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High-Speed Inline Production Testing of Cast Pistons Using 3D-CT and a Digital X-Ray Detector

机译:使用3D-CT和数字X射线探测器的铸件高速内联生产测试

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摘要

Weight and heat management of performance aluminum alloy pistons leads to complex piston designs that can be difficult to manufacture compared to conventional pistons. In order to verify the casting quality and detect pores, cracks and other defects, the use of X-ray testing methods is inevitable. While automatic 2D X-ray image processing has become a standard quality control method for simple cast parts, 3D volume processing is not yet widely used. The main reason is usually not the cost difference between 2D and 3D X-ray, but rather the processing time required for image acquisition. Compared to often only a few images required to cover a part using 2D X-ray images, a CT reconstruction requires a large number of images to minimize reconstruction artifacts. Since each image requires a certain minimum exposure time to minimize image noise, the total time for object handling, image acquisition, volume reconstruction and finally automatic volume processing is often beyond the throughput required for mass volume application. This paper describes a system using PC hardware and a new kind of digital X-ray detector to perform image acquisition, reconstruction and evaluation of lightweight alloy cast pistons keeping pace with production. The paper will present the system concept, sample data and the experiences gained during the development of this system.
机译:性能铝合金活塞的重量和热量管理导致复杂的活塞设计,与传统活塞相比,可能难以制造。为了验证铸造质量并检测毛孔,裂缝等缺陷,使用X射线测试方法是不可避免的。虽然自动2D X射线图像处理已成为简单铸件的标准质量控制方法,但尚未广泛使用3D体积处理。主要原因通常不是2D和3D X射线之间的成本差异,而是图像采集所需的处理时间。与通常只使用2D X射线图像覆盖零件所需的几个图像相比,CT重建需要大量图像来最小化重建伪像。由于每个图像需要一定的最小曝光时间来最小化图像噪声,因此对象处理,图像获取,卷重建以及最终自动卷处理的总时间通常超出质量卷应用所需的吞吐量。本文介绍了一种使用PC硬件的系统和一种新型数字X射线检测器,用于执行轻质合金铸动力的图像采集,重建和评估,保持与生产的速度保持速度。本文将出示系统概念,样本数据和在该系统开发期间获得的经验。

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