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Effect of gasketing and assembly design: a novel 10/3.5 mm multi-anvil assembly reaching perovskite pressures

机译:垫圈和组件设计的影响:达到钙钛矿压力的新型10 / 3.5 mm多砧组件

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摘要

A new design of multi-anvil assembly and modified gasket characteristics with octahedron and truncation edge lengths of 10 and 3.5 mm is presented for reaching pressures and temperatures over 24 GPa and 2000℃, respectively. Partially dehydroxylated pyrophyllite half-gaskets with a tapered design fully nesting the octahedron have been employed to prevent excessive octahedron extrusion between the cubes. The assembly utilizes an axially placed thermocouple through the octahedral center, allowing two samples to be present at identical high P-T conditions on either side of the thermocouple during a run. A third sample can be used as a packing around the thermocouple, so long as that sample is inert with respect to the thermocouple and surrounding material. The temperature gradient within the sample locations has been well characterized using two-pyroxene thermometry in the CaO-MgO-SiO{sub}2 system and numerical modeling calculations. The results indicate a good agreement in gradient shape, although the numerical model appears to under-estimate the magnitude of temperature change. The assembly maintains stable temperatures and provides low failure rates.
机译:提出了一种新的多砧组件设计和改进的垫片特性,其八面体和截短边缘长度分别为10和3.5 mm,分别用于达到24 GPa和2000℃以上的压力和温度。具有锥形设计的部分脱羟基叶蜡石半垫片完全嵌套在八面体中,已被用于防止立方体之间过多的八面体挤出。该组件利用通过八面体中心轴向放置的热电偶,在运行期间允许两个样品以相同的高P-T条件存在于热电偶的两侧。第三个样品可用作热电偶周围的填料,只要该样品相对于热电偶和周围材料呈惰性即可。在CaO-MgO-SiO {sub} 2系统中使用二py测温法和数值模型计算已很好地表征了样品位置内的温度梯度。尽管数值模型似乎低估了温度变化的幅度,但结果表明梯度形状的一致性很好。该组件可保持稳定的温度并降低故障率。

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