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首页> 外文期刊>Journal of Applied Physics >Aluminum as a pressure-transmitting medium cum pressure standard for x-ray diffraction experiments to 200 GPa with diamond anvil cells
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Aluminum as a pressure-transmitting medium cum pressure standard for x-ray diffraction experiments to 200 GPa with diamond anvil cells

机译:铝作为压力传递介质暨压力标准,用于带有金刚石砧盒的X射线衍射实验,测试压力可达200​​ GPa

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摘要

The compressive strength of 99.999% pure aluminum as a function of pressure to 215 GPa has been determined from the linewidth analysis of high-pressure x-ray diffraction patterns recorded with beveled-diamond anvil cell. The strength is found to increase linearly from 0.3(1) GPa at zero pressure to 5.0(2) GPa at 200 GPa. The data to 55 GPa with flat anvil diamond cell suggest that the strength of 99.999% pure aluminum increases from 0.21(8) GPa at zero pressure to 1.1(1) GPa at 55 GPa and the extrapolated strength at 200 GPa is 3.3(4). Significantly larger strength obtained with beveled-diamond anvil cell most likely arises due to larger radial stress gradients than in the case of flat anvils. The strength of aluminum is compared with those of argon to 50 GPa and of helium to 70 GPa. The use of face-centered cubic phase of aluminum in the dual role of a pressure standard and solid pressure-transmitting medium to 200 GPa is discussed.
机译:99.999%纯铝的抗压强度随压力变化至215 GPa的标准是通过斜角金刚石砧盒记录的高压X射线衍射图的线宽分析确定的。发现强度从零压力下的0.3(1)GPa线性增加到200 GPa下的5.0(2)GPa。使用平砧金刚石电池至55 GPa的数据表明,99.999%纯铝的强度从零压力下的0.21(8)GPa增加到55 GPa时的1.1(1)GPa,而200 GPa的外推强度为3.3(4) 。与平砧相比,斜角金刚石砧单元获得的强度明显更高的原因是径向应力梯度更大。将铝的强度与氩气(50 GPa)和氦气(70 GPa)的强度进行比较。讨论了铝的面心立方相在压力标准和200 GPa固体压力传递介质的双重作用中的使用。

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