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Thermo-mechanical behavior of titanium beryllide pebble beds at ambient temperature

机译:钛铍卵石床在环境温度下的热力学行为

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The thermomechanical behavior of titanium beryllide pebble beds was investigated experimentally at ambient temperature in helium. The pebbles consist of a mixture of TiBe12 and Ti2Be17 titanate beryllide phases and a small residual amount of Be phase, denominated as Be-7.7Ti.For purposes of comparison, experiments in air and helium atmosphere were also conducted with Be, Al2O3 and orthosilicate pebble beds. The pebble beds were compressed uniaxially up to 4.5 MPa; the effective thermal conductivity was measured using the hot wire technique. The stress-strain curves do not differ significantly for the different granular materials in contrast to the effective thermal conductivity k. Whereas for Be pebble beds k increases strongly with increasing stress (about 600 % for the uniaxial stress of 4 MPa), the increase is much smaller for the other granular materials (about 60 % for Be-7.7Ti at 4 MPa). The main reason for the large differences is the much lower thermal conductivity of the solid materials. Another influence exists because the other materials are mechanically harder resulting in smaller contact surfaces.As long as the thermal conductivity of other beryllide materials is significantly lower than that of Be, comparable results are expected as for Be-7.7Ti.It is argued that similar results are expected for single phase TiBe12 pebble beds. Because of the harder behavior compared to Be-7.7Ti pebbles, the effective thermal conductivity might be slightly smaller. Although the above reasonings suggest that a phase mixture can be used instead of the single phase TiBe12, this issue has to be investigated in more detail.
机译:实验在氦气温度下实验研究了钛铍卵石床的热机械行为。卵石由TIBE12和TI2BE17钛酸铍铍相的混合物和少量的相相,以比较为-7.7TI。比较目的,也用BE,Al 2 O 3和外硅酸岩卵石进行空气和氦气氛的实验床。卵石床是单一的高达4.5MPa的压缩;使用热线技术测量有效的导热率。与有效导热率k相反,应力 - 应变曲线对不同的颗粒材料不显着不同。然而,对于卵石床K,k随着应力的增加而强烈增加(约600%,对于4MPa的单轴应力为约600%),对于其他粒状材料的增加要小得多(在4MPa下为-7.7TI约60%)。大差异的主要原因是固体材料的热导电率大得多。存在另一个影响,因为其他材料更难以导致较小的接触表面。随着其他铍材料的导热率显着低于Be,相当的结果是相似的预计单相TIBE12鹅卵石床的结果是预期的。由于与BE-7.7TI鹅卵石相比越硬,有效的导热率可能略小。尽管上述推理表明可以使用相混合物代替单相TIBE12,但必须更详细地研究该问题。

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