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Comparative analysis of high temperature strength of platinum and its binary alloys with low content of alloying element

机译:低合金元素含量的铂及其二元合金的高温强度比较分析

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摘要

The comparative analysis of platinum and its binary alloys (containing alloying elements up to 10 mass%) mechanical properties at high temperatures has been carried out. The goal of the analysis was to investigate new application possibilities for products based on platinum and platinum alloys, and to expand the existing database of platinum metals, originating from the RTB group, Serbia. Palladium, rhodium, ruthenium, iridium and gold were used as alloying elements. In order to examine the effect of alloying elements’ low concentrations on the high-temperature platinum durability, creep rate, rupture time, tensile strength and relative elongation at high temperatures, up to 1400 °C, were determined. In addition, changes in the structure of dislocations were tracked. The summary of investigation results led to conclusion that, of all the alloying elements used, the best influence on high-temperature platinum durability has rhodium.
机译:进行了铂及其二元合金(合金元素含量最高为10质量%)在高温下的对比分析。分析的目的是研究基于铂和铂合金的产品的新应用可能性,并扩展源自RTB集团塞尔维亚的现有铂金属数据库。钯,铑,钌,铱和金用作合金元素。为了检查合金元素的低浓度对高温铂合金耐久性的影响,确定了在高达1400°C的高温下的蠕变速率,断裂时间,拉伸强度和相对伸长率。此外,还跟踪了位错结构的变化。研究结果的总结得出结论,在所有使用的合金元素中,铑对高温铂金耐久性的影响最大。

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