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Platinum-Based Alloys: Investigation of the Effect of Impurities Content on Creep Rate, Rupture Time and Relative Elongation at High Temperatures

机译:铂基合金:杂质含量对高温蠕变速率,断裂时间和相对伸长率的影响的研究

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This paper presents the results of research of the effect of impurities content on high-temperature resistance of selected platinum alloys. Alloys of following systems were investigated: Pt-Rh, Pt-Rh-Pd, Pt-Rh-Pd-Ru and Pt-Rh-Pd-Ir-Au. Universal device for tensile testing of materials at high temperatures was used for examination. Investigations were carried out in a temperature range of 1300-1400 ?°C, with a stress of 5 MPa. It was observed that an increase in content of impurities in tested alloys at high temperatures, and at stated conditions of stress, caused a noticeable increase in creep rate while reducing rupture time and relative elongation. Experimental results confirmed that probability of brittle fracture decreases with decreasing impurity content in the alloys. Binary and multicomponent alloys of Pt-Rh, Pt-Pd-Rh, Pt-Rh-Pd-Ru and Pt-Rh-Pd-Ir-Au systems are primarily used in conditions of high temperature, and accordingly, presented results contribute to a better understanding of their behavior in such working conditions.
机译:本文介绍了杂质含量对所选铂合金耐高温性影响的研究结果。研究了以下系统的合金:Pt-Rh,Pt-Rh-Pd,Pt-Rh-Pd-Ru和Pt-Rh-Pd-Ir-Au。使用用于在高温下对材料进行拉伸测试的通用装置进行检查。在温度为1300-1400°C,应力为5 MPa的条件下进行了研究。可以看出,在高温和规定的应力条件下,试验合金中杂质含量的增加导致蠕变速率显着增加,同时减少了断裂时间和相对伸长率。实验结果证实,脆性断裂的可能性随着合金中杂质含量的降低而降低。 Pt-Rh,Pt-Pd-Rh,Pt-Rh-Pd-Ru和Pt-Rh-Pd-Ir-Au体系的二元和多组分合金主要在高温条件下使用,因此,提出的结果有助于更好地了解他们在这种工作条件下的行为。

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