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Effects of microstructures on fatigue crack initiation and short crack propagation at room temperature in an advanced disc superalloy

机译:显微组织对高级圆盘高温合金在室温下疲劳裂纹萌生和短裂纹扩展的影响

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摘要

Fatigue crack initiation and early short crack propagation behaviour in two microstructural variants of a recently developed Low Solvus, High Refractory (LSHR) disc superalloy at room temperature has been investigated by three-point bending with replication procedure. The results shows that fine gained (FG) LSHR possesses higher fatigue life due to its better crack initiation resistance, limited crack coalescence and comparable Stage Ⅰ crack propagation resistance to the coarse grained (CG) LSHR, although its resistance to Stage Ⅱ crack propagation is inferior. Twin boundary (TB) cracking in the relatively large grains dominates the crack initiation process along with occasional crack initiation due to slip band cracking. Activation of the primary slip systems parallel to the TB at matrix and twin and high resolved shear stress associated with high Schmid factor (SF) are required for TB crack initiation. Cracks preferentially propagate along slip bands associated with high SF slip systems after initiation. But cracks also propagate along slip bands associated with slip systems with lower SF if the inclination angle between the slip band ahead of the crack tip and the crack segment of the crack tip is small enough to enable a steady transition (or non-deflected growth) of cracks across the grain boundary.
机译:在室温下,通过三点弯曲和复制程序研究了最近开发的低溶解度,高耐火性(LSHR)圆盘高温合金的两个微观结构变体中的疲劳裂纹萌生和早期短裂纹扩展行为。结果表明,尽管细晶LSHR具有更好的抗开裂性,有限的裂纹聚结和与粗粒LSHR相当的Ⅰ级裂纹扩展阻力,但它具有较高的疲劳寿命,尽管它对Ⅱ级裂纹扩展的抵抗力是下。较大晶粒中的双晶界(TB)裂纹占主导地位,同时由于滑带裂纹而偶尔出现裂纹。 TB裂纹萌生需要激活与基质处的TB平行的主滑动系统,以及与高Schmid因子(SF)相关的孪生和高解析剪切应力。引发后,裂纹优先沿着与高SF滑动系统相关的滑动带传播。但是,如果裂纹尖端前面的滑动带与裂纹尖端的裂纹段之间的倾斜角度足够小,以致于能够稳定过渡(或无偏斜增长),则裂纹也会沿着与SF较低的滑动系统相关的滑动带传播。跨晶界的裂纹。

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  • 来源
    《Materials Science and Engineering》 |2015年第12期|148-159|共12页
  • 作者单位

    Materials Research Group, Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK;

    Materials Research Group, Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK;

    Materials Research Group, Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK;

    Materials Research Group, Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ni-based superalloys; Twin boundary; Schmid factor; Slip band; Fatigue cracking;

    机译:镍基高温合金;双边界施密特因子滑带;疲劳裂纹;

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