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Use of an advanced composite material in construction of a high pressure cell for magnetic ac susceptibility measurements

机译:先进复合材料在高压电池结构中用于磁化率测量的用途

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摘要

The applicability of fibre-reinforced polymers for fabrication of high pressure cells was assessed using finite element analysis and experimental testing. Performance and failure modes for the key components of the cell working in tension and in compression were evaluated and the ways for optimising the designs were established. These models were used in construction of a miniature fully non-metallic diamond anvil cell for magnetic ac susceptibility measurements in a magnetic property measurement system. The cell is approximately 14mm long, 8.5mm in diameter and was demonstrated to reach a pressure of 5.6GPa. AC susceptibility data collected on Dy2O3 demonstrate the performance of the cell in magnetic property measurements and confirm that there is no screening of the sample by the environment which typically accompanies the use of conventional metallic high pressure cells in oscillating magnetic fields.
机译:使用有限元分析和实验测试评估了纤维增强聚合物在制造高压电池中的适用性。评估了在拉伸和压缩状态下工作的电池关键部件的性能和失效模式,并建立了优化设计的方法。这些模型用于构造一个微型的完全非金属的金刚石砧座,用于在磁性能测量系统中测量磁化率。电池大约14毫米长,直径8.5毫米,经证实达到5.6GPa的压力。在Dy2O3上收集的AC磁化率数据证明了该电池在磁性能测量中的性能,并确认没有通过在振荡磁场中通常伴随使用常规金属高压电池的环境对样品进行筛选。

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