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Digital processing of images of extruded rubber profiles for process control MRI

机译:对挤出橡胶轮廓的图像进行数字处理,以进行过程控制MRI

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摘要

Magnetic resonance imaging (MRI) is a powerful technique in materials science, in particular for the analysis of polymer and rubber materials. So far the use of this technique for quality control has not been fully explored mainly because of the prohibitive costs and maintenance associated with conventional MRI tomography systems. This constraint has been removed recently since robust and mobile desktop tomographs with permanent magnets have become available at reduced cost. In this work we apply an image processing chain algorithm to MR images of rubber profiles recorded with a desktop MRI scanner. Although the nominal spatial resolution of MR images is inherently lower than that of optical methods, we demonstrate that the digital resolution achieved after the image processing steps allows one to determine the spatial positions of the inner and outer contours with 50 mu m precision. Using this information it is then possible to measure structural dimensions of the rubber profiles, such as wall thickness or internal voids, with precisions that are of the same order of magnitude as those observed with CT or camera imaging. (C) 2016 Elsevier Ltd. All rights reserved.
机译:磁共振成像(MRI)是材料科学中的一项强大技术,尤其是对于聚合物和橡胶材料的分析。到目前为止,主要由于与常规MRI断层扫描系统相关的成本过高和维护费用,尚未对这种技术进行质量控制进行充分的研究。由于坚固耐用且带有永久磁铁的台式台式断层扫描仪已经以较低的成本提供,因此最近消除了这一限制。在这项工作中,我们将图像处理链算法应用于台式MRI扫描仪记录的橡胶轮廓的MR图像。尽管MR图像的标称空间分辨率本质上低于光学方法,但我们证明,在图像处理步骤之后获得的数字分辨率允许人们以50μm的精度确定内部和外部轮廓的空间位置。然后,使用此信息可以测量橡胶轮廓的结构尺寸,例如壁厚或内部空隙,其精度与使用CT或相机成像观察到的精度相同。 (C)2016 Elsevier Ltd.保留所有权利。

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