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用于研究超声疲劳加载过程中疲劳行为的微秒时间分辨X射线衍射。

Microsecond time-resolved X-ray diffraction for the investigation of fatigue behavior during ultrasonic fatigue loading.

作者信息

Ors T, Ranc N, Pelerin M, Michel V, Favier V, Castelnau O, Mocuta C, Thiaudière D

机构信息

Laboratoire PIMM, CNRS, ENSAM, HESAM, 151 Boulevard de l'Hôpital, 75013 Paris, France.

Synchrotron SOLEIL, L'Orme des Merisiers, Saint-Aubin, BP 48, 91192 Gif-sur-Yvette, France.

出版信息

J Synchrotron Radiat. 2019 Sep 1;26(Pt 5):1660-1670. doi: 10.1107/S1600577519008518. Epub 2019 Aug 20.

Abstract

A new method based on time-resolved X-ray diffraction is proposed in order to measure the elastic strain and stress during ultrasonic fatigue loading experiments. Pure Cu was chosen as an example material for the experiments using a 20 kHz ultrasonic fatigue machine mounted on the six-circle diffractometer available at the DiffAbs beamline on the SOLEIL synchrotron facility in France. A two-dimensional hybrid pixel X-ray detector (XPAD3.2) was triggered by the strain gage signal in a synchronous data acquisition scheme (pump-probe-like). The method enables studying loading cycles with a period of 50 µs, achieving a temporal resolution of 1 µs. This allows a precise reconstruction of the diffraction patterns during the loading cycles. From the diffraction patterns, the position of the peaks, their shifts and their respective broadening can be deduced. The diffraction peak shift allows the elastic lattice strain to be estimated with a resolution of ∼10. Stress is calculated by the self-consistent scale-transition model through which the elastic response of the material is estimated. The amplitudes of the cyclic stresses range from 40 to 120 MPa and vary linearly with respect to the displacement applied by the ultrasonic machine. Moreover, the experimental results highlight an increase of the diffraction peak broadening with the number of applied cycles.

摘要

为了测量超声疲劳加载实验过程中的弹性应变和应力,提出了一种基于时间分辨X射线衍射的新方法。选用纯铜作为实验的示例材料,实验使用安装在法国SOLEIL同步加速器装置的DiffAbs光束线上的六圆衍射仪上的一台20 kHz超声疲劳试验机。在同步数据采集方案(类似泵浦-探测)中,二维混合像素X射线探测器(XPAD3.2)由应变片信号触发。该方法能够研究周期为50 µs的加载循环,实现了1 µs的时间分辨率。这使得在加载循环过程中能够精确重建衍射图样。从衍射图样中,可以推断出峰的位置、它们的位移以及各自的展宽情况。衍射峰的位移使得能够以约10的分辨率估计弹性晶格应变。应力通过自洽尺度转换模型计算,通过该模型可以估计材料的弹性响应。循环应力的幅值范围为40至120 MPa,并且相对于超声设备施加的位移呈线性变化。此外,实验结果突出表明,随着施加循环次数的增加,衍射峰展宽增大。

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