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Production and Heat Properties of an X-ray Reflective Anode Based on a Diamond Heat Buffer Layer

机译:基于金刚石热缓冲层的X射线反射阳极的生产和散热

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摘要

This paper introduces an X-ray reflective anode with a diamond heat buffer layer, so as to improve heat dissipation of micro-focus X-ray sources. This also aids in avoiding the destruction of the anode target surface caused by the accumulation of heat generated by the electron beam bombardment in the focal spot area. In addition to the description of the production process of the new reflective anode, this study focuses more on the research of the thermal conductivity and compounding ability. This paper also introduces a method that combines finite element analysis (FEA) in conjunction with thermal conductivity experiments, and subsequently demonstrates the credibility of this method. It was found that due to diamonds having a high thermal conductivity and melting point, high heat flux produced in the micro-focus spot region of the anode could be conducted and removed rapidly, which ensured the thermal stability of the anode. Experiments with the power parameters of the radiation source were also completed and showed an improvement in the power limit twice that of the original.
机译:本文介绍了具有金刚石热缓冲层的X射线反射阳极,从而提高微焦X射线源的散热。这也有助于避免由电子束轰击在焦点区域产生的热量累积引起的阳极目标表面的破坏。除了新反射阳极的生产过程的描述之外,该研究特别关注导热率和配合能力的研究。本文还介绍了一种将有限元分析(FEA)与导热率实验结合的方法,随后展示了该方法的可信度。发现由于具有高导热率和熔点的菱形,可以快速地进行和去除在阳极的微聚焦点区域中产生的高热量,这确保了阳极的热稳定性。还完成了辐射源功率参数的实验,并显示了原始电源限制的改善。

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