首页> 外文期刊>Journal of Multiscale Modelling >EVALUATION OF DAMAGE DEVELOPMENT IN STEELS SUBJECTED TO PRIOR DEFORMATION: DESTRUCTIVE AND NONDESTRUCTIVE TECHNIQUES
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EVALUATION OF DAMAGE DEVELOPMENT IN STEELS SUBJECTED TO PRIOR DEFORMATION: DESTRUCTIVE AND NONDESTRUCTIVE TECHNIQUES

机译:先变形后钢中损伤发展的评估:破坏性和非破坏性技术

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摘要

Creep damage due to constant loading at elevated temperatures and damage due to plastic deformation at room temperature are assessed using destructive and nondestructive methods in steels (40HNMA and P91). In the destructive methods the standard tension tests were carried out after prestraining and variations of the selected tension parameters were taken into account for damage identification. In order to assess damage development during the creep and plastic deformation the tests for both steels were interrupted for a range of selected strain magnitudes. Ultrasonic and magnetic techniques were used as the nondestructive methods for damage evaluation. The last step of the experimental programme contained microscopic observations. The results show that ultrasonic and magnetic parameters can be good indicators of material degradation and can help to locate the regions where material properties are changed due to prestraining. A good correlation of mechanical and selected nondestructive parameters identifying damage was achieved for both tested steels.
机译:在钢中(40HNMA和P91)使用破坏性和非破坏性方法评估了在高温下恒定载荷引起的蠕变损伤和在室温下由于塑性变形引起的蠕变损伤。在破坏性方法中,标准应力测试是在预应变之后进行的,并考虑了所选拉伸参数的变化以进行损伤识别。为了评估蠕变和塑性变形过程中的损伤发展,在选定的应变幅度范围内中断了两种钢的测试。超声和磁技术被用作损伤评估的非破坏性方法。实验程序的最后一步包含微观观察。结果表明,超声和磁参数可以很好地指示材料的降解,并且可以帮助确定因预应变而导致材料性能发生变化的区域。两种测试钢在识别损伤的机械参数和选定的非破坏性参数方面均具有良好的相关性。

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