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Evolution of surface topography in dependence on the grain orientation during surface thermal fatigue of polycrystalline copper

机译:多晶铜表面热疲劳过程中取决于晶粒取向的表面形貌演变

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摘要

Surface degradation due to cyclic thermal loading plays a major role in the Accelerating Structures (AS) of the future Compact Linear Collider (CLIC). In this article results on surface degradation of thermally cycled polycrystalline copper as a function of the orientation of surface grains are presented. Samples with different grain sizes were subjected to thermal fatigue using two different methods and were then characterized using roughness measurements and Orientation Imaging Scanning-Electron-Microscopy (OIM-SEM). Samples fatigued by a pulsed laser show the same trend in the orientation-fatigue damage accumulation as the sample fatigued by pulsed Radio-Frequency-heating (RF). It is clearly shown that [111] surface grains develop significantly more damage than the surface grains oriented in [1 00] and three reasons for this behaviour are pointed out. Based on observations performed near grain boundaries, their role in the crack initiation process is discussed. The results are in good agreement with previous findings and can be interpreted on the basis of existing theories. Finally the fatigue effects induced by the two different applied types of thermal cycling are compared.
机译:由循环热负荷引起的表面退化在未来的紧凑型线性对撞机(CLIC)的加速结构(AS)中起着重要作用。在本文中,给出了热循环多晶铜的表面降解随表面晶粒取向变化的结果。使用两种不同的方法对具有不同晶粒尺寸的样品进行热疲劳,然后使用粗糙度测量和取向成像扫描电子显微镜(OIM-SEM)对其进行表征。脉冲激光疲劳的样品在取向疲劳损伤累积方面的趋势与脉冲射频加热(RF)疲劳的样品相同。清楚地表明,[111]表面晶粒比[1 00]中取向的表面晶粒产生的损伤要大得多,并指出了这种行为的三个原因。基于在晶界附近进行的观察,讨论了它们在裂纹萌生过程中的作用。结果与先前的发现非常吻合,并且可以在现有理论的基础上进行解释。最后,比较了两种不同应用类型的热循环引起的疲劳效应。

著录项

  • 来源
    《International Journal of Fatigue》 |2011年第3期|p.396-402|共7页
  • 作者单位

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

    CERN European Organization for Nuclear Research, 1211 Geneva 23, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fatigue; orientation; copper; surface; ebsd;

    机译:疲劳;方向;铜;表面;静电放电;

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