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Relationship between Preferred Orientation, Thermal Expansion, and Radiation‐Induced Length Changes in Graphite

机译:石墨的择优取向,热膨胀与辐射诱导的长度变化之间的关系

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摘要

Expressions may be derived for the thermal expansion coefficient of polycrystalline graphite in terms of the single‐crystal coefficients and the preferred orientation of the sample. Thermal expansion and preferred orientation measurements were performed on pyrolytic, molded, hot‐worked, extruded‐rod, and extruded‐tube graphites in order to test the validity of this model. They showed that such expressions adequately represent the behavior of several different graphites over a range of temperatures, provided that the ``accommodation'' of a part of the c‐direction crystallite expansion by microcracks is taken into account. The amount of c‐direction accommodation is a function of preferred orientation and the direction of measurement. It is small for the principal c direction in a highly oriented body and large for a random aggregate of crystallites and is probably controlled by the number of microcracks which form on cooling from the graphitization temperature. A model similar to that used for thermal expansion may be used to express the irradiation‐induced dimensional changes in polycrystalline graphite in terms of the preferred orientation of the sample, a contraction in the crystallite a direction, and an expansion in the crystallite c direction which is partially accommodated by microcracks. The model was found to be in reasonable agreement with published irradiation data for a number of graphites.
机译:可以根据单晶系数和样品的优选取向得出多晶石墨的热膨胀系数的表达式。为了测试该模型的有效性,对热解,模制,热加工,挤压棒和挤压管石墨进行了热膨胀和优选的取向测量。他们表明,只要考虑到微裂纹对c方向微晶膨胀的一部分的``适应'',这些表达式就可以充分代表几种不同石墨在一定温度范围内的行为。 c方向调节量是首选方向和测量方向的函数。对于高度取向的主体,其对于主c方向而言较小,对于微晶的随机聚集体而言较大,并且可能受从石墨化温度冷却而形成的微裂纹的数量控制。可以使用类似于热膨胀模型的模型,根据样品的首选取向,微晶a方向的收缩和微晶c方向的膨胀来表达辐照引起的多晶石墨尺寸变化。被微裂纹部分容纳。发现该模型与许多石墨的公开辐射数据合理地吻合。

著录项

  • 来源
    《Journal of Applied Physics》 |1965年第6期|共10页
  • 作者

    Price R. J.; Bokros J. C.;

  • 作者单位

    General Atomic Division of General Dynamics Corporation, John Jay Hopkins Laboratory for Pure and Applied Science, San Diego, California;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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