和分析研究。 0.15毫米,用于制造催化剂捕集剂。所得结果表明,机械性能和电导率取决于热机械加工的应用范围。知道热机械加工方式的参数对这些性质的影响的依赖性,使得能够生产具有用于氨的催化氧化过程中所需的特性的PdNi 5合金,这解决了铂金属尤其是铂的损失的问题。通过SPSS软件包对热机械加工方式的影响对金属丝形式的PdNi5合金的拉伸强度,伸长率和电导率的影响进行分析研究的结果。 0.15 mm表明,使用线性回归模型可以充分描述和分析所选热机械处理参数对PdNi5合金的力学性能和电导率的相互影响。结果表明,拉伸强度和电导率仅受退火温度和时间变化的影响很小,而退火时间对延伸率的影响很大。 [塞尔维亚教育,科学和技术发展部的项目,赠款TR34029:Razvoj tehnologije proizvodnje Pd katalizatora-hvata?za smanjenje gubitaka platine u visokotemperaturnim procesima katalize]

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