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X射线管打靶老练过程的多物理场特性研究

Multi-physics Characteristics of Conditioning Bombardment in X-ray Tubes

  • 摘要: 打靶老练是X射线管制程工艺中保障真空度与稳定性的关键环节,然而传统的工艺中普遍存在打靶老练效率较低、参数过激导致阳极靶损伤等问题。基于此,本文构建了X射线管打靶老练过程中传热和电磁耦合的多物理场计算模型,模拟了电子束发射、聚焦、热传导及辐射换热全过程,最终获得了瞬态热源阳极体的“电极参数−电子束− 热源−温度场”的耦合影响机制。研究表明:阴极与栅极的电压直接决定了电子束的焦点形态,进而影响阳极靶与阳极体的温升水平,当电子束焦点形态为“大焦点、大功率”时,阳极体20分钟能快速升温至750℃,且靶心最高温度一直低于材料熔点,为最佳的打靶焦点形态,既提升了打靶老练过程的效率又保障了产品的安全性。

     

    Abstract: Bombardment target sophistication is a key link in ensuring vacuum and stability in the X-ray control process, but there are common problems in the traditional process, such as low efficiency of bombardment target sophistication and excessive parameters leading to anode target damage. Based on this, a multiphysics computation model of heat transfer and electromagnetic coupling during the sophistication of X-ray tube bombardment targets is constructed, and the whole process of electron beam emission, focusing, heat conduction and radiation heat transfer is simulated, and finally the coupling influence mechanism of “electrode parameter-electron beam-heat source-temperature field” of the transient heat source anode is obtained. When the focus form of the electron beam is “large focus, high power”, the anode can quickly heat up to 750℃ in 20 minutes, and the maximum temperature of the bullseye has been lower than the melting point of the material, which is the best focus form of the bombardment target, which not only improves the efficiency of the bombardment target sophistication process but also ensures the safety of the product.

     

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