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An internally heated composite gasket for diamond-anvil cells using the pressure-chamber wall as the heating element

机译:使用压力室壁作为加热元件的用于金刚石-砧室的内部加热复合垫片

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摘要

The implementation of a heating element to a composite gasket for high-temperature applications in the diamond-anvil cell was developed based on a double-gasket assemblage. The heating element is a thin platinum wall that covers the central borehole of the metal-ceramic-metal composite gasket and interconnects the two metal component parts of the gasket. Applying electric powers up to 35W to the two gasket metal components result in ring-like heating around the sample inside the pressure chamber with temperatures exceeding ~2000K in individual cases. The ring-like distribution of the maximum temperature located at the pressure-chamber wall facilitates a homogeneous temperature distribution at the sample position. As a consequence of the concentration of the heating power to the pressure chamber region, gradients of surface temperatures, both at the gasket and the diamond anvil, appear to be more pronounced compared with those known for classical external electrical heating. Apart from the tests of the mechanical stability on high-pressure operation in the diamond anvil cell at room temperature, the influence of the anvils in contact with the gasket on the characteristic power-temperature curves, temperature gradients and thermal equilibration resulting from changes in electrical power settings have been evaluated within the scope of a series of experimental investigations.
机译:基于双垫片组件,开发了将加热元件应用于复合材料垫片的高温应用,以用于金刚石-砧座电池。加热元件是薄的铂壁,该铂壁覆盖金属-陶瓷-金属复合垫片的中心孔,并使垫片的两个金属部件相互连接。在两个垫片金属组件上施加高达35W的功率,在个别情况下会导致压力室内样品周围的环状加热,温度超过〜2000K。位于压力腔室壁上的最高温度的环形分布有利于样品位置的均匀温度分布。由于将加热功率集中到压力室区域,与传统的外部电加热相比,在垫圈和金刚石砧座处的表面温度梯度似乎更为明显。除了在室温下在金刚石砧座电池中进行高压操作的机械稳定性测试之外,与垫圈接触的砧座还对电气特性变化导致的特征功率-温度曲线,温度梯度和热平衡产生影响电源设置已在一系列实验研究的范围内进行了评估。

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