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An automated three-dimensional internal structure observation system based on high-speed serial sectioning of steel materials

机译:基于钢铁材料高速连续切片的三维内部结构自动化观测系统

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摘要

For three-dimensional observation of the internal structure of hard materials, we developed an automated system based on serial sectioning with precision cutting and optical microscopy. The elliptical vibration cutting device in the system created mirrored surfaces suitable for optical microscopy during the serial sectioning of steel materials. In this study, high-speed sectioning with several micron thickness and repeated precise machining to depths of up to around 1 mm were achieved with a flat-edge cutting tool. For a 3 mm X 3 mm area of bearing steel, a mirrored surface could be created in about 1 min, and 400 serial sectioning images were obtained within 7 h without additional machining processes such as cleaning or changing of tools. The three-dimensional shapes and positions of continuously distributed inclusions found deep within the bearing steels, as well as cracks originating from these inclusions, could be detected with resolutions as high as 80 nm X 80 nm and in a wide field of view using this system.
机译:为了对硬质材料的内部结构进行三维观察,我们开发了基于连续切片,精密切割和光学显微镜的自动化系统。该系统中的椭圆振动切割装置可在钢铁材料的连续切片过程中创建适用于光学显微镜的镜面。在这项研究中,使用平刃切削工具实现了具有几微米厚的高速切片和重复的精密加工,加工深度可达1毫米左右。对于3mm X 3mm的轴承钢区域,可以在大约1分钟内创建一个镜面,并且在7小时内可以获得400个连续的截面图像,而无需进行其他加工过程,例如清洁或更换工具。使用该系统可以在高达80 nm X 80 nm的分辨率下检测出轴承钢内部深处发现的连续分布夹杂物的三维形状和位置,以及源自这些夹杂物的裂纹。 。

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