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Solidification of Al Alloys Under Electromagnetic Pulses and Characterization of the 3D Microstructures Using Synchrotron X-ray Tomography

机译:铝合金在电磁脉冲作用下的凝固和3D显微组织的同步X射线断层扫描表征

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摘要

A novel programmable electromagnetic pulse device was developed and used to study the solidification of Al-15 pct Cu and Al-35 pct Cu alloys. The pulsed magnetic fluxes and Lorentz forces generated inside the solidifying melts were simulated using finite element methods, and their effects on the solidification microstructures were characterized using electron microscopy and synchrotron X-ray tomography. Using a discharging voltage of 120 V, a pulsed magnetic field with the peak Lorentz force of ~1.6 N was generated inside the solidifying Al-Cu melts which were showed sufficiently enough to disrupt the growth of the primary Al dendrites and the Al2Cu intermetallic phases. The microstructures exhibit a strong correlation to the characteristics of the applied pulse, forming a periodical pattern that resonates the frequency of the applied electromagnetic field.
机译:开发了一种新型的可编程电磁脉冲装置,用于研究Al-15pct Cu和Al-35pct Cu合金的凝固过程。使用有限元方法模拟了凝固熔体内部产生的脉冲磁通量和洛伦兹力,并使用电子显微镜和同步加速器X射线断层扫描表征了它们对凝固微结构的影响。使用120 V的放电电压,在凝固的Al-Cu熔体内部产生了峰值洛伦兹力为〜1.6 N的脉冲磁场,显示出足以破坏原始Al枝晶和Al2Cu金属间相的生长的能力。微观结构与所施加的脉冲的特性具有很强的相关性,形成周期性的图案,使所施加的电磁场的频率产生共振。

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