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Single crystal PWA 1483 superalloy: Dislocation rearrangement and damping phenomena

机译:PWA 1483单晶高温合金:位错重排和阻尼现象

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摘要

The structural stability of the single-crystal PWA 1483 superalloy has been investigated by internal friction (IF) and dynamic modulus measurements from room temperature to 1073 K. The examined samples were in the solubilized state. The vibrating reed technique with electrostatic excitation and frequency modulation detection of flexural vibrations has been employed. Frequency was similar to 350 Hz. IF spectra recorded in successive test runs on the same samples show a Q(-1) maximum (M1) above 623 K, whose intensity and position change from one run to another: in correspondence with M1 the modulus undergoes a slow decrease followed by a sudden increase. Sometimes another maximum (M2) has been observed at lower temperature (similar to 523 K). After each run the values of the modulus and of Q(-1) change indicating that a progressive irreversible transformation occurs. Damping phenomena have been attributed to the rearrangement of dislocation structures in the disordered matrix. This rearrangement modifies the density and the average distance of pinning points. This explanation is supported by transmission electron microscopy (TEM) observations. (C) 2009 Elsevier B.V. All rights reserved.
机译:通过内部摩擦(IF)和从室温到1073 K的动态模量测量,研究了单晶PWA 1483高温合金的结构稳定性。检查的样品处于增溶状态。已经采用了带有静电激励的振动簧片技术和弯曲振动的频率调制检测。频率类似于350 Hz。在相同样品的连续测试中记录的IF光谱显示623 K以上的Q(-1)最大值(M1),其强度和位置从一次运行变为另一次变化:与M1相对应,模量经历了缓慢的降低,接着是突然增加。有时在较低温度(类似于523 K)下观察到另一个最大值(M2)。每次运行后,模量和Q(-1)的值都会发生变化,这表明发生了不可逆的渐进转换。阻尼现象已归因于无序矩阵中位错结构的重排。这种重新排列会修改钉扎点的密度和平均距离。透射电子显微镜(TEM)的观察结果支持了这一解释。 (C)2009 Elsevier B.V.保留所有权利。

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