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首页> 外文期刊>Journal of Materials Science >The measurement of compressive creep deformation and damage mechanisms in a single-phase alumina part I - Grain boundary sliding
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The measurement of compressive creep deformation and damage mechanisms in a single-phase alumina part I - Grain boundary sliding

机译:单相氧化铝的压缩蠕变变形和损伤机理的测量I-晶界滑动

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Grain boundary sliding (GBS) has been hypothesized to act as the primary driving force for the nucleation and growth of grain boundary cavities in ceramics undergoing creep. In addition, GBS is often a major mode of deformation during high-temperature creep. This paper demonstrates the importance of GBS with mode II GBS measurements performed using a stereoimaging technique on a single-phase alumina tested under constant compressive stresses of 70 and 140 MPa at 1600 degrees C. Measurements were taken at constant time intervals during creep. The results support previous observations that GBS is stochastic and history independent. GBS displacements at given time intervals are shown to fit a Wiebull distribution. During steady-state creep, GBS displacements increased linearly with time at a constant sliding rate of approximate to 6.0 x 10(-5) mu m s(-1) at 70 MPa and approximate to 1.3 x 10(-4) mu m s(-1) at 140 MPa. Also, an average of 67% of the grain boundaries exhibited measurable sliding throughout the creep life of the 140 MPa test. Results of the GBS measurements are used to modify an existing creep model describing stochastic GBS. In part II of this paper [1], the GBS measurements reported are related to the associated creep cavitation measured in specimens tested under identical conditions. (C) 1998 Kluwer Academic Publishers. [References: 53]
机译:假设晶界滑动(GBS)是引起蠕变的陶瓷中晶界腔形核和生长的主要驱动力。另外,GBS通常是高温蠕变过程中的主要变形模式。本文证明了在II型GBS测量中使用立体成像技术对单相氧化铝进行GBS测量的重要性,该单相氧化铝在1600摄氏度,70和140 MPa的恒定压缩应力下进行了测试。蠕变过程中以恒定的时间间隔进行了测量。结果支持以前的观察,即GBS是随机的且与历史无关。显示给定时间间隔的GBS位移符合Wiebull分布。在稳态蠕变期间,GBS位移随时间呈线性增加,在70 MPa时恒定滑动率约为6.0 x 10(-5)μms(-1),而恒定滑动率约为1.3 x 10(-4)μms(- 1)在140 MPa下。同样,在140 MPa试验的整个蠕变寿命中,平均67%的晶界表现出可测量的滑动。 GBS测量的结果用于修改描述随机GBS的现有蠕变模型。在本文的第二部分[1]中,所报告的GBS测量值与在相同条件下测试的样品中相关的蠕变空化有关。 (C)1998 Kluwer学术出版社。 [参考:53]

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