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The Strain Rate Effect on High-Temperature Tensile Properties of High-Cr Oxide Dispersion Strengthened Steels

机译:高Cr氧化物分散钢高温拉伸性能的应变率效应

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The development of heat resistant structural materials is essential to sustain zero-emission energy for reducing greenhouse gas emission such as carbon dioxide gas by elevating operation temperature of nuclear and fossil power plants. Oxide dispersion strengthened (ODS) steels have received considerable attention because they show superior performances at high temperatures. In this research, the effect of strain rate on the deformation behavior was investigated at high-temperatures to apply it to advanced fossil and nuclear power plants. The materials used were three kinds of 15Cr-4Al-2W-ODS steels of which the other chemical compositions were slightly changed by the addition of small amount of alloying element. Steady strain rate tests (SSRT) were performed at a strain rate ranging from 1 × 10~(-3) to 1 × 10~(-6) s~(-1) in a vacuum of 2.3 × 10~(-3) Pa at a temperature of 773 K. The test temperature was controlled within in an error of ±3 K. The fractured surface was observed by scanning electron microscope (SEM), and the reduction in area of the specimens was measured to investigate the effects of strain rate on the deformation and fracture mode. Tensile yield stress is remarkably dependent on the strain rate, showing a large increase with increasing strain rate, while tensile elongation is not remarkably influenced by strain rate. According to the precise observations of fractured surface, there was no strain rate effect on the fracture mode, and only ductile fracture was observed for all the specimens tested in the study. This trend was independent of material.
机译:耐热性结构材料的发展对于维持零排放能量,通过提升核和化石发电厂的运转温度来减少零排放能量,减少诸如二氧化碳气体的温室气体发射。增强(ODS)钢的氧化物分散体受到相当大的关注,因为它们在高温下表现出优异的性能。在这项研究中,在高温下研究了应变率对变形行为的影响,将其应用于先进的化石和核电厂。所用的材料是三种15cr-4Al-2W-ODS钢,其它化学组合物通过添加少量合金元素略微改变。稳定应变速率试验(SSRT)以1×10〜(-3)至1×10〜(-6)S〜(-1)的应变速率在2.3×10〜(-3)的真空中PA在773K的温度下。通过扫描电子显微镜(SEM)观察裂缝表面,测量裂缝表面,测量标本的面积的减少以研究变形和断裂模式的应变率。拉伸屈服应力显着取决于应变率,随着应变速率的增加而大幅增加,而拉伸伸长率不会受到应变率的显着影响。根据裂缝表面的精确观察,对裂缝模式没有应变率效应,并且仅针对研究中测试的所有标本观察到延展性裂缝。这种趋势独立于材料。

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