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3D Online Submicron Scale Observation of Mixed Metal Powders Microstructure Evolution in High Temperature and Microwave Compound Fields

机译:高温和微波复合场中混合金属粉末组织演变的3D在线亚微米尺度观察

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摘要

In order to study the influence on the mechanical properties caused by microstructure evolution of metal powder in extreme environment, 3D real-time observation of the microstructure evolution of Al-Ti mixed powder in high temperature and microwave compound fields was realized by using synchrotron radiation computerized topography (SR-CT) technique; the spatial resolution was enhanced to 0.37 μm/pixel through the designed equipment and the introduction of excellent reconstruction method for the first time. The process of microstructure evolution during sintering was clearly distinguished from 2D and 3D reconstructed images. Typical sintering parameters such as sintering neck size, porosity, and particle size of the sample were presented for quantitative analysis of the influence on the mechanical properties and the sintering kinetics during microwave sintering. The neck size-time curve was obtained and the neck growth exponent was 7.3, which indicated that surface diffusion was the main diffusion mechanism; the reason was the eddy current loss induced by the external microwave fields providing an additional driving force for mass diffusion on the particle surface. From the reconstructed images and the curve of porosity and average particle size versus temperature, it was believed that the presence of liquid phase aluminum accelerated the densification and particle growth.
机译:为了研究金属粉末在极端环境下的组织演变对机械性能的影响,利用同步辐射计算机实现了高温和微波复合场中Al-Ti混合粉末组织演变的3D实时观察。地形(SR-CT)技术;通过设计的设备和首次引入优秀的重建方法,将空间分辨率提高到0.37μm/像素。烧结过程中微观结构演变的过程与2D和3D重建图像有明显区别。给出了典型的烧结参数,例如样品的烧结颈尺寸,孔隙率和颗粒尺寸,以定量分析对微波烧结过程中机械性能和烧结动力学的影响。得到了颈部尺寸-时间曲线,颈部生长指数为7.3,表明表面扩散是主要的扩散机理。原因是由外部微波场引起的涡流损耗,为质点表面的质量扩散提供了额外的驱动力。从重建的图像以及孔隙率和平均粒径与温度的曲线,可以认为液相铝的存在加速了致密化和粒子的生长。

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